{"id":46680,"date":"2020-08-17T18:11:39","date_gmt":"2020-08-17T18:11:39","guid":{"rendered":"https:\/\/lnbr.cnpem.br\/?page_id=46680"},"modified":"2024-02-08T19:11:29","modified_gmt":"2024-02-08T19:11:29","slug":"destaques-de-pesquisa","status":"publish","type":"page","link":"https:\/\/lnbr.cnpem.br\/destaques-de-pesquisa\/","title":{"rendered":"LNBR | Destaques de Pesquisa"},"content":{"rendered":"<div class=\"wpb-content-wrapper\"><p>[vc_row][vc_column width=&#8221;3\/4&#8243;][vc_row_inner][vc_column_inner][vc_column_text]<\/p>\n<p style=\"text-align: justify;\">Destaques selecionados de publica\u00e7\u00f5es cient\u00edficas, desenvolvimentos tecnol\u00f3gicos e parcerias.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-fffe006a7943af42d1621fb89fc89964.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-fffe006a7943af42d1621fb89fc89964.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-fffe006a7943af42d1621fb89fc89964 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-fffe006a7943af42d1621fb89fc89964 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-fffe006a7943af42d1621fb89fc89964 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/doi-org.ez106.periodicos.capes.gov.br\/10.1016\/j.cej.2023.148462\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img fetchpriority=\"high\" decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2024\/02\/Chemical-Engineering-Journal-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2024\/02\/Chemical-Engineering-Journal-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2024\/02\/Chemical-Engineering-Journal.jpg 576w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/chemical-engineering-journal\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/doi-org.ez106.periodicos.capes.gov.br\/10.1016\/j.cej.2023.148462\" target=\"_blank\" rel=\"noopener\"><span style=\"font-size: 12pt;\"><strong>A systematic multicriteria-based approach to support product portfolio selection in microalgae biorefineries<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>FEV-2024<\/strong> Avalia\u00e7\u00f5es da sustentabilidade de uma cadeia de produ\u00e7\u00e3o podem ser complexas. Este estudo prop\u00f4s uma metodologia para a sele\u00e7\u00e3o de produtos e configura\u00e7\u00f5es de biorrefinarias, integrando crit\u00e9rios t\u00e9cnicos, econ\u00f4micos e ambientais na tomada de decis\u00e3o. Como estudo de caso selecionou-se portf\u00f3lios de produtos derivados de microalgas. Os \u00e1cidos succ\u00ednico, c\u00edtrico e acr\u00edlico foram classificados como os principais bioprodutos derivados de carboidratos. Foram tamb\u00e9m apontadas diferentes combina\u00e7\u00f5es de cepas e condi\u00e7\u00f5es de cultivo.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-23747467624507f54579921270cd10c3.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-23747467624507f54579921270cd10c3.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-23747467624507f54579921270cd10c3 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-23747467624507f54579921270cd10c3 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-23747467624507f54579921270cd10c3 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/journals.asm.org\/doi\/10.1128\/spectrum.02280-23\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20165%20165&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2024\/01\/microbiology-spectrum.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2024\/01\/microbiology-spectrum.jpg 165w\" loading=\"eager\" style=\"--ratio: 165 \/ 165\" sizes=\"(max-width: 165px) 100vw, 165px\" width=\"165\" height=\"165\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/microbiology-spectrum\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/journals.asm.org\/doi\/10.1128\/spectrum.02280-23\" target=\"_blank\" rel=\"noopener\"><span style=\"font-size: 12pt;\"><strong>Plant structural and storage glucans trigger distinct transcriptional responses that modulate the motility of Xanthomonas pathogens<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>NOV-2023<\/strong>\u00a0As bact\u00e9rias <em>Xanthomonas<\/em> s\u00e3o patog\u00eanicas para uma variedade de culturas relevantes e possuem um vasto repert\u00f3rio de enzimas ativas sobre carboidratos (CAZymes) de potencial uso industrial. Neste estudo verificou-se como diferentes carboidratos vegetais regulam a motilidade dessa bact\u00e9ria, o que pode ter implica\u00e7\u00f5es no processo de infec\u00e7\u00e3o da planta hospedeira. Investigou-se tamb\u00e9m enzimas utilizadas para liberar glicose da celulose e amido, sendo inspira\u00e7\u00e3o para o desenvolvimento de coquet\u00e9is enzim\u00e1ticos industriais.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-b3d555a63aa8031ca04d02b9274f379f.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-b3d555a63aa8031ca04d02b9274f379f.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-b3d555a63aa8031ca04d02b9274f379f .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-b3d555a63aa8031ca04d02b9274f379f .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-b3d555a63aa8031ca04d02b9274f379f alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S0959652623027440?via%3Dihub\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/08\/Journal-Cleaner-prod-novo-1-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/08\/Journal-Cleaner-prod-novo-1-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/08\/Journal-Cleaner-prod-novo-1.jpg 576w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/journal-cleaner-prod-novo-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S0959652623027440?via%3Dihub\" target=\"_blank\" rel=\"noopener\"><span style=\"font-size: 12pt;\"><strong>Bioenergy-livestock integration in Brazil: Unraveling potentials for energy production and climate change mitigation<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>OUT-2023<\/strong> Atender \u00e0s futuras demandas de alimentos e energia reduzindo as emiss\u00f5es de gases de efeito estufa (GEE) \u00e9 um desafio. Este artigo explora os potenciais espacialmente expl\u00edcitos para produzir alimentos e energia no Brasil ao expandir os sistemas integrados de bioenergia e pecu\u00e1ria sob restri\u00e7\u00f5es de uso da terra. Os sistemas integrados podem coproduzir alimentos, ra\u00e7\u00e3o e energia usando menos terra se comparado aos sistemas convencionais. H\u00e1 um grande potencial para mitigar as emiss\u00f5es GEE de forma lucrativa, preservando os biomas e a biodiversidade.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-19f48a882915bedddf21d05b0e4a2364.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-19f48a882915bedddf21d05b0e4a2364.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-19f48a882915bedddf21d05b0e4a2364 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-19f48a882915bedddf21d05b0e4a2364 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-19f48a882915bedddf21d05b0e4a2364 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/doi.org\/10.1016\/j.cej.2023.143878\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/07\/CEJ-CHEMICAL-ENGINEERING-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/07\/CEJ-CHEMICAL-ENGINEERING-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/07\/CEJ-CHEMICAL-ENGINEERING.jpg 576w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/cej-chemical-engineering\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/doi.org\/10.1016\/j.cej.2023.143878\"><span style=\"font-size: 12pt;\"><strong>From enzyme to cell-factory: Economic and environmental assessment of biobased pathways to unlock the potential of long-haul transportation biofuels<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>JUL-2023<\/strong> As rotas biol\u00f3gicas surgem como uma alternativa promissora para a descarboniza\u00e7\u00e3o do setor de transporte de longa dist\u00e2ncia. Este estudo avaliou os impactos t\u00e9cnico-econ\u00f4micos e ambientais de rotas biol\u00f3gicas para obten\u00e7\u00e3o de biocombust\u00edveis de longa dist\u00e2ncia (hidrocarbonetos), visando identificar oportunidades para engenharia metab\u00f3lica. Os resultados mostraram que essas rotas podem reduzir em at\u00e9 70% as emiss\u00f5es de gases de efeito estufa, com custo competitivo em rela\u00e7\u00e3o aos combust\u00edveis f\u00f3sseis.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-68bcbbd53bf250f654ddf37977af68a7.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-68bcbbd53bf250f654ddf37977af68a7.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-68bcbbd53bf250f654ddf37977af68a7 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-68bcbbd53bf250f654ddf37977af68a7 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-68bcbbd53bf250f654ddf37977af68a7 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/doi.org\/10.1073\/pnas.2221483120\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/07\/pnas-120-22-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/07\/pnas-120-22-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/07\/pnas-120-22.jpg 807w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/pnas-120-22\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/doi.org\/10.1073\/pnas.2221483120\" target=\"_blank\" rel=\"noopener\"><span style=\"font-size: 12pt;\"><strong>Dimer-assisted mechanism of (un)saturated fatty acid decarboxylation for alkene production<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>JUL-2023<\/strong> O alceno \u00e9 um importante intermedi\u00e1rio qu\u00edmico que corresponde \u00e0 aproximadamente 70% do setor de petroqu\u00edmicos. Este trabalho relata a descoberta da enzima \u201cOleTPRN\u201d capaz de converter \u00e1cidos graxos de origem vegetal em alcenos. A enzima identificada abre um leque de oportunidades pela sua compatibilidade com microrganismos industrialmente relevantes e por possibilitar o uso de uma ampla faixa de mat\u00e9rias-primas como aquelas ricas em \u00e1cido oleico, um dos mais abundantes \u00e1cidos graxos da natureza.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-4cb18e3809407c8ade784ae304e69fd0.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-4cb18e3809407c8ade784ae304e69fd0.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-4cb18e3809407c8ade784ae304e69fd0 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-4cb18e3809407c8ade784ae304e69fd0 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-4cb18e3809407c8ade784ae304e69fd0 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"http:\/\/dx.doi.org\/10.1016\/j.cbpa.2023.102282\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/06\/CURRENT-OPINION-CHEM-BIO-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/06\/CURRENT-OPINION-CHEM-BIO-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/06\/CURRENT-OPINION-CHEM-BIO.jpg 592w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/current-opinion-chem-bio\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/doi.org\/10.1016\/j.cbpa.2023.102282\"><span style=\"font-size: 12pt;\"><strong>Glycosidase mechanisms: Sugar conformations and reactivity in endo- and exo-acting enzymes<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>JUN-2023<\/strong> As hidrolases glicos\u00eddicas s\u00e3o enzimas cruciais para a despolimeriza\u00e7\u00e3o de polissacar\u00eddeos complexos e possuem papel fundamental em uma s\u00e9rie de processos biol\u00f3gicos e biotecnol\u00f3gicos que envolvem a biomassa vegetal. Nesse trabalho, utilizamos simula\u00e7\u00f5es computacionais para determinar como a topologia do s\u00edtio ativo e o modo de a\u00e7\u00e3o influenciam as rotas catal\u00edticas adotadas por essa classe de enzimas, guiando o uso racional desses biocatalisadores para processos industriais.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-5fc8733e1da393981e00d4bd798bc4ad.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-5fc8733e1da393981e00d4bd798bc4ad.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-5fc8733e1da393981e00d4bd798bc4ad .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-5fc8733e1da393981e00d4bd798bc4ad .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-5fc8733e1da393981e00d4bd798bc4ad alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/doi.org\/10.1016\/j.indcrop.2022.115993\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/06\/Industrial-Crops-and-Products-cover-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/06\/Industrial-Crops-and-Products-cover-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/06\/Industrial-Crops-and-Products-cover.jpg 576w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/industrial-crops-and-products-cover\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/doi.org\/10.1016\/j.indcrop.2022.115993\"><span style=\"font-size: 12pt;\"><strong>Biomass yield, nutrient removal, and chemical composition of energy cane genotypes in Southeast Brazil<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>JUN-2023<\/strong> A cana energia tem sido apontada com uma cultura promissora para a produ\u00e7\u00e3o de bioenergia. Entretanto, existem poucas informa\u00e7\u00f5es sobre o potencial produtivo e composi\u00e7\u00e3o qu\u00edmica desta biomassa. Neste estudo observou se que, comparado \u00e0 cana-de-a\u00e7\u00facar, a cana energia apresenta maior produtividade de biomassa (~25%), maior teor de fibra (~40%), menor teor de sacarose (~60%), menor quantidade de extrativos (~50%) e ainda extrai maiores quantidades de nutrientes do solo.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-625af8756853adb2bc4035ac2d40c402.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-625af8756853adb2bc4035ac2d40c402.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-625af8756853adb2bc4035ac2d40c402 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-625af8756853adb2bc4035ac2d40c402 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-625af8756853adb2bc4035ac2d40c402 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"http:\/\/dx.doi.org\/10.1042\/EBC20220128\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/05\/essays-in-biochemistry-500x500.png\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/05\/essays-in-biochemistry-500x500.png 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/05\/essays-in-biochemistry.png 520w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/essays-in-biochemistry\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"http:\/\/dx.doi.org\/10.1042\/EBC20220128\"><span style=\"font-size: 12pt;\"><strong>Enzymatic systems for carbohydrate utilization and biosynthesis in Xanthomonas and their role in pathogenesis and tissue specificity<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>MAI-2023<\/strong> <em>Xanthomonas<\/em> s\u00e3o bact\u00e9rias que causam doen\u00e7as em v\u00e1rias culturas agr\u00edcolas importantes para a seguran\u00e7a alimentar global e possuem um rico repert\u00f3rio de enzimas de grande interesse biotecnol\u00f3gico, seja para a sacarifica\u00e7\u00e3o de biomassas lignocelul\u00f3sicas como tamb\u00e9m para a s\u00edntese de emulsificantes naturais como a goma xantana. Esse artigo de revis\u00e3o descreve o conhecimento atual sobre sistemas enzim\u00e1ticos utilizados por essas bact\u00e9rias para despolimerizar e assimilar polissacar\u00eddeos vegetais e para produzir exopolissacar\u00eddeos como a goma xantana, destacando onde est\u00e1 a fronteira do conhecimento dentro dessa tem\u00e1tica.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-eef440e196196978b1c6dfe615cb23e1.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-eef440e196196978b1c6dfe615cb23e1.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-eef440e196196978b1c6dfe615cb23e1 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-eef440e196196978b1c6dfe615cb23e1 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-eef440e196196978b1c6dfe615cb23e1 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"http:\/\/dx.doi.org\/10.1016\/j.enconman.2022.116547\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/05\/energy-conversion-management-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/05\/energy-conversion-management-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/05\/energy-conversion-management.jpg 576w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/energy-conversion-management\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"http:\/\/dx.doi.org\/10.1016\/j.enconman.2022.116547\"><span style=\"font-size: 12pt;\"><strong>Decentralization of sustainable aviation fuel production in Brazil through Biomass-to-Liquids routes: A techno-economic and environmental evaluation<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>MAI-2023<\/strong> At\u00e9 2040, espera-se que pelo menos 50% do combust\u00edvel usado na avia\u00e7\u00e3o seja sustent\u00e1vel. O presente trabalho tem como objetivo avaliar a produ\u00e7\u00e3o de combust\u00edvel sustent\u00e1vel de avia\u00e7\u00e3o pela rota de gaseifica\u00e7\u00e3o e s\u00edntese Fischer-Tropsch, considerando as principais estrat\u00e9gias de implementa\u00e7\u00e3o na ind\u00fastria brasileira de cana-de-a\u00e7\u00facar. Os resultados fornecem uma vis\u00e3o dos cen\u00e1rios em que os biocombust\u00edveis poderiam competir e substituir o querosene de avia\u00e7\u00e3o f\u00f3ssil.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-72f20d3e3ea8f050eddf17bd601906db.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-72f20d3e3ea8f050eddf17bd601906db.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-72f20d3e3ea8f050eddf17bd601906db .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-72f20d3e3ea8f050eddf17bd601906db .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-72f20d3e3ea8f050eddf17bd601906db alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"http:\/\/dx.doi.org\/10.3389\/fpls.2022.1056082\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20221%20221&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/05\/Frontiers-in-Plant-Science.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/05\/Frontiers-in-Plant-Science.jpg 221w\" loading=\"eager\" style=\"--ratio: 221 \/ 221\" sizes=\"(max-width: 221px) 100vw, 221px\" width=\"221\" height=\"221\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/frontiers-in-plant-science\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"http:\/\/dx.doi.org\/10.3389\/fpls.2022.1056082\"><span style=\"font-size: 12pt;\"><strong>Bacterial volatile organic compounds (VOCs) promote growth and induce metabolic changes in rice<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>MAI-2023<\/strong> Agroqu\u00edmicos utilizados no setor agr\u00edcola podem ser derivados de fontes n\u00e3o renov\u00e1veis e causar impactos ambientais. Uma alternativa seria o uso de mol\u00e9culas bioativas microbianas. Neste trabalho \u00e9 descrito pela primeira vez a promo\u00e7\u00e3o de crescimento de arroz por mol\u00e9culas vol\u00e1teis bacterianas. Em adi\u00e7\u00e3o, vias metab\u00f3licas do arroz possivelmente moduladas por estas mol\u00e9culas foram identificadas. Esses resultados podem auxiliar no desenvolvimento de bioprodutos visando uma agricultura mais sustent\u00e1vel.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-e1107d43e391edf05496bbad570197c7.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-e1107d43e391edf05496bbad570197c7.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-e1107d43e391edf05496bbad570197c7 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-e1107d43e391edf05496bbad570197c7 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-e1107d43e391edf05496bbad570197c7 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"http:\/\/dx.doi.org\/10.1063\/5.0129324\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/05\/APPLIED-PHYSICS-REVIEW-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/05\/APPLIED-PHYSICS-REVIEW-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/05\/APPLIED-PHYSICS-REVIEW-1000x1000.jpg 1000w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/applied-physics-review\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"http:\/\/dx.doi.org\/10.1063\/5.0129324\"><span style=\"font-size: 12pt;\"><strong>From micro- to nano- and time-resolved x-ray computed tomography: Bio-based applications, synchrotron capabilities, and data-driven processing<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>MAI-2023<\/strong> A tomografia computadorizada de raios-X \u00e9 uma t\u00e9cnica n\u00e3o destrutiva vers\u00e1til que tem sido amplamente usada para investigar sistemas de base biol\u00f3gica em v\u00e1rias \u00e1reas de aplica\u00e7\u00e3o. Este artigo de revis\u00e3o apresenta aplica\u00e7\u00f5es de tomografia de raios-X para sistemas de base biol\u00f3gica, capacidades s\u00edncrotron que permitem nanotomografia e experimentos resolvidos no tempo, e os desafios e t\u00e9cnicas computacionais que surgem do dil\u00favio de dados gerados em modernas linhas de luz de tomografia.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-308faebf10eb78cd4c88fd5e81b69c44.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-308faebf10eb78cd4c88fd5e81b69c44.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-308faebf10eb78cd4c88fd5e81b69c44 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-308faebf10eb78cd4c88fd5e81b69c44 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-308faebf10eb78cd4c88fd5e81b69c44 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"http:\/\/dx.doi.org\/10.1016\/j.fuel.2023.127796\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/05\/fuel-elsevier-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/05\/fuel-elsevier-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/05\/fuel-elsevier.jpg 576w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/fuel-elsevier\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"http:\/\/dx.doi.org\/10.1016\/j.fuel.2023.127796\"><span style=\"font-size: 12pt;\"><strong>Depolymerization of enzymatic hydrolysis lignin: Review of technologies and opportunities for research<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>MAI-2023<\/strong> O avan\u00e7o do etanol celul\u00f3sico, baseado na hidr\u00f3lise enzim\u00e1tica da celulose, gera grandes volumes de res\u00edduo s\u00f3lido rico em lignina. Neste artigo de revis\u00e3o, a lignina de hidr\u00f3lise enzim\u00e1tica \u00e9 apresentada como uma mat\u00e9ria-prima renov\u00e1vel com caracter\u00edsticas singulares de custo, disponibilidade, transportabilidade, pureza e reatividade. A despolimeriza\u00e7\u00e3o dessa lignina abre oportunidades para obten\u00e7\u00e3o de biocarv\u00f5es, bioqu\u00edmicos e biocombust\u00edveis l\u00edquidos em uma nova plataforma de biorrenov\u00e1veis.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-12a58805f237c46b6cc4a045cc1faa1f.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-12a58805f237c46b6cc4a045cc1faa1f.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-12a58805f237c46b6cc4a045cc1faa1f .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-12a58805f237c46b6cc4a045cc1faa1f .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-12a58805f237c46b6cc4a045cc1faa1f alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"http:\/\/dx.doi.org\/10.1038\/s41589-022-01202-4\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20440%20440&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/05\/NATURE-CHEM-BIO.png\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/05\/NATURE-CHEM-BIO.png 440w\" loading=\"eager\" style=\"--ratio: 440 \/ 440\" sizes=\"(max-width: 440px) 100vw, 440px\" width=\"440\" height=\"440\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/nature-chem-bio-3\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"http:\/\/dx.doi.org\/10.1038\/s41589-022-01202-4\"><span style=\"font-size: 12pt;\"><strong>Mechanism of high-mannose N-glycan breakdown and metabolism by Bifidobacterium longum<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>MAI-2023<\/strong> Este trabalho elucidou os principais mecanismos moleculares empregados pelas bifidobact\u00e9rias para se alimentar de N-glicanos, carboidratos complexos encontrados em glicoprote\u00ednas do nosso l\u00famen intestinal. As bifidobact\u00e9rias s\u00e3o os primeiros colonizadores do intestino humano e este estudo ampliou nosso conhecimento sobre como elas utilizam carboidratos complexos como nutrientes para sobreviver em um nicho competitivo, trazendo benef\u00edcios para nossa sa\u00fade e inspira\u00e7\u00e3o para o desenvolvimento de novas tecnologias baseadas em enzimas.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-92a08248195ffe1c742dd8c08ad9d89c.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-92a08248195ffe1c742dd8c08ad9d89c.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-92a08248195ffe1c742dd8c08ad9d89c .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-92a08248195ffe1c742dd8c08ad9d89c .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-92a08248195ffe1c742dd8c08ad9d89c alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"http:\/\/dx.doi.org\/10.3389\/fmicb.2022.951130\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20290%20290&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/05\/frontiers-in-microbiology.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/05\/frontiers-in-microbiology.jpg 290w\" loading=\"eager\" style=\"--ratio: 290 \/ 290\" sizes=\"(max-width: 290px) 100vw, 290px\" width=\"290\" height=\"290\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/frontiers-in-microbiology\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"http:\/\/dx.doi.org\/10.3389\/fmicb.2022.951130\" target=\"_blank\" rel=\"noopener\"><span style=\"font-size: 12pt;\"><strong>The power of the smallest: The inhibitory activity of microbial volatile organic compounds against phytopathogens<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>MAI-2023<\/strong> Agroqu\u00edmicos utilizados no setor s\u00e3o usualmente derivados de fontes n\u00e3o renov\u00e1veis e podem causar diversos impactos ambientais. Uma estrat\u00e9gia ambientalmente amig\u00e1vel \u00e9 o uso de mol\u00e9culas bioativas produzidas por microrganismos. Esta revis\u00e3o demonstra como algumas destas mol\u00e9culas podem inibir o crescimento de fitopat\u00f3genos, tanto in vitro quanto in vivo. Em adi\u00e7\u00e3o, \u00e9 descrito seus mecanismos de a\u00e7\u00e3o, e alguns gargalos para o desenvolvimento de produtos biol\u00f3gicos a base destas mol\u00e9culas.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-42f3aa6895fd983605e8a415a9ec1542.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-42f3aa6895fd983605e8a415a9ec1542.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-42f3aa6895fd983605e8a415a9ec1542 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-42f3aa6895fd983605e8a415a9ec1542 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-42f3aa6895fd983605e8a415a9ec1542 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/pubs.rsc.org\/en\/content\/articlelanding\/2022\/NR\/D2NR05541D\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/01\/NANOSCALE-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/01\/NANOSCALE-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/01\/NANOSCALE.jpg 899w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/nanoscale\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"http:\/\/dx.doi.org\/10.1039\/d2nr05541d\" target=\"_blank\" rel=\"noopener\"><span style=\"font-size: 12pt;\"><strong>How lignin sticks to cellulose\u2014insights from atomic force microscopy enhanced by machine-learning analysis and molecular dynamics simulations<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>JAN-2023<\/strong> As intera\u00e7\u00f5es entre celulose e lignina s\u00e3o chave para a transforma\u00e7\u00e3o da biomassa em biorrenov\u00e1veis. Este trabalho desenvolveu nova abordagem para investigar as for\u00e7as entre celulose e lignina, empregando microscopia de for\u00e7a at\u00f4mica, an\u00e1lise de curvas for\u00e7a-dist\u00e2ncia com t\u00e9cnicas de aprendizado de m\u00e1quina e simula\u00e7\u00f5es de din\u00e2mica molecular. Os resultados permitem propor novas estrat\u00e9gias para desestabilizar as intera\u00e7\u00f5es e aprimorar a separa\u00e7\u00e3o de celulose e lignina.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-4064abfdbd061ddc317faeddeb82ce26.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-4064abfdbd061ddc317faeddeb82ce26.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-4064abfdbd061ddc317faeddeb82ce26 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-4064abfdbd061ddc317faeddeb82ce26 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-4064abfdbd061ddc317faeddeb82ce26 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S092666902200615X?via%3Dihub\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/01\/industrial-crops-products-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/01\/industrial-crops-products-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/01\/industrial-crops-products.jpg 574w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/industrial-crops-products-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"http:\/\/dx.doi.org\/10.1016\/j.indcrop.2022.115132\" target=\"_blank\" rel=\"noopener\"><span style=\"font-size: 12pt;\"><strong>Fate of silica phytoliths in the industrial crushing of sugarcane stalks<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>JAN-2023<\/strong> Gram\u00edneas como a cana-de-a\u00e7\u00facar cont\u00e9m estruturas r\u00edgidas e microsc\u00f3picas de s\u00edlica biog\u00eanica (fit\u00f3litos) em sua composi\u00e7\u00e3o. Este trabalho empregou t\u00e9cnicas de imagem, fracionamento e incinera\u00e7\u00e3o para determinar o destino dos fit\u00f3litos na moagem industrial dos colmos da cana. Os resultados mostram diferentes graus de ruptura e integridade dos tecidos vegetais e dos fit\u00f3litos, contribuindo para a compreens\u00e3o de potenciais interfer\u00eancias nos processos de convers\u00e3o do baga\u00e7o e potencial para obten\u00e7\u00e3o de bioprodutos de s\u00edlica.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-38022c072755f57a05ba3b3230c86372.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-38022c072755f57a05ba3b3230c86372.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-38022c072755f57a05ba3b3230c86372 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-38022c072755f57a05ba3b3230c86372 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-38022c072755f57a05ba3b3230c86372 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/scripts.iucr.org\/cgi-bin\/paper?S2059798322009561\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/01\/Acta-Crystallographica-Section-D-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/01\/Acta-Crystallographica-Section-D-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/01\/Acta-Crystallographica-Section-D.jpg 594w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/c131100-0-0\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/scripts.iucr.org\/cgi-bin\/paper?S2059798322009561\" target=\"_blank\" rel=\"noopener\"><span style=\"font-size: 12pt;\"><strong>Glycoside hydrolase subfamily GH5_57 features a highly redesigned catalytic interface to process complex hetero-\u03b2-mannans<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>DEZ-2022<\/strong> As hidrolases glicos\u00eddicas (GH) constituem a principal classe de enzimas respons\u00e1veis pela despolimeriza\u00e7\u00e3o da parede celular vegetal. Nesse estudo, a estrutura tridimensional de uma nova enzima, juntamente com ensaios bioqu\u00edmicos e an\u00e1lises filogen\u00e9ticas possibilitaram o estabelecimento de uma subfam\u00edlia in\u00e9dita de GH, a GH5_57. Esta descoberta abre novas perspectivas para o processamento de um importante carboidrato por meio de mananases, enzimas que possuem diversas aplica\u00e7\u00f5es industriais.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-50006ba80a11e794930e576dde686017.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-50006ba80a11e794930e576dde686017.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-50006ba80a11e794930e576dde686017 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-50006ba80a11e794930e576dde686017 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-50006ba80a11e794930e576dde686017 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S0141813022025247?via%3Dihub\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/01\/International-Journal-of-Biological-Macromolecules-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/01\/International-Journal-of-Biological-Macromolecules-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2023\/01\/International-Journal-of-Biological-Macromolecules.jpg 574w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/international-journal-of-biological-macromolecules\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"http:\/\/dx.doi.org\/10.1016\/j.ijbiomac.2022.10.269\" target=\"_blank\" rel=\"noopener\"><span style=\"font-size: 12pt;\"><strong>Exploring the compatibility between hydrothermal depolymerization of alkaline lignin from sugarcane bagasse and metabolization of the aromatics by bacteria<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>DEZ-2022<\/strong> Lignina \u00e9 uma macromol\u00e9cula arom\u00e1tica com potencial para produ\u00e7\u00e3o de produtos qu\u00edmicos biorrenov\u00e1veis. Neste estudo, lignina de baga\u00e7o de cana-de-a\u00e7\u00facar foi processada em condi\u00e7\u00f5es hidrot\u00e9rmicas. Um bio-\u00f3leo obtido, rico em mon\u00f4meros arom\u00e1ticos, promoveu o crescimento de 9 esp\u00e9cies de bact\u00e9rias, com destaque para Pseudomonas sp. LIM05 e Burkholderia sp. LIM09. Esses resultados mostram estrat\u00e9gia promissora para integra\u00e7\u00e3o entre processo hidrot\u00e9rmico e bioconvers\u00e3o para valoriza\u00e7\u00e3o de lignina.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-d4900cc26b360d37044f216e52d332c6.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-d4900cc26b360d37044f216e52d332c6.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-d4900cc26b360d37044f216e52d332c6 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-d4900cc26b360d37044f216e52d332c6 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-d4900cc26b360d37044f216e52d332c6 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.nature.com\/articles\/s41589-022-01202-4\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20440%20440&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/12\/nature-chem-bio-18.png\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/12\/nature-chem-bio-18.png 440w\" loading=\"eager\" style=\"--ratio: 440 \/ 440\" sizes=\"(max-width: 440px) 100vw, 440px\" width=\"440\" height=\"440\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/nature-chem-bio-18\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/doi.org\/10.1038\/s41589-022-01202-4\"><span style=\"font-size: 12pt;\"><strong>Mechanism of high-mannose <em>N<\/em>-glycan breakdown and metabolism by <em>Bifidobacterium longum<\/em><\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>DEC-2022<\/strong> Este trabalho elucidou os principais mecanismos moleculares empregados pelas bifidobact\u00e9rias para se alimentar de N-glicanos, carboidratos complexos encontrados em glicoprote\u00ednas do nosso l\u00famen intestinal. As bifidobact\u00e9rias s\u00e3o os primeiros colonizadores do intestino humano e este estudo ampliou nosso conhecimento sobre como elas utilizam carboidratos complexos como nutrientes para sobreviver em um nicho competitivo, trazendo benef\u00edcios para nossa sa\u00fade e inspira\u00e7\u00e3o para o desenvolvimento de novas tecnologias baseadas em enzimas.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-178e9b38a570477ff6389a6d62e7e4e7.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-178e9b38a570477ff6389a6d62e7e4e7.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-178e9b38a570477ff6389a6d62e7e4e7 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-178e9b38a570477ff6389a6d62e7e4e7 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-178e9b38a570477ff6389a6d62e7e4e7 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S0960852422013529?via%3Dihub\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/12\/Bioresource-Technology-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/12\/Bioresource-Technology-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/12\/Bioresource-Technology.jpg 574w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/bioresource-technology\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S0960852422013529?via%3Dihub\"><span style=\"font-size: 12pt;\"><strong>Development of an economically competitive <em>Trichoderma<\/em>-based platform for enzyme production: Bioprocess optimization, pilot plant scale-up, techno-economic analysis and life cycle assessment<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>DEZ-2022<\/strong> O coquetel enzim\u00e1tico para sacarifica\u00e7\u00e3o do baga\u00e7o de cana-de-a\u00e7\u00facar \u00e9 um elemento chave para viabiliza\u00e7\u00e3o do etanol celul\u00f3sico. Nesse sentido, foi realizada a otimiza\u00e7\u00e3o dos principais par\u00e2metros operacionais para o crescimento e produ\u00e7\u00e3o enzim\u00e1tica em escala de bancada e piloto pela cepa f\u00fangica previamente desenvolvida pelo LNBR\/CNPEM. Os resultados das avalia\u00e7\u00f5es mostraram que a plataforma \u00e9 economicamente e ambientalmente competitiva quando comparadas a literatura e alternativas comerciais.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-9382fc52c32b76ac30c277552865f7d9.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-9382fc52c32b76ac30c277552865f7d9.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-9382fc52c32b76ac30c277552865f7d9 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-9382fc52c32b76ac30c277552865f7d9 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-9382fc52c32b76ac30c277552865f7d9 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www-sciencedirect.ez106.periodicos.capes.gov.br\/science\/article\/pii\/S0921344922005572\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/11\/Resources-Conservation-and-Recycling-2-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/11\/Resources-Conservation-and-Recycling-2-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/11\/Resources-Conservation-and-Recycling-2-1000x1000.jpg 1000w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/resources-conservation-and-recycling-2-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/www-sciencedirect.ez106.periodicos.capes.gov.br\/science\/article\/pii\/S0921344922005572\"><span style=\"font-size: 12pt;\"><strong>Integrating carbon footprint to spatialized modeling: The mitigation potential of sugarcane ethanol production in the Brazilian Center-South<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>NOV-2022<\/strong> Este estudo demonstra o uso de uma plataforma de avalia\u00e7\u00e3o de impactos econ\u00f4micos e ambientais, desenvolvida no CNPEM, que considera aspectos regionais na produ\u00e7\u00e3o de etanol, revelando potencial de ganhos ambientais e de receita com Cr\u00e9ditos de Descarboniza\u00e7\u00e3o (CBIOS). A estrutura georreferenciada proposta mostrou varia\u00e7\u00f5es espaciais significativas que devem ser contabilizadas em futuras avalia\u00e7\u00f5es, com intuito de garantir a produ\u00e7\u00e3o de biorrenov\u00e1veis de forma sustent\u00e1vel.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-95da9ac75a65504d6937bfaa0842d540.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-95da9ac75a65504d6937bfaa0842d540.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-95da9ac75a65504d6937bfaa0842d540 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-95da9ac75a65504d6937bfaa0842d540 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-95da9ac75a65504d6937bfaa0842d540 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.nature.com\/articles\/s41929-022-00823-1\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20439%20439&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/11\/nature-catalysis.png\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/11\/nature-catalysis.png 439w\" loading=\"eager\" style=\"--ratio: 439 \/ 439\" sizes=\"(max-width: 439px) 100vw, 439px\" width=\"439\" height=\"439\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/nature-catalysis\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/www.nature.com\/articles\/s41929-022-00823-1\"><span style=\"font-size: 12pt;\"><strong>Site-selective proteolytic cleavage of plant viruses by photoactive chiral nanoparticles<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>NOV-2022<\/strong> Nanoparticulas quirais podem ser utilizadas para diminuir de preju\u00edzos nas lavouras causados pelo v\u00edrus mosaico do tabaco com impactos ambientas reduzidos em rela\u00e7\u00e3o aos pesticidas comuns. O defensivo qu\u00edmico desenvolvido \u00e9 praticamente in\u00f3cuo para a planta e para o meio ambiente. O estudo mostra que \u00e9 poss\u00edvel combater doen\u00e7as de forma espec\u00edfica e eficiente controlando-se o tamanho e a quiralidade dos nanomateriais por meio da funcionaliza\u00e7\u00e3o com mol\u00e9culas org\u00e2nicas quirais.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-af9ba9f439129f9cc7ba790f3d989d73.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-af9ba9f439129f9cc7ba790f3d989d73.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-af9ba9f439129f9cc7ba790f3d989d73 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-af9ba9f439129f9cc7ba790f3d989d73 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-af9ba9f439129f9cc7ba790f3d989d73 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S096014812201610X?via%3Dihub\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/08\/X09601481-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/08\/X09601481-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/08\/X09601481.jpg 574w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/x09601481\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S096014812201610X?via%3Dihub\"><span style=\"font-size: 12pt;\"><strong>RNA-seq based transcriptomic analysis of the non-conventional yeast <em>Spathaspora passalidarum<\/em> during Melle-boinot cell recycle in xylose-glucose mixtures<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>NOV-2022<\/strong> Leveduras n\u00e3o convencionais capazes de fermentar xilose s\u00e3o alternativas promissoras para a produ\u00e7\u00e3o de etanol de segunda gera\u00e7\u00e3o. Este trabalho estudou o impacto do processo Melle-Boinot na fisiologia da levedura n\u00e3o convencional Spathaspora passalidarum. A reprograma\u00e7\u00e3o metab\u00f3lica observada resultou em aumento no rendimento e produtividade de etanol. Estes resultados podem guiar o desenvolvimento de novos microrganismos para viabilizar a produ\u00e7\u00e3o de energia renov\u00e1vel a partir de biomassa.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-e457ac771cb1408dc543b2788fe76e77.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-e457ac771cb1408dc543b2788fe76e77.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-e457ac771cb1408dc543b2788fe76e77 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-e457ac771cb1408dc543b2788fe76e77 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-e457ac771cb1408dc543b2788fe76e77 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S2352550922002494?via%3Dihub\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20313%20313&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/09\/sustainable-cover.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/09\/sustainable-cover.jpg 313w\" loading=\"eager\" style=\"--ratio: 313 \/ 313\" sizes=\"(max-width: 313px) 100vw, 313px\" width=\"313\" height=\"313\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/sustainable-cover\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"http:\/\/dx.doi.org\/10.1016\/j.spc.2022.09.009\"><span style=\"font-size: 12pt;\"><strong>Techno-economic and environmental assessment of polylactic acid production integrated with the sugarcane value chain<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>SET-2022<\/strong> Os biopl\u00e1sticos renov\u00e1veis podem contribuir para mitiga\u00e7\u00e3o de mudan\u00e7as clim\u00e1ticas. Por\u00e9m, sua utiliza\u00e7\u00e3o \u00e9 ainda limitada pelo alto custo comparado aos tradicionais pol\u00edmeros f\u00f3sseis. Neste estudo, o processo produtivo do poli(\u00e1cido l\u00e1ctico) (PLA) derivado de caldo de cana-de-a\u00e7\u00facar \u00e9 avaliado sob as perspectivas t\u00e9cnico-econ\u00f4mica e ambiental. Sua integra\u00e7\u00e3o com a cadeia produtiva da cana-de-a\u00e7\u00facar brasileira \u00e9 estrat\u00e9gica para reduzir os custos de produ\u00e7\u00e3o e melhorar a competitividade do PLA.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-98b8e653e0f22feeceb99c2709f9b65e.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-98b8e653e0f22feeceb99c2709f9b65e.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-98b8e653e0f22feeceb99c2709f9b65e .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-98b8e653e0f22feeceb99c2709f9b65e .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-98b8e653e0f22feeceb99c2709f9b65e alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S0960148122005626\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/08\/X09601481-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/08\/X09601481-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/08\/X09601481.jpg 574w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/x09601481\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S0960148122005626\"><span style=\"font-size: 12pt;\"><strong>Integration of first- and second-generation ethanol production: Evaluation of a mathematical model to describe sucrose and xylose co-fermentation by recombinant <em>Saccharomyces cerevisiae<\/em><\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>AGO-2022<\/strong> Leveduras geneticamente modificadas s\u00e3o uteis para otimizar o desenvolvimento de bioprocessos para produ\u00e7\u00e3o de biocombust\u00edveis de segunda gera\u00e7\u00e3o. Este trabalho prop\u00f5e modelos cin\u00e9ticos para descrever o metabolismo de uma levedura geneticamente modificada na co-fermenta\u00e7\u00e3o de a\u00e7\u00facares (sacarose, glicose, frutose e xilose) oriundos da cana-de-a\u00e7\u00facar. O modelo permitiu avaliar o impacto da concentra\u00e7\u00e3o celular e de diferentes fontes de carbono na produ\u00e7\u00e3o de etanol em uma biorrefinaria integrada.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-f40f1eeb15e5da197339487e67eda15a.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-f40f1eeb15e5da197339487e67eda15a.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-f40f1eeb15e5da197339487e67eda15a .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-f40f1eeb15e5da197339487e67eda15a .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-f40f1eeb15e5da197339487e67eda15a alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/pubs.acs.org\/doi\/pdf\/10.1021\/acssuschemeng.2c02462\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20292%20292&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/08\/acs-sustainable-22.png\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/08\/acs-sustainable-22.png 292w\" loading=\"eager\" style=\"--ratio: 292 \/ 292\" sizes=\"(max-width: 292px) 100vw, 292px\" width=\"292\" height=\"292\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/acs-sustainable-22\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/pubs.acs.org\/doi\/pdf\/10.1021\/acssuschemeng.2c02462\"><span style=\"font-size: 12pt;\"><strong>Density Functional Theory with Implicit Solvents for Accurate Estimation of Aqueous and Organic Solvation Free Energies of Lignin Fragments<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>AGO-2022<\/strong> A lignina \u00e9 a principal fonte potencial de mol\u00e9culas arom\u00e1ticas renov\u00e1veis, mas propriedades em solu\u00e7\u00e3o de seus fragmentos de despolimeriza\u00e7\u00e3o ainda n\u00e3o s\u00e3o descritas de maneira precisa e abrangente. Neste trabalho foi modelada a solvata\u00e7\u00e3o de grande n\u00famero destes fragmentos em \u00e1gua e em solventes org\u00e2nicos com m\u00e9todos de qu\u00edmica qu\u00e2ntica. Foi alcan\u00e7ada precis\u00e3o sem precedentes, avan\u00e7o fundamental para a modelagem computacional do processamento da lignina em combust\u00edveis e qu\u00edmicos renov\u00e1veis.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-a183d3f6c461934e1ff6ce957cb6d437.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-a183d3f6c461934e1ff6ce957cb6d437.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-a183d3f6c461934e1ff6ce957cb6d437 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-a183d3f6c461934e1ff6ce957cb6d437 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-a183d3f6c461934e1ff6ce957cb6d437 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S0960148121014804\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/08\/X09601481-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/08\/X09601481-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/08\/X09601481.jpg 574w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/x09601481\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S0960148121014804\"><span style=\"font-size: 12pt;\"><strong>Simultaneous saccharification isomerization and Co-fermentation \u2013 SSICF: A new process concept for second-generation ethanol biorefineries combining immobilized recombinant enzymes and non-GMO Saccharomyces<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>AGO-2022<\/strong> Estrat\u00e9gias integradas de bioprocessos podem facilitar a produ\u00e7\u00e3o de etanol a partir de a\u00e7\u00facares C5 e C6 de mat\u00e9rias-primas lignocelul\u00f3sicas. Este trabalho prop\u00f5e um novo conceito de processo (SSICF), onde o baga\u00e7o de cana \u00e9 hidrolisado simultaneamente com a isomeriza\u00e7\u00e3o do a\u00e7\u00facar xilose e a co-fermenta\u00e7\u00e3o de C5 e C6. \u00c9 a primeira prova de conceito bem-sucedida do SSICF com reciclagem enzim\u00e1tica e levedura n\u00e3o-GMO, um processo inovador com alto potencial para uso industrial. Patente: BR1020200111221.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-3fac4f08025bf314918df8ea4d0d56f0.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-3fac4f08025bf314918df8ea4d0d56f0.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-3fac4f08025bf314918df8ea4d0d56f0 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-3fac4f08025bf314918df8ea4d0d56f0 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-3fac4f08025bf314918df8ea4d0d56f0 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/pubmed.ncbi.nlm.nih.gov\/34641740\/\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/08\/Critical-Reviews-Biotech-500x500.png\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/08\/Critical-Reviews-Biotech-500x500.png 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/08\/Critical-Reviews-Biotech.png 524w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/critical-reviews-biotech-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/pubmed.ncbi.nlm.nih.gov\/34641740\/\"><span style=\"font-size: 12pt;\"><strong>Paradigm shift in xylose isomerase usage: a novel scenario with distinct applications<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>AGO-2022<\/strong> O desenvolvimento de materiais renov\u00e1veis envolve utiliza\u00e7\u00e3o adequada de fontes de carbonos renov\u00e1veis. Neste contexto, o uso da D-xilose \u00e9 crucial, pois \u00e9 o segundo a\u00e7\u00facar mais abundante na natureza. Esta revis\u00e3o fornece uma vis\u00e3o geral das xiloses isomerases, enzimas que permitem o metabolismo da xilose por v\u00e1rios microrganismos. Abrange desde suas fontes prim\u00e1rias at\u00e9 as caracter\u00edsticas bioqu\u00edmicas e estruturais que influenciam seus mecanismos de a\u00e7\u00e3o.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-b381ad698b423e8a0671cab55540f582.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-b381ad698b423e8a0671cab55540f582.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-b381ad698b423e8a0671cab55540f582 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-b381ad698b423e8a0671cab55540f582 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-b381ad698b423e8a0671cab55540f582 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.sciencedirect.com\/journal\/sustainable-production-and-consumption\/vol\/32\/suppl\/C\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/08\/X23525509-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/08\/X23525509-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/08\/X23525509.jpg 579w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/x23525509\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/www.sciencedirect.com\/journal\/sustainable-production-and-consumption\/vol\/32\/suppl\/C\"><span style=\"font-size: 12pt;\"><strong>Techno-economic and environmental assessment of bioenergy and livestock integrated systems in Brazil<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>AGO-2022<\/strong> A integra\u00e7\u00e3o da produ\u00e7\u00e3o de bioenergia e pecu\u00e1ria \u00e9 uma op\u00e7\u00e3o promissora para aliviar a press\u00e3o sobre o uso da terra. Este estudo avaliou sistemas integrados, baseados em intensifica\u00e7\u00e3o de pastagens e uso de subprodutos de biocombust\u00edveis como suplemento alimentar animal. Os resultados mostraram que a integra\u00e7\u00e3o contribui para uma maior mitiga\u00e7\u00e3o de gases de efeito estufa e para diversos Objetivos de Desenvolvimento Sustent\u00e1vel (ODS), al\u00e9m de ser t\u00e9cnica e economicamente vi\u00e1vel.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-9b684a29e99ed1761708e6a46cba2d4e.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-9b684a29e99ed1761708e6a46cba2d4e.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-9b684a29e99ed1761708e6a46cba2d4e .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-9b684a29e99ed1761708e6a46cba2d4e .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-9b684a29e99ed1761708e6a46cba2d4e alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/doi.org\/10.1007\/s10113-022-01907-1\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20218%20218&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/04\/reg-environ-change.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/04\/reg-environ-change.jpg 218w\" loading=\"eager\" style=\"--ratio: 218 \/ 218\" sizes=\"(max-width: 218px) 100vw, 218px\" width=\"218\" height=\"218\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/reg-environ-change\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/doi.org\/10.1007\/s10113-022-01907-1\"><span style=\"font-size: 12pt;\"><strong>Implications of regional agricultural land use dynamics and deforestation associated with sugarcane expansion for soil carbon stocks in Brazil<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>ABR-2022<\/strong> O setor sucroenerg\u00e9tico no Brasil tem contribu\u00eddo para seguran\u00e7a energ\u00e9tica e mitiga\u00e7\u00e3o de mudan\u00e7as clim\u00e1ticas. Este estudo avaliou os efeitos diretos do cultivo da cana (2002 a 2016) sobre o desmatamento e estoques de carbono no solo, tanto no territ\u00f3rio nacional quanto em duas bacias hidrogr\u00e1ficas. A avalia\u00e7\u00e3o mostrou pouco impacto direto do cultivo no desmatamento, e din\u00e2micas de mudan\u00e7a do uso da terra dependentes de aspectos regionais, bem como a manuten\u00e7\u00e3o dos estoques de carbono nas bacias avaliadas.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-027ff941c363981b1d22eb9b6b974b2d.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-027ff941c363981b1d22eb9b6b974b2d.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-027ff941c363981b1d22eb9b6b974b2d .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-027ff941c363981b1d22eb9b6b974b2d .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-027ff941c363981b1d22eb9b6b974b2d alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.nature.com\/articles\/s41565-022-01079-3\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20200%20200&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/05\/nature-nanotech-17.png\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/05\/nature-nanotech-17.png 200w\" loading=\"eager\" style=\"--ratio: 200 \/ 200\" sizes=\"(max-width: 200px) 100vw, 200px\" width=\"200\" height=\"200\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/nature-nanotech-17\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/www.nature.com\/articles\/s41565-022-01079-3\"><span style=\"font-size: 12pt;\"><strong>Polarization-sensitive optoionic membranes from chiral plasmonic nanoparticles<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>MAR-2022<\/strong> A\u00a0associa\u00e7\u00e3o de amino\u00e1cidos e nanoestruturas pode trazer impactos significativos no desenvolvimento de dispositivos \u00f3ticos. Este trabalho mostra o desenvolvimento de um dispositivo, uma nanomembrana recoberta com nanopart\u00edculas de ouro modificadas com o amino\u00e1cido fenilalanina, capaz transformar a polariza\u00e7\u00e3o circular da luz em informa\u00e7\u00e3o. Al\u00e9m de auxiliar no entendimento de alguns processos \u00f3ticos naturais, a sensitividade da t\u00e9cnica pode ter impacto na constru\u00e7\u00e3o de semicondutores avan\u00e7ados.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-77504fddb444a25eddf1c76b4cbe061b.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-77504fddb444a25eddf1c76b4cbe061b.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-77504fddb444a25eddf1c76b4cbe061b .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-77504fddb444a25eddf1c76b4cbe061b .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-77504fddb444a25eddf1c76b4cbe061b alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.nature.com\/articles\/s41566-022-00969-1\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20200%20200&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/05\/nature-photonics-16.png\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/05\/nature-photonics-16.png 200w\" loading=\"eager\" style=\"--ratio: 200 \/ 200\" sizes=\"(max-width: 200px) 100vw, 200px\" width=\"200\" height=\"200\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/nature-photonics-16\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/www.nature.com\/articles\/s41566-022-00969-1\"><span style=\"font-size: 12pt;\"><strong>Chiral phonons in microcrystals and nanofibrils of biomolecules<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>MAR-2022<\/strong> Diferen\u00e7as no arranjo tridimensional de algumas mol\u00e9culas podem alterar significativamente sua fun\u00e7\u00e3o, podendo at\u00e9 causar malef\u00edcios. Este trabalho mostra como a radia\u00e7\u00e3o quiral na regi\u00e3o de Terahertz pode ajudar a identificar a composi\u00e7\u00e3o e arranjo de prote\u00ednas ou cristais de amino\u00e1cidos, com aplica\u00e7\u00f5es no controle de qualidade de suplementos nutricionais e tamb\u00e9m na identifica\u00e7\u00e3o do ac\u00famulo de biomol\u00e9culas nocivos \u00e0 sa\u00fade, como as fibrilas de insulina e os c\u00e1lculos renais.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-2cc50d3aaa9933940eb1c6ac5311e6f5.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-2cc50d3aaa9933940eb1c6ac5311e6f5.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-2cc50d3aaa9933940eb1c6ac5311e6f5 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-2cc50d3aaa9933940eb1c6ac5311e6f5 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-2cc50d3aaa9933940eb1c6ac5311e6f5 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/onlinelibrary.wiley.com\/doi\/10.1111\/jiec.13242\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/02\/journal-industrial-ecology-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/02\/journal-industrial-ecology-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/02\/journal-industrial-ecology.jpg 761w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/journal-industrial-ecology\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/onlinelibrary.wiley.com\/doi\/10.1111\/jiec.13242\"><span style=\"font-size: 12pt;\"><strong>Addressing the contributions of electricity from biomass in Brazil in the context of the Sustainable Development Goals using life cycle assessment methods<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>FEV-2022<\/strong> Atingir as metas dos Objetivos de Desenvolvimento Sustent\u00e1vel (OSD) \u00e9 essencial para o futuro do nosso planeta. Este estudo prop\u00f5e uma metodologia e a utiliza para comparar os impactos nos ODS da eletricidade de biomassa de cana-de-a\u00e7\u00facar (EBC) com outras op\u00e7\u00f5es tecnol\u00f3gicas da matriz el\u00e9trica brasileira. Os resultados indicam, por exemplo, que a EBC tem um desempenho melhor nos ODS em compara\u00e7\u00e3o com a eletricidade produzida a partir do carv\u00e3o e do petr\u00f3leo. O estudo tamb\u00e9m demonstra as \u00e1reas-chave na produ\u00e7\u00e3o de EBC que precisam ser melhoradas para contribuir melhor para a atingir as metas dos ODS, como participa\u00e7\u00e3o feminina na for\u00e7a de trabalho e melhores sal\u00e1rios.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-2aa62ed0703209472357004f08d3dda5.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-2aa62ed0703209472357004f08d3dda5.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-2aa62ed0703209472357004f08d3dda5 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-2aa62ed0703209472357004f08d3dda5 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-2aa62ed0703209472357004f08d3dda5 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.nature.com\/articles\/s41467-022-28310-y\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20326%20326&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/02\/NATURE-COMMS-22.png\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/02\/NATURE-COMMS-22.png 326w\" loading=\"eager\" style=\"--ratio: 326 \/ 326\" sizes=\"(max-width: 326px) 100vw, 326px\" width=\"326\" height=\"326\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/nature-comms-22\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/www.nature.com\/articles\/s41467-022-28310-y\"><span style=\"font-size: 12pt;\"><strong>Gut microbiome of the largest living rodent harbors unprecedented enzymatic systems to degrade plant polysaccharides<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>FEV-2022<\/strong> A biodiversidade microbiana presente no trato digestivo da capivara, o maior roedor do mundo, \u00e9 um reservat\u00f3rio inexplorado de enzimas aptas a superar a recalcitr\u00e2ncia da biomassa lignocelul\u00f3sica. Explorando este ambiente, por estrat\u00e9gias multi-\u00f4micas combinadas com enzimologia de carboidratos, uma nova fam\u00edlia de hidrolases glicos\u00eddicas com atividade de beta-galactosidase e nova fam\u00edlia de m\u00f3dulos de liga\u00e7\u00e3o a carboidratos envolvida na liga\u00e7\u00e3o de xilano foram reveladas. Essas descobertas t\u00eam potenciais aplica\u00e7\u00f5es na produ\u00e7\u00e3o de biocombust\u00edveis, bioqu\u00edmicos, biomateriais e alimentos.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-3282a9637556db07723bb0cb2b895f92.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-3282a9637556db07723bb0cb2b895f92.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-3282a9637556db07723bb0cb2b895f92 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-3282a9637556db07723bb0cb2b895f92 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-3282a9637556db07723bb0cb2b895f92 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/link.springer.com\/article\/10.1007%2Fs12649-021-01655-z\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20471%20471&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/02\/waste-biomass-valor.png\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/02\/waste-biomass-valor.png 471w\" loading=\"eager\" style=\"--ratio: 471 \/ 471\" sizes=\"(max-width: 471px) 100vw, 471px\" width=\"471\" height=\"471\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/waste-biomass-valor\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/link.springer.com\/article\/10.1007%2Fs12649-021-01655-z\"><span style=\"font-size: 12pt;\"><strong>Unveiling the Variability and Multiscale Structure of Soybean Hulls for Biotechnological Valorization<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>FEV-2022<\/strong> A casca de soja \u00e9 um importante res\u00edduo agroindustrial e potencial mat\u00e9ria-prima para biorrenov\u00e1veis. Este artigo confirma a baixa recalcitr\u00e2ncia da casca de soja, demonstrando altos rendimentos (por exemplo, 80% de glicose) na convers\u00e3o enzim\u00e1tica sem pr\u00e9-tratamento. O artigo tamb\u00e9m apresenta uma base estrutural multiescala para a compreens\u00e3o da variabilidade e recalcitr\u00e2ncia da casca de soja.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-dfa8f625ac30c7e27112b6eff32b63db.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-dfa8f625ac30c7e27112b6eff32b63db.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-dfa8f625ac30c7e27112b6eff32b63db .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-dfa8f625ac30c7e27112b6eff32b63db .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-dfa8f625ac30c7e27112b6eff32b63db alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/sfamjournals.onlinelibrary.wiley.com\/doi\/10.1111\/1462-2920.15876\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/02\/ENVIRONMENTAL-MICRO-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/02\/ENVIRONMENTAL-MICRO-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/02\/ENVIRONMENTAL-MICRO.jpg 595w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/environmental-micro\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/sfamjournals.onlinelibrary.wiley.com\/doi\/10.1111\/1462-2920.15876\"><span style=\"font-size: 12pt;\"><strong>Bacterial volatile organic compounds induce adverse ultrastructural changes and DNA damage to the sugarcane pathogenic fungus <em>Thielaviopsis ethacetica<\/em><\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>FEV-2022<\/strong> A import\u00e2ncia da biotecnologia na agricultura vem crescendo dada a necessidade de pr\u00e1ticas mais sustent\u00e1veis. Neste contexto, este estudo demonstra o potencial de mol\u00e9culas bioativas bacterianas, os compostos org\u00e2nicos vol\u00e1teis (COVs), serem utilizadas como uma alternativa aos agroqu\u00edmicos no controle de doen\u00e7as de culturas agr\u00edcolas. Os resultados mostram que o tratamento com COVs ocasiona inibi\u00e7\u00e3o do metabolismo prim\u00e1rio, altera\u00e7\u00f5es morfol\u00f3gicas e danos ao DNA do fitopat\u00f3geno, resultando em sua morte.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-0da774649c7ed7c696a3805eaab87435.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-0da774649c7ed7c696a3805eaab87435.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-0da774649c7ed7c696a3805eaab87435 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-0da774649c7ed7c696a3805eaab87435 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-0da774649c7ed7c696a3805eaab87435 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/doi.org\/10.1016\/j.enpol.2021.112637\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20197%20197&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/02\/energy-policy.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/02\/energy-policy.jpg 197w\" loading=\"eager\" style=\"--ratio: 197 \/ 197\" sizes=\"(max-width: 197px) 100vw, 197px\" width=\"197\" height=\"197\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/energy-policy\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/doi.org\/10.1016\/j.enpol.2021.112637\"><span style=\"font-size: 12pt;\"><strong>Advanced technologies for electricity production in the sugarcane value chain are a strategic option in a carbon reward policy context<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>DEZ-2021<\/strong> A produ\u00e7\u00e3o bioenerg\u00e9tica sustent\u00e1vel \u00e9 necess\u00e1ria para atender \u00e0 crescente demanda e preocupa\u00e7\u00f5es ambientais. Este estudo compara op\u00e7\u00f5es t\u00edpicas e avan\u00e7adas para gera\u00e7\u00e3o de eletricidade a partir de biomassa em usinas de cana-de-a\u00e7\u00facar no Brasil. As estrat\u00e9gias avaliadas podem ajudar a orientar a implanta\u00e7\u00e3o vi\u00e1vel de tecnologias avan\u00e7adas para produ\u00e7\u00e3o de eletricidade a partir de biomassa, atendendo \u00e0s demandas futuras por eletricidade sustent\u00e1vel.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-693a2a8376599516509787edd8b837a1.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-693a2a8376599516509787edd8b837a1.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-693a2a8376599516509787edd8b837a1 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-693a2a8376599516509787edd8b837a1 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-693a2a8376599516509787edd8b837a1 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/doi.org\/10.1016\/j.indcrop.2021.114139\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20197%20197&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/02\/industrial-crops-products.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/02\/industrial-crops-products.jpg 197w\" loading=\"eager\" style=\"--ratio: 197 \/ 197\" sizes=\"(max-width: 197px) 100vw, 197px\" width=\"197\" height=\"197\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/industrial-crops-products\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/doi.org\/10.1016\/j.indcrop.2021.114139\"><span style=\"font-size: 12pt;\"><strong>Techno-economic assessment of HTL integration to the Brazilian sugarcane industry: An evaluation of different scenarios<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>DEZ-2021<\/strong> O setor de transportes tem car\u00eancia de biocombust\u00edveis l\u00edquidos com maior poder calor\u00edfico para transportes de longas dist\u00e2ncias, como os realizados por avi\u00f5es, navios e caminh\u00f5es. A liquefa\u00e7\u00e3o hidrot\u00e9rmica (HTL) tem sido identificada como uma das tecnologias termoqu\u00edmicas mais promissoras para a produ\u00e7\u00e3o de biocombust\u00edveis l\u00edquidos. O presente estudo realizou uma an\u00e1lise t\u00e9cnico-econ\u00f3mica para compreender o desempenho econ\u00f3mico das HTL no contexto brasileiro, indicando o potencial de ser economicamente vi\u00e1vel se integrada numa f\u00e1brica de cana-de-a\u00e7\u00facar.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-7d37f9f035b94119b73e3a9c00561f40.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-7d37f9f035b94119b73e3a9c00561f40.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-7d37f9f035b94119b73e3a9c00561f40 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-7d37f9f035b94119b73e3a9c00561f40 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-7d37f9f035b94119b73e3a9c00561f40 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/doi.org\/10.1007\/s11367-021-01936-8\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20152%20152&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/02\/1.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2022\/02\/1.jpg 152w\" loading=\"eager\" style=\"--ratio: 152 \/ 152\" sizes=\"(max-width: 152px) 100vw, 152px\" width=\"152\" height=\"152\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/attachment\/1\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/doi.org\/10.1007\/s11367-021-01936-8\"><span style=\"font-size: 12pt;\"><strong>A novel social life cycle assessment method for determining workers\u2019 human development: a case study of the sugarcane biorefineries in Brazil<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>OUT-2021<\/strong> A metodologia de avalia\u00e7\u00e3o do ciclo de vida social (ACV-S) \u00e9 importante para a an\u00e1lise da sustentabilidade, mas precisa avan\u00e7ar em seu desenvolvimento metodol\u00f3gico. Este estudo prop\u00f5e um indicador, inspirado pelo \u00cdndice de Desenvolvimento Humano (IDH), que pode ser aplicado em muitos setores e cadeias de produ\u00e7\u00e3o. A m\u00e9trica proposta para mensura\u00e7\u00e3o de impactos sociais, foi testada por meio de um estudo de caso da ind\u00fastria canavieira no Brasil.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-fe100f1e35468c5225455b6c6d4128d0.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-fe100f1e35468c5225455b6c6d4128d0.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-fe100f1e35468c5225455b6c6d4128d0 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-fe100f1e35468c5225455b6c6d4128d0 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-fe100f1e35468c5225455b6c6d4128d0 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/pubmed.ncbi.nlm.nih.gov\/34641740\/\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/10\/CRITICAL-REVIEWS-BIOTECH-500x500.png\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/10\/CRITICAL-REVIEWS-BIOTECH-500x500.png 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/10\/CRITICAL-REVIEWS-BIOTECH.png 676w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/critical-reviews-biotech\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/pubmed.ncbi.nlm.nih.gov\/34641740\/\"><span style=\"font-size: 12pt;\"><strong>Paradigm shift in xylose isomerase usage: a novel scenario with distinct applications<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>OUT-2021<\/strong> Xilose isomerases s\u00e3o enzimas que induzem altera\u00e7\u00f5es qu\u00edmicas em a\u00e7\u00facares como a xilose sem afetar a f\u00f3rmula molecular original. Este artigo faz uma an\u00e1lise abrangente sobre os aspectos biol\u00f3gicos, bioqu\u00edmicos, estruturais e termodin\u00e2micos das xilose isomerases conhecidas. Este trabalho tamb\u00e9m discute o uso destas enzimas em sinergia com o desenvolvimento de estrat\u00e9gias de engenharia de bioprocessos e de biologia sint\u00e9tica, ampliando o portf\u00f3lio de biorrenov\u00e1veis poss\u00edveis de serem obtidos a partir da xilose.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-4831ecf5967baa196de7f94b85b652ff.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-4831ecf5967baa196de7f94b85b652ff.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-4831ecf5967baa196de7f94b85b652ff .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-4831ecf5967baa196de7f94b85b652ff .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-4831ecf5967baa196de7f94b85b652ff alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S0960148121014804\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/10\/Renewable-Energy-160-nov-2020-QUADRADO-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/10\/Renewable-Energy-160-nov-2020-QUADRADO-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/10\/Renewable-Energy-160-nov-2020-QUADRADO.jpg 574w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/renewable-energy-160-nov-2020-quadrado\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S0960148121014804\"><span style=\"font-size: 12pt;\"><strong>Simultaneous saccharification isomerization and Co-fermentation \u2013 SSICF: A new process concept for second-generation ethanol biorefineries combining immobilized recombinant enzymes and non-GMO <em>Saccharomyces<\/em><\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>OUT-2021<\/strong> Estrat\u00e9gias integradas de bioprocessos podem facilitar a produ\u00e7\u00e3o de etanol a partir dos a\u00e7\u00facares glicose e xilose, presentes em material lignocelul\u00f3sico. Este trabalho prop\u00f5e um novo conceito de sacarifica\u00e7\u00e3o, isomeriza\u00e7\u00e3o e co-fermenta\u00e7\u00e3o simult\u00e2nea (SSCIF) do baga\u00e7o de cana-de-a\u00e7\u00facar. O processo envolve um sistema multi-enzim\u00e1tico imobilizado em nanopart\u00edculas de ferro, al\u00e9m do uso de levedura sem modifica\u00e7\u00f5es gen\u00e9ticas, permitindo o reuso de enzimas recombinantes que s\u00e3o atra\u00eddas por um \u00edm\u00e3. O processo tem patente requerida (INPI &#8211; BR 1020200111221).<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-d68b62f5889b01c8f29eae39d7cd7521.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-d68b62f5889b01c8f29eae39d7cd7521.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-d68b62f5889b01c8f29eae39d7cd7521 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-d68b62f5889b01c8f29eae39d7cd7521 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-d68b62f5889b01c8f29eae39d7cd7521 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/doi.org\/10.1016\/j.resconrec.2021.105878\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/09\/resources-conservation-2021-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/09\/resources-conservation-2021-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/09\/resources-conservation-2021.jpg 574w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/resources-conservation-2021\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/doi.org\/10.1016\/j.resconrec.2021.105878\"><span style=\"font-size: 12pt;\"><strong>Unraveling the potential of sugarcane electricity for climate change mitigation in Brazil<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>SET-2021<\/strong> O uso integral da biomassa \u00e9 essencial na busca pelo desenvolvimento sustent\u00e1vel. Neste estudo foram mapeados os potenciais de recolhimento da palha de cana-de-a\u00e7\u00facar no Centro-Sul do Brasil para aproveitamento energ\u00e9tico, ao mesmo tempo em que uma quantidade m\u00ednima foi mantida no solo para sua conserva\u00e7\u00e3o e benef\u00edcio na produtividade dos canaviais. O mapeamento mostrou que, sem aumentar nenhum hectare de cana-de-a\u00e7\u00facar, 62% da palha pode ser estrategicamente recolhida, o que potencialmente poderia gerar mais de 100 TWh de eletricidade, o suficiente para suprir mais de 80% da demanda residencial no pa\u00eds. Al\u00e9m disso, essa eletricidade mitigaria anualmente cerca de 13% das emiss\u00f5es de gases de efeito estufa do setor energ\u00e9tico brasileiro.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-5dc98d3d4a8ccb9aa52a7e9ba9f9ebba.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-5dc98d3d4a8ccb9aa52a7e9ba9f9ebba.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-5dc98d3d4a8ccb9aa52a7e9ba9f9ebba .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-5dc98d3d4a8ccb9aa52a7e9ba9f9ebba .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-5dc98d3d4a8ccb9aa52a7e9ba9f9ebba alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.pnas.org\/content\/118\/27\/e2026152118\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20359%20359&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/08\/PNAS-2021-1.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/08\/PNAS-2021-1.jpg 359w\" loading=\"eager\" style=\"--ratio: 359 \/ 359\" sizes=\"(max-width: 359px) 100vw, 359px\" width=\"359\" height=\"359\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/pnas-2021\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/www.pnas.org\/content\/118\/27\/e2026152118\"><span style=\"font-size: 12pt;\"><strong>Loss of function of a DMR6 ortholog in tomato confers broad-spectrum disease resistance<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>AGO-2021<\/strong> No mundo todo, as doen\u00e7as das plantas s\u00e3o as principais causas de perda de rendimento no setor agr\u00edcola. Nesse trabalho, liderado por colaboradores da Universidade da Calif\u00f3rnia, a inativa\u00e7\u00e3o de um gene de susceptibilidade do tomateiro foi explorada como abordagem para se aumentar a sua resist\u00eancia contra fitopat\u00f3genos. Al\u00e9m de apresentar uma estrat\u00e9gia promissora para a engenharia de variedades agr\u00edcolas resistentes a v\u00e1rias doen\u00e7as, esse trabalho tamb\u00e9m contribuiu para a elucida\u00e7\u00e3o da fun\u00e7\u00e3o do gene de susceptibilidade na homeostase do \u00e1cido salic\u00edlico, um modulador central da imunidade em plantas.<\/p>\n<div id=\"gtx-trans\" style=\"position: absolute; left: 464px; top: 51.6px;\">\n<div class=\"gtx-trans-icon\"><\/div>\n<\/div>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-9580db09cafd61e143f3f111ba296654.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-9580db09cafd61e143f3f111ba296654.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-9580db09cafd61e143f3f111ba296654 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-9580db09cafd61e143f3f111ba296654 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-9580db09cafd61e143f3f111ba296654 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/doi.org\/10.1016\/j.still.2021.105122\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20378%20378&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/05\/soil-tillage-2.png\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/05\/soil-tillage-2.png 378w\" loading=\"eager\" style=\"--ratio: 378 \/ 378\" sizes=\"(max-width: 378px) 100vw, 378px\" width=\"378\" height=\"378\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/soil-tillage-2-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/doi.org\/10.1016\/j.still.2021.105122\"><span style=\"font-size: 12pt;\"><strong>Machinery traffic in sugarcane straw removal operation: Stress transmitted and soil compaction<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>AGO-2021<\/strong> O potencial produtivo de biomassas no Brasil, como a de cana-de-a\u00e7\u00facar, \u00e9 impactado pelo intenso tr\u00e1fego de m\u00e1quinas durante as opera\u00e7\u00f5es de colheita. Este estudo mensurou os impactos nos indicadores f\u00edsicos do solo, estimando o stress transmitido por um conjunto de opera\u00e7\u00f5es mecanizadas associadas \u00e0 remo\u00e7\u00e3o da palha de cana-de-a\u00e7\u00facar. O enfardamento da palha, juntamente com as opera\u00e7\u00f5es de aleiramento e transporte, resultou em maiores n\u00edveis de carga no solo, intensificando \u00e0 degrada\u00e7\u00e3o da qualidade f\u00edsica do solo que pode comprometer a sustentabilidade da produ\u00e7\u00e3o de biomassa.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-cb66badf7648cb3cd97b5ccd233fac67.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-cb66badf7648cb3cd97b5ccd233fac67.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-cb66badf7648cb3cd97b5ccd233fac67 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-cb66badf7648cb3cd97b5ccd233fac67 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-cb66badf7648cb3cd97b5ccd233fac67 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/doi.org\/10.1111\/1751-7915.13887\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/08\/microbial-biotechnology-2021-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/08\/microbial-biotechnology-2021-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/08\/microbial-biotechnology-2021.jpg 759w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/microbial-biotechnology-2021-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/doi.org\/10.1111\/1751-7915.13887\"><span style=\"font-size: 12pt;\"><strong>Exploring metal ion metabolisms to improve xylose fermentation in <em>Saccharomyces cerevisiae<\/em><\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>AGO-2021<\/strong> Procedimentos de biologia sint\u00e9tica e engenharia metab\u00f3lica permitem o desenvolvimento racional de microrganismos capazes de converter mat\u00e9ria-prima renov\u00e1vel para produ\u00e7\u00e3o de bioqu\u00edmicos e biocombust\u00edveis. Este estudo explora a modifica\u00e7\u00e3o racional de metabolismos envolvidos na homeostase de metais na levedura <em>S. cerevisiae<\/em>, resultando no aumento em 10x nas taxas de consumo de xilose, componente da biomassa. Dois genes foram destacados como novos alvos para procedimentos racionais de modifica\u00e7\u00e3o. Nesse estudo, destaca-se um detalhado perfil temporal de express\u00e3o g\u00eanica, demonstrando aspectos singulares da fermenta\u00e7\u00e3o de xilose.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-1dfed9e9e2eb15684f5df3bcfa6471f9.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-1dfed9e9e2eb15684f5df3bcfa6471f9.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-1dfed9e9e2eb15684f5df3bcfa6471f9 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-1dfed9e9e2eb15684f5df3bcfa6471f9 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-1dfed9e9e2eb15684f5df3bcfa6471f9 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.nature.com\/articles\/s41467-021-24277-4\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20300%20300&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/07\/Nature-Communications-2.png\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/07\/Nature-Communications-2.png 300w\" loading=\"eager\" style=\"--ratio: 300 \/ 300\" sizes=\"(max-width: 300px) 100vw, 300px\" width=\"300\" height=\"300\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/research-highlights\/nature-communications-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/www.nature.com\/articles\/s41467-021-24277-4\"><span style=\"font-size: 12pt;\"><strong>Xyloglucan processing machinery in Xanthomonas pathogens and its role in the transcriptional activation of virulence factors<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>JUL-2021<\/strong> Dentre os polissacar\u00eddeos da hemicelulose, a xiloglicana \u00e9 uma fra\u00e7\u00e3o significativa na maioria das plantas terrestres, com grande potencial biotecnol\u00f3gico. As bact\u00e9rias <em>Xanthomonas<\/em> possuem dezenas de enzimas que degradam diferentes polissacar\u00eddeos, e este trabalho descreve a descoberta de uma fam\u00edlia de enzimas, uma carboidrato esterase (CE20), que \u00e9 um dos elos da maquin\u00e1ria de despolimeriza\u00e7\u00e3o e capta\u00e7\u00e3o da xiloglicana. Normalmente os a\u00e7ucares s\u00e3o fontes de carbono para os micro-organismos, por\u00e9m neste caso a bact\u00e9ria foi al\u00e9m, utilizando os a\u00e7ucares da despolimeriza\u00e7\u00e3o da xilogicana como indutores de express\u00e3o de prote\u00ednas que auxiliam o micro-organismo a romper a parede celular e modular os mecanismos de defesa natural da planta.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-67537e8d0d5bf43d1e0e92296e3f576d.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-67537e8d0d5bf43d1e0e92296e3f576d.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-67537e8d0d5bf43d1e0e92296e3f576d .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-67537e8d0d5bf43d1e0e92296e3f576d .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-67537e8d0d5bf43d1e0e92296e3f576d alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S1364032121007061\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/06\/Elsevier_Cover_Jun_2021-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/06\/Elsevier_Cover_Jun_2021-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/06\/Elsevier_Cover_Jun_2021.jpg 574w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/elsevier_cover_jun_2021-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S1364032121007061\"><span style=\"font-size: 12pt;\"><strong>Implications of regional N2O\u2013N emission factors on sugarcane ethanol emissions and granted decarbonization certificates<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>JUL-2021<\/strong> As emiss\u00f5es de \u00f3xido nitroso (N<sub>2<\/sub>O) dos fertilizantes nitrogenados s\u00e3o as principais fontes de gases do efeito estufa (GEE) emitidas pelo etanol da cana-de-a\u00e7\u00facar. Este estudo derivou fatores de emiss\u00e3o (FEs) regionais de N<sub>2<\/sub>O oriundo da aplica\u00e7\u00e3o de N fertilizantes e avaliou como o uso destes FEs afetam as emiss\u00f5es do etanol e a obten\u00e7\u00e3o de certificados de descarboniza\u00e7\u00e3o (CBIOs). O uso de FEs regional reduziu em 19% as emiss\u00f5es de GEE do etanol de cana-de-a\u00e7\u00facar em compara\u00e7\u00e3o com o uso do valor \u201cdefault\u201d proposto pelo IPCC. Dados regionais fornecem indicadores mais realistas para contabilizar as emiss\u00f5es do etanol de cana-de-a\u00e7\u00facar e geram benef\u00edcios econ\u00f4micos com os CBIOs adicionais obtidos pelos produtores de biocombust\u00edveis.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-983c5660ff6ab653f9fb05f48233020d.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-983c5660ff6ab653f9fb05f48233020d.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-983c5660ff6ab653f9fb05f48233020d .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-983c5660ff6ab653f9fb05f48233020d .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-983c5660ff6ab653f9fb05f48233020d alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S0360544221013049?via%3Dihub\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/11\/Energy-quadrada-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/11\/Energy-quadrada-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/11\/Energy-quadrada.jpg 576w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/energy-quadrada-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"http:\/\/dx.doi.org\/10.1016\/j.energy.2021.121056\"><span style=\"font-size: 12pt;\"><strong>Sustainability analysis of bioethanol production in Mexico by a retrofitted sugarcane industry based on the Brazilian expertise<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>JUL-2021<\/strong> O M\u00e9xico iniciou em 2012 uma transi\u00e7\u00e3o para uso de energias renov\u00e1veis com a estrat\u00e9gia de utilizar mistura de 10% de etanol na gasolina. Assim, \u00e9 necess\u00e1rio entender como ser\u00e1 a produ\u00e7\u00e3o de etanol no pa\u00eds, que atualmente utiliza cana apenas para produ\u00e7\u00e3o de a\u00e7\u00facar. Este artigo mostra como as usinas a\u00e7ucareiras mexicanas podem ser adaptadas para produ\u00e7\u00e3o de etanol. Realiza paralelos entre a trajet\u00f3ria da implanta\u00e7\u00e3o da produ\u00e7\u00e3o de etanol no Brasil e como essa experi\u00eancia pode ser aproveitada pelo M\u00e9xico para promover a produ\u00e7\u00e3o sustent\u00e1vel de etanol.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-136937c3a0adb14917e5bac060a56d2d.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-136937c3a0adb14917e5bac060a56d2d.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-136937c3a0adb14917e5bac060a56d2d .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-136937c3a0adb14917e5bac060a56d2d .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-136937c3a0adb14917e5bac060a56d2d alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.mdpi.com\/2076-0817\/10\/6\/682\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/06\/PATHOGENS_cover-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/06\/PATHOGENS_cover-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/06\/PATHOGENS_cover.jpg 869w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/pathogens_cover\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/www.mdpi.com\/2076-0817\/10\/6\/682\"><span style=\"font-size: 12pt;\"><strong>C4 Bacterial Volatiles Improve Plant Health<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>JUN-2021<\/strong> A busca por uma agricultura sustent\u00e1vel tamb\u00e9m envolve o estudo de microrganismos com potencial para melhorar o crescimento e a sa\u00fade das plantas. Esta revis\u00e3o trata de pequenos metab\u00f3litos produzidos por bact\u00e9rias, os compostos bacterianos vol\u00e1teis (CBVs), que s\u00e3o capazes de ativar o sistema imune vegetal, promover o crescimento das plantas e de atuar como agentes de controle biol\u00f3gico. A revis\u00e3o tamb\u00e9m aborda a atua\u00e7\u00e3o positiva de CBVs-conjugados nas plantas e o potencial de alguns CBVs como substrato para a produ\u00e7\u00e3o de bioprodutos<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-75fbe0ebfb0668e0535f651a19e6f270.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-75fbe0ebfb0668e0535f651a19e6f270.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-75fbe0ebfb0668e0535f651a19e6f270 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-75fbe0ebfb0668e0535f651a19e6f270 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-75fbe0ebfb0668e0535f651a19e6f270 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S1364032121005554\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/06\/Elsevier_Cover_Jun_2021-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/06\/Elsevier_Cover_Jun_2021-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/06\/Elsevier_Cover_Jun_2021.jpg 574w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/elsevier_cover_jun_2021-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S1364032121005554\"><span style=\"font-size: 12pt;\"><strong>Inorganics in sugarcane bagasse and straw and their impacts for bioenergy and biorefining: A review<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>JUN-2021<\/strong> A valoriza\u00e7\u00e3o do baga\u00e7o e da palha da cana-de-a\u00e7\u00facar enfrenta dificuldades relacionadas \u00e0 qualidade dessas biomassas, principalmente em rela\u00e7\u00e3o ao seu conte\u00fado de inorg\u00e2nicos. Este artigo faz uma revis\u00e3o sobre os tipos de inorg\u00e2nicos e suas variabilidades, e os impactos dos inorg\u00e2nicos em diversos processos e produtos das biorrefinarias. Na vis\u00e3o do artigo, a compreens\u00e3o do papel dos inorg\u00e2nicos \u00e9 elemento chave para o desenho de biorrefinarias de gram\u00edneas como a cana-de-a\u00e7\u00facar.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-4e6f17a38f740857e379fe8d1fe7b703.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-4e6f17a38f740857e379fe8d1fe7b703.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-4e6f17a38f740857e379fe8d1fe7b703 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-4e6f17a38f740857e379fe8d1fe7b703 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-4e6f17a38f740857e379fe8d1fe7b703 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/doi.org\/10.1016\/j.still.2021.104999\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20378%20378&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/05\/soil-tillage-2.png\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/05\/soil-tillage-2.png 378w\" loading=\"eager\" style=\"--ratio: 378 \/ 378\" sizes=\"(max-width: 378px) 100vw, 378px\" width=\"378\" height=\"378\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/soil-tillage-2-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/doi.org\/10.1016\/j.still.2021.104999\"><span style=\"font-size: 12pt;\"><strong>How do nitrogen fertilization and cover crop influence soil C-N stocks and subsequent yields of sugarcane?<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>ABR-2021<\/strong> Leguminosas fixam nitrog\u00eanio (N) da atmosfera, sendo excelentes op\u00e7\u00f5es para fornecer N para o sistema agr\u00edcola e indiretamente mitigar emiss\u00f5es de gases do efeito estufa pela redu\u00e7\u00e3o da demanda por fertilizantes sint\u00e9ticos. O cultivo de cana-de-a\u00e7\u00facar necessita de N, mas n\u00e3o h\u00e1 relatos dos impactos de seu cultivo nos estoques de C-N. Este trabalho comprovou que a aduba\u00e7\u00e3o nitrogenada e rota\u00e7\u00e3o de culturas com leguminosa aumentou em 12% a produtividade da cana-de-a\u00e7\u00facar, aumentou os estoques de N e a biomassa microbiana do solo, mas n\u00e3o afetou os estoques de carbono (C) do solo.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-2871b491e881b56dd64896793fdda6ac.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-2871b491e881b56dd64896793fdda6ac.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-2871b491e881b56dd64896793fdda6ac .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-2871b491e881b56dd64896793fdda6ac .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-2871b491e881b56dd64896793fdda6ac alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/doi.org\/10.1111\/gcbb.12832\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/05\/gcbb.v13.6.cover_-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/05\/gcbb.v13.6.cover_-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/05\/gcbb.v13.6.cover_.jpg 758w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/gcbb-v13-6-cover-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/doi.org\/10.1111\/gcbb.12832\"><span style=\"font-size: 12pt;\"><strong>Multilocation changes in soil carbon stocks from sugarcane straw removal for bioenergy production in Brazil<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>ABR-2021<\/strong> O solo \u00e9 o principal reservat\u00f3rio de carbono (C) do ecossistema terrestre e dependendo do uso da terra pode atuar como fonte ou dreno de CO2 atmosf\u00e9rico. A palha da cana-de-a\u00e7\u00facar \u00e9 uma importante entrada de C para os solos e tem um alto potencial para a produ\u00e7\u00e3o de bioenergia. Este estudo avaliou os impactos da remo\u00e7\u00e3o de palha nos estoques de C do solo sob diferentes condi\u00e7\u00f5es de solo e clima no Brasil. Confirmou-se que a remo\u00e7\u00e3o excessiva de palha diminui os estoques de C e estes impactos s\u00e3o mais negativos nos solos arenosos. Conclui-se que estes impactos adversos no solo devem ser inclu\u00eddos em an\u00e1lises de ciclo de vida da bioenergia produzida \u00e0 base de palha.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-ea96baa76c9bdca2f753cef21380a261.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-ea96baa76c9bdca2f753cef21380a261.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-ea96baa76c9bdca2f753cef21380a261 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-ea96baa76c9bdca2f753cef21380a261 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-ea96baa76c9bdca2f753cef21380a261 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S0006349521002915#!\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/04\/Biophysycal-Journal-abril-2021-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/04\/Biophysycal-Journal-abril-2021-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/04\/Biophysycal-Journal-abril-2021.jpg 591w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/biophysycal-journal-abril-2021\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S0006349521002915#!\"><span style=\"font-size: 12pt;\"><strong>Electrostatic Interactions Optimization Improves Catalytic Rates and Thermotolerance on Xylanases<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>ABR-2021<\/strong> Projetar enzimas com maquinarias catal\u00edticas mais sofisticadas que as encontradas na natureza agiliza a gera\u00e7\u00e3o de novas enzimas e seu uso para diversas aplica\u00e7\u00f5es biotecnol\u00f3gicas. Este trabalho descreve um novo e eficiente m\u00e9todo guiado por computa\u00e7\u00e3o capaz de &#8216;customizar&#8217; racionalmente enzimas com taxas catal\u00edticas e termotoler\u00e2ncia aprimoradas. Esta nova tecnologia tem potencial impacto no desenvolvimento de produtos de relev\u00e2ncia industrial.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-ced269665547764dc544f52e46cf3418.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-ced269665547764dc544f52e46cf3418.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-ced269665547764dc544f52e46cf3418 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-ced269665547764dc544f52e46cf3418 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-ced269665547764dc544f52e46cf3418 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/scripts.iucr.org\/cgi-bin\/paper?S2059798321001583\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20167%20167&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/04\/Acta-Section-D.png\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/04\/Acta-Section-D.png 167w\" loading=\"eager\" style=\"--ratio: 167 \/ 167\" sizes=\"(max-width: 167px) 100vw, 167px\" width=\"167\" height=\"167\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/acta-section-d\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/scripts.iucr.org\/cgi-bin\/paper?S2059798321001583\"><span style=\"font-size: 12pt;\"><strong>Structure of the class XI myosin globular tail reveals evolutionary hallmarks for cargo recognition in plants<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>ABR-2021<\/strong> O entendimento dos mecanismos moleculares para o transporte de componentes celulares \u00e9 importante na produ\u00e7\u00e3o de biorrenov\u00e1veis, pois est\u00e3o envolvidos desde a secre\u00e7\u00e3o de enzimas f\u00fangicas ao crescimento vegetal. Este trabalho desvenda a estrutura, em alta resolu\u00e7\u00e3o, de um importante dom\u00ednio proteico que determina que tipo de componentes celulares ser\u00e3o transportados pelo motor molecular miosina. O trabalho tamb\u00e9m utilizou um novo m\u00e9todo de faseamento experimental baseado em bibliotecas de fragmentos curtos, que ampliou o espectro de abordagens experimentais para elucida\u00e7\u00e3o de estruturas in\u00e9ditas de prote\u00ednas.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-fbd32426373bc324b218640f355d81bb.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-fbd32426373bc324b218640f355d81bb.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-fbd32426373bc324b218640f355d81bb .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-fbd32426373bc324b218640f355d81bb .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-fbd32426373bc324b218640f355d81bb alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/doi.org\/10.1016\/j.jclepro.2020.125318\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/08\/Journal-Cleaner-prod-novo-1-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/08\/Journal-Cleaner-prod-novo-1-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/08\/Journal-Cleaner-prod-novo-1.jpg 576w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/journal-cleaner-prod-novo-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/doi.org\/10.1016\/j.jclepro.2020.125318\"><span style=\"font-size: 12pt;\"><strong>Identifying suitable areas for expanding sugarcane ethanol production in Brazil under conservation of environmentally relevant habitats<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>ABR-2021<\/strong> N\u00e3o basta ser renov\u00e1vel, \u00e9 necess\u00e1rio ser sustent\u00e1vel. Este trabalho mapeou as poss\u00edveis \u00e1reas com solu\u00e7\u00f5es ganha-ganha do ponto de vista dos servi\u00e7os ecossist\u00eamicos da produ\u00e7\u00e3o de biorrenov\u00e1vies no Brasil. Foram identificadas \u00e1reas para expans\u00e3o considerando a preserva\u00e7\u00e3o da vegeta\u00e7\u00e3o nativa, da biodiversidade e da produ\u00e7\u00e3o de alimentos. O estudo mostrou que temos cerca de 20 milh\u00f5es de hectares para produzir cana-de-a\u00e7\u00facar ou outras biomassas, intensificando as vantagens ambientais advindas n\u00e3o s\u00f3 da substitui\u00e7\u00e3o de f\u00f3sseis, mas tamb\u00e9m da utiliza\u00e7\u00e3o racional dos recursos naturais.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-59dfc78151afb540dc42fa25943042a0.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-59dfc78151afb540dc42fa25943042a0.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-59dfc78151afb540dc42fa25943042a0 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-59dfc78151afb540dc42fa25943042a0 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-59dfc78151afb540dc42fa25943042a0 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/onlinelibrary.wiley.com\/doi\/abs\/10.1111\/ejss.13107\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/04\/european-journal-soil-science-marco-2021-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/04\/european-journal-soil-science-marco-2021-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/04\/european-journal-soil-science-marco-2021.jpg 595w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/european-journal-soil-science-marco-2021\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/onlinelibrary.wiley.com\/doi\/abs\/10.1111\/ejss.13107\"><span style=\"font-size: 12pt;\"><strong>Untrafficked furrowed seedbed sustains soil physical quality in sugarcane mechanized fields<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>MAR-2021<\/strong> A abundante produ\u00e7\u00e3o de biomassa no Brasil sofre com o intenso tr\u00e1fego de m\u00e1quinas agr\u00edcolas que compactam e degradam a estrutura do solo, o que reduz seu potencial produtivo. Este trabalho observou, em cinco anos de estudo, que o uso de canteiros recupera a qualidade f\u00edsica e estrutural do solo sem a necessidade de pr\u00e1ticas mec\u00e2nicas de preparo de solo. O uso de sistema de canteiros melhora o crescimento de ra\u00edzes e a atividade biol\u00f3gica do solo e torna a produ\u00e7\u00e3o de cana-de-a\u00e7\u00facar mais sustent\u00e1vel, principalmente devido \u00e0 melhor qualidade f\u00edsica do solo.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-efee08b66e4291171562efd772c84d25.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-efee08b66e4291171562efd772c84d25.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-efee08b66e4291171562efd772c84d25 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-efee08b66e4291171562efd772c84d25 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-efee08b66e4291171562efd772c84d25 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/doi.org\/10.1038\/s41586-020-03167-7\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20438%20438&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/02\/Nature-5902.png\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/02\/Nature-5902.png 438w\" loading=\"eager\" style=\"--ratio: 438 \/ 438\" sizes=\"(max-width: 438px) 100vw, 438px\" width=\"438\" height=\"438\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/nature-5902-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/doi.org\/10.1038\/s41586-020-03167-7\"><span style=\"font-size: 12pt;\"><strong>Developing fibrillated cellulose as a sustainable technological material<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>FEV-2021<\/strong> A celulose que comp\u00f5e a biomassa vegetal pode ser isolada na forma de fibrilas de di\u00e2metro nanom\u00e9trico, gerando blocos de constru\u00e7\u00e3o para desenvolvimento de nova fam\u00edlia de materiais tecnol\u00f3gicos renov\u00e1veis. Este trabalho aponta caminhos para o futuro das pesquisas e aborda quest\u00f5es-chave para o desenvolvimento da celulose fibrilada como plataforma de novos biomateriais sustent\u00e1veis.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-20a13cd3f7b24890c02b87fee6a65355.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-20a13cd3f7b24890c02b87fee6a65355.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-20a13cd3f7b24890c02b87fee6a65355 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-20a13cd3f7b24890c02b87fee6a65355 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-20a13cd3f7b24890c02b87fee6a65355 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/doi.org\/10.1038\/s41467-020-20620-3\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20300%20300&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/01\/Nature-comm_2.png\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2021\/01\/Nature-comm_2.png 300w\" loading=\"eager\" style=\"--ratio: 300 \/ 300\" sizes=\"(max-width: 300px) 100vw, 300px\" width=\"300\" height=\"300\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/nature-comm_2-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/doi.org\/10.1038\/s41467-020-20620-3\"><span style=\"font-size: 12pt;\"><strong>Two distinct catalytic pathways for GH43 xylanolytic enzymes unveiled by X-ray and QM\/MM simulations<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>JAN-2021<\/strong> Glicosidases s\u00e3o enzimas envolvidas na decomposi\u00e7\u00e3o da lignocelulose e s\u00e3o centrais para a valoriza\u00e7\u00e3o de res\u00edduos agroindustriais e biotecnologia industrial. Para que essas enzimas convertam um substrato em produto, uma s\u00e9rie de altera\u00e7\u00f5es conformacionais ocorrem (itiner\u00e1rio catal\u00edtico). Esse trabalho mostra uma glicosidase que atua atrav\u00e9s de dois itiner\u00e1rios catal\u00edticos distintos, quebrando o paradigma de que somente uma rota para a convers\u00e3o do substrato poderia ser adotada. A descoberta abre novos horizontes sobre o funcionamento molecular dessas enzimas e traz impactos imediatos sobre o desenvolvimento de novos biocatalisadores e inibidores.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594985352389{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243;][vc_column_text css=&#8221;.vc_custom_1598896358079{margin-bottom: 3px !important;border-bottom-width: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-57873dbf614599f43e449ac9b8904d56.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-57873dbf614599f43e449ac9b8904d56.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-57873dbf614599f43e449ac9b8904d56 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-57873dbf614599f43e449ac9b8904d56 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-57873dbf614599f43e449ac9b8904d56 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/doi.org\/10.1016\/j.biortech.2020.123918\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/11\/Biores-Tech-quadrada-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/11\/Biores-Tech-quadrada-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/11\/Biores-Tech-quadrada.jpg 576w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/biores-tech-quadrada-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/doi.org\/10.1016\/j.biortech.2020.123918\"><span style=\"font-size: 14pt;\"><strong><span style=\"font-size: 12pt;\">Screening of potential endoglucanases, hydrolysis conditions and different sugarcane straws pretreatments for cello-oligosaccharides production<\/span><\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>NOV-2020<\/strong> A biologia molecular vinculada ao desenvolvimento de processos s\u00e3o importantes ferramentas para o uso sustent\u00e1vel de recursos naturais, como a palha da cana-de-a\u00e7\u00facar. Este trabalho estudou a combina\u00e7\u00e3o de cinco enzimas endoglucanases para a produ\u00e7\u00e3o de cello-oligossacar\u00eddeos (COS), potencialmente \u00fateis nos setores de alimenta\u00e7\u00e3o humana e animal. Este \u00e9 o primeiro estudo que combina avalia\u00e7\u00e3o de diferentes enzimas, condi\u00e7\u00f5es e pr\u00e9-tratamentos da palha da cana-de-a\u00e7\u00facar para otimizar a produ\u00e7\u00e3o de COS em uma \u00fanica etapa e sem forma\u00e7\u00e3o de glicose.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-b1ad8d6a3d5b2b9964e4c71147cd4218.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-b1ad8d6a3d5b2b9964e4c71147cd4218.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-b1ad8d6a3d5b2b9964e4c71147cd4218 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-b1ad8d6a3d5b2b9964e4c71147cd4218 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-b1ad8d6a3d5b2b9964e4c71147cd4218 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/doi.org\/10.1016\/j.biortech.2020.123637\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/11\/Biores-Tech-quadrada-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/11\/Biores-Tech-quadrada-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/11\/Biores-Tech-quadrada.jpg 576w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/biores-tech-quadrada-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/doi.org\/10.1016\/j.biortech.2020.123637\"><span style=\"font-size: 12pt;\"><strong>An integrated approach to obtain xylo-oligosaccharides from sugarcane straw: From lab to pilot scale<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>OUT-2020<\/strong> A utiliza\u00e7\u00e3o de res\u00edduos agr\u00edcolas para obter produtos com alto valor agregado \u00e9 um importante aspecto do desenvolvimento sustent\u00e1vel. Este trabalho mostra novas perspectivas para valorizar a palha da cana-de-a\u00e7\u00facar na obten\u00e7\u00e3o de bioprodutos, n\u00e3o s\u00f3 para produ\u00e7\u00e3o de calor e eletricidade. Mostra o potencial da palha da cana-de-a\u00e7\u00facar para produzir xilo-oligossacar\u00eddeos (XOS), uma subst\u00e2ncia prebi\u00f3tica, e o uso das enzimas xilanases para hidrolisar XOS. O estudo abrangeu escala laboratorial e piloto (Planta Piloto do LNBR) de produ\u00e7\u00e3o.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594985352389{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243;][vc_column_text css=&#8221;.vc_custom_1598896358079{margin-bottom: 3px !important;border-bottom-width: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-71b618ee951e422bf6d8ddfc7281a93d.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-71b618ee951e422bf6d8ddfc7281a93d.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-71b618ee951e422bf6d8ddfc7281a93d .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-71b618ee951e422bf6d8ddfc7281a93d .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-71b618ee951e422bf6d8ddfc7281a93d alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S0960148120311034\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/09\/Renewable-Energy-160-nov-2020-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/09\/Renewable-Energy-160-nov-2020-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/09\/Renewable-Energy-160-nov-2020-576x576.jpg 576w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/renewable-energy-160-nov-2020-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S0960148120311034\"><span style=\"font-size: 14pt;\"><strong><span style=\"font-size: 12pt;\">Impact of the Melle-Boinot process on the enhancement of second-generation ethanol production by <em>Spathaspora passalidarum<\/em><\/span><\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>AGO-2020<\/strong> A biodiversidade microbiana \u00e9 uma fonte de solu\u00e7\u00f5es para biotecnologia. A levedura n\u00e3o-convencional <em>S. passalidarum<\/em> \u00e9 uma potencial plataforma para aplica\u00e7\u00f5es industriais na obten\u00e7\u00e3o de etanol celul\u00f3sico e bioqu\u00edmicos devido sua capacidade natural de fermentar xilose. Este estudo relata pela 1\u00aa vez o uso do processo de fermenta\u00e7\u00e3o Melle-Boinot nessa levedura, obtendo altos rendimentos de etanol, demonstrando ser uma estrat\u00e9gia eficaz na produ\u00e7\u00e3o de biocombust\u00edveis.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-4c4cf03a15d70f295f371bb31d841e4f.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-4c4cf03a15d70f295f371bb31d841e4f.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-4c4cf03a15d70f295f371bb31d841e4f .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-4c4cf03a15d70f295f371bb31d841e4f .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-4c4cf03a15d70f295f371bb31d841e4f alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/onlinelibrary.wiley.com\/doi\/abs\/10.1002\/bbb.2136?af=R\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/08\/BIOFPR-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/08\/BIOFPR-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/08\/BIOFPR-594x594.jpg 594w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/biofpr-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/onlinelibrary.wiley.com\/doi\/abs\/10.1002\/bbb.2136?af=R\"><span style=\"font-size: 12pt;\"><strong>A rationally identi\ufb01ed marine GH1 Beta-glucosidase has distinguishing functional features for simultaneous sacchari\ufb01cation and fermentation<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>AGO-2020<\/strong> Novas solu\u00e7\u00f5es para a produ\u00e7\u00e3o dos biocombust\u00edveis a partir de res\u00edduos de cana podem vir de ambientes inesperados, como o marinho. Este trabalho demostrou o potencial de uso de uma enzima \u03b2-glicosidase (GH1) marinha, identificada racionalmente, na produ\u00e7\u00e3o de etanol celul\u00f3sico onde h\u00e1 sacarifica\u00e7\u00e3o e fermenta\u00e7\u00e3o simult\u00e2neas. Com atividade em celo-oligassacar\u00eddeos e efici\u00eancia em temperaturas mais brandas essa enzima poder\u00e1 ser utilizada em processos biotecnol\u00f3gicos industriais que envolvam desconstru\u00e7\u00e3o de material lignocelul\u00f3sico.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594985352389{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243;][vc_column_text css=&#8221;.vc_custom_1598896358079{margin-bottom: 3px !important;border-bottom-width: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-2f5239d8af38008dc11d76aec3d58486.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-2f5239d8af38008dc11d76aec3d58486.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-2f5239d8af38008dc11d76aec3d58486 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-2f5239d8af38008dc11d76aec3d58486 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-2f5239d8af38008dc11d76aec3d58486 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/biotechnologyforbiofuels.biomedcentral.com\/articles\/10.1186\/s13068-020-01782-0\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20306%20306&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/08\/Biotech-for-biofuels-novo-1.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/08\/Biotech-for-biofuels-novo-1.jpg 306w\" loading=\"eager\" style=\"--ratio: 306 \/ 306\" sizes=\"(max-width: 306px) 100vw, 306px\" width=\"306\" height=\"306\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/biotech-for-biofuels-novo-2-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/biotechnologyforbiofuels.biomedcentral.com\/articles\/10.1186\/s13068-020-01782-0\"><span style=\"font-size: 14pt;\"><strong><span style=\"font-size: 12pt;\">Novel xylose transporter Cs4130 expands the sugar uptake repertoire in recombinant <em>Saccharomyces cerevisiae<\/em> strains at high xylose concentrations<\/span><\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>AGO-2020<\/strong> Um grande desafio na produ\u00e7\u00e3o de etanol celul\u00f3sico e bioqu\u00edmicos renov\u00e1veis \u00e9 a ineficiente assimila\u00e7\u00e3o de xilose por cepas geneticamente modificadas da levedura <em>S. cerevisiae<\/em>, estendendo o tempo de fermenta\u00e7\u00e3o. Este trabalho identificou um novo e eficiente transportador de xilose, aumentando a capacidade de assimila\u00e7\u00e3o desse a\u00e7\u00facar principalmente em altas concentra\u00e7\u00f5es. O trabalho tamb\u00e9m investiga o comportamento din\u00e2mico do transportador, apontando res\u00edduos relacionados a transloca\u00e7\u00e3o de xilose.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_empty_space][vc_row_inner css=&#8221;.vc_custom_1594988184275{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-530352084f3948189f2553f5a07fa868.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-530352084f3948189f2553f5a07fa868.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-530352084f3948189f2553f5a07fa868 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-530352084f3948189f2553f5a07fa868 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-530352084f3948189f2553f5a07fa868 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/doi.org\/10.1038\/s41589-020-0585-y\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20300%20300&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/07\/Nature-CHEM-BIO-1.png\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/07\/Nature-CHEM-BIO-1.png 300w\" loading=\"eager\" style=\"--ratio: 300 \/ 300\" sizes=\"(max-width: 300px) 100vw, 300px\" width=\"300\" height=\"300\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/nature-chem-bio-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: left;\"><span style=\"font-size: 12pt;\"><a href=\"https:\/\/doi.org\/10.1038\/s41589-020-0585-y\"><strong>Enzymes knuckle down to the job<\/strong><\/a><\/span><\/p>\n<p style=\"text-align: justify;\"><strong>JUN-2020<\/strong> Descoberta de novas enzimas para a sa\u00fade, nutri\u00e7\u00e3o, biocombust\u00edveis e outras aplica\u00e7\u00f5es biotecnol\u00f3gicas industriais. Inspirado na biodiversidade molecular dos microorganismos, este trabalho aprofundou o conhecimento sobre novas estrat\u00e9gias enzim\u00e1ticas para o processamento de polissacar\u00eddeos \u03b2-1,3-glucanos, descobrindo um novo mecanismo de reconhecimento de polissacar\u00eddeos e um novo modo de a\u00e7\u00e3o enzim\u00e1tica.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594985352389{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243;][vc_column_text css=&#8221;.vc_custom_1594929743601{margin-bottom: 3px !important;border-bottom-width: 3px !important;padding-bottom: 3px !important;background-color: #81d742 !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>TECNOLOGIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-9051df613f3a1c19da96c8e3e914d1b6.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-9051df613f3a1c19da96c8e3e914d1b6.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-9051df613f3a1c19da96c8e3e914d1b6 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-9051df613f3a1c19da96c8e3e914d1b6 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-9051df613f3a1c19da96c8e3e914d1b6 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/07\/SUCRE-Project-Final-Report.pdf\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/07\/Capa-Relat\u00f3rio-SUCRE-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/07\/Capa-Relat\u00f3rio-SUCRE-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/07\/Capa-Relat\u00f3rio-SUCRE.jpg 900w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/capa-relatorio-sucre\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243;][vc_column_text]<a href=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/07\/SUCRE-Project-Final-Report.pdf\"><span style=\"font-size: 14pt;\"><strong><span style=\"font-size: 12pt;\">SUCRE Final Report<\/span><\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>JUN-2020<\/strong> A descarboniza\u00e7\u00e3o do setor el\u00e9trico pode se beneficiar da palha, um res\u00edduo subutilizado da cana-de-a\u00e7\u00facar. Este relat\u00f3rio fornece uma an\u00e1lise integrada e aprofundada da eletricidade baseada na palha no Brasil, considerando os impactos t\u00e9cnicos, econ\u00f4micos, ambientais e sociais. Corroborando sua relev\u00e2ncia para outros pa\u00edses produtores de cana de a\u00e7\u00facar, o SUCRE foi destaque no relat\u00f3rio <a href=\"https:\/\/www.unsouthsouth.org\/wp-content\/uploads\/2019\/12\/Bioeconomy-Publication_visualization-for-website.pdf\">\u201cSouth-South and Triangular Cooperation on the Bioeconomy\u201c<\/a> apresentado na COP-25.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_empty_space][vc_row_inner css=&#8221;.vc_custom_1594988351132{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988502782{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-921a91b0ba3d5c408d4a0b193204a1d6.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-921a91b0ba3d5c408d4a0b193204a1d6.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-921a91b0ba3d5c408d4a0b193204a1d6 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-921a91b0ba3d5c408d4a0b193204a1d6 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-921a91b0ba3d5c408d4a0b193204a1d6 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.pnas.org\/content\/117\/23\/12576\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20359%20359&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/07\/PNAS-1.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/07\/PNAS-1.jpg 359w\" loading=\"eager\" style=\"--ratio: 359 \/ 359\" sizes=\"(max-width: 359px) 100vw, 359px\" width=\"359\" height=\"359\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/pnas-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988362336{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><span style=\"font-size: 12pt;\"><a href=\"https:\/\/www.pnas.org\/content\/117\/23\/12576\"><strong>Technoeconomic and life-cycle analysis of single-step catalytic conversion of wet ethanol into fungible fuel blendstocks<\/strong><\/a><\/span><\/p>\n<p style=\"text-align: justify;\"><strong>JUN-2020<\/strong> Biocombust\u00edveis sustent\u00e1veis s\u00e3o importantes para a descarboniza\u00e7\u00e3o de setores complexos, tais como avia\u00e7\u00e3o, transporte mar\u00edtimo e transporte rodovi\u00e1rio pesado. O baixo custo do etanol e a grande capacidade de produ\u00e7\u00e3o tornam atraente a convers\u00e3o em um combust\u00edvel hidrocarb\u00f4nico, o que normalmente \u00e9 feito em tr\u00eas etapas. Este trabalho vai al\u00e9m e descreve uma an\u00e1lise econ\u00f4mica e ambiental de um combust\u00edvel de avia\u00e7\u00e3o renov\u00e1vel obtido a partir de um processo catal\u00edtico de etapa \u00fanica utilizando bioetanol como mat\u00e9ria-prima.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594985352389{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-c5068d7a605b729f904e4cada0c03278.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-c5068d7a605b729f904e4cada0c03278.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-c5068d7a605b729f904e4cada0c03278 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-c5068d7a605b729f904e4cada0c03278 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-c5068d7a605b729f904e4cada0c03278 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/pubs.acs.org\/doi\/10.1021\/acscatal.0c01257\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20299%20299&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/07\/accacs.2020.10.issue-12.largecover-1.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/07\/accacs.2020.10.issue-12.largecover-1.jpg 299w\" loading=\"eager\" style=\"--ratio: 299 \/ 299\" sizes=\"(max-width: 299px) 100vw, 299px\" width=\"299\" height=\"299\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/accacs-2020-10-issue-12-largecover-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><span style=\"font-size: 12pt;\"><a href=\"https:\/\/pubs.acs.org\/doi\/10.1021\/acscatal.0c01257\"><strong>Substrate and Product-Assisted Catalysis: Molecular Aspects behind Structural Switches along Organic Hydroperoxide Resistance Protein Catalytic Cycle<\/strong><\/a><\/span><\/p>\n<p style=\"text-align: justify;\"><strong>MAI-2020<\/strong> Simula\u00e7\u00f5es qu\u00e2nticas e cl\u00e1ssicas de prote\u00ednas estruturalmente resolvidas podem promover a compreens\u00e3o da biocat\u00e1lise em sistemas biol\u00f3gicos suscet\u00edveis a danos por oxidantes. Este trabalho fornece insights sobre a resposta de oxida\u00e7\u00e3o das c\u00e9lulas bacterianas, investigando o papel do local ativo e os caminhos catal\u00edticos para decompor os oxidantes em prote\u00ednas Ohr. Isto \u00e9 relevante para a identifica\u00e7\u00e3o de inibidores com potencial terap\u00eautico.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_empty_space][vc_row_inner css=&#8221;.vc_custom_1594988379286{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594985959418{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-15f515e04d37c4fbd2f49d408fbf1c62.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-15f515e04d37c4fbd2f49d408fbf1c62.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-15f515e04d37c4fbd2f49d408fbf1c62 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-15f515e04d37c4fbd2f49d408fbf1c62 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-15f515e04d37c4fbd2f49d408fbf1c62 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/doi.org\/10.1016\/j.bbagen.2020.129549\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/08\/BBA-general-subj-novo-1-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/08\/BBA-general-subj-novo-1-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/08\/BBA-general-subj-novo-1.jpg 576w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/bba-general-subj-novo-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988371656{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1598032203907{margin-bottom: 4px !important;border-bottom-width: 4px !important;padding-bottom: 4px !important;}&#8221;]<\/p>\n<p style=\"text-align: justify;\"><span style=\"font-size: 10pt;\"><strong><span style=\"font-size: 12pt;\"><a href=\"https:\/\/doi.org\/10.1016\/j.bbagen.2020.129549\">Crystal structure of a novel xylose isomerase from <em>Streptomyces sp<\/em>. F-1 revealed the presence of unique features that differ from conventional classes<\/a><\/span><\/strong><\/span><\/p>\n<p style=\"text-align: justify;\"><strong>MAI-2020<\/strong> Os biocombust\u00edveis a partir de res\u00edduos de cana de a\u00e7\u00facar requerem leveduras para metabolizar pentoses de xilose e para operar em condi\u00e7\u00f5es suaves. Este \u00e9 um desafio \u00e0 convers\u00e3o enzim\u00e1tica da xilose em xilulose que pode ser enfrentada por mudan\u00e7as revers\u00edveis de configura\u00e7\u00f5es enzim\u00e1ticas. Este trabalho relata duas novas e \u00fanicas isomerases xilose com substitui\u00e7\u00f5es amino-\u00e1cidas na interface catal\u00edtica e a prefer\u00eancia pela isomeriza\u00e7\u00e3o em condi\u00e7\u00f5es mais suaves. O entendimento molecular das enzimas pode contribuir para a customiza\u00e7\u00e3o dos processos de fermenta\u00e7\u00e3o.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594984335537{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243;][vc_column_text css=&#8221;.vc_custom_1594986085216{margin-bottom: 3px !important;border-bottom-width: 3px !important;padding-bottom: 3px !important;background-color: #81d742 !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>TECNOLOGIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-e809260cc25fcdfd605789415dff277e.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-e809260cc25fcdfd605789415dff277e.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-e809260cc25fcdfd605789415dff277e .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-e809260cc25fcdfd605789415dff277e .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-e809260cc25fcdfd605789415dff277e alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/doi.org\/10.1016\/j.jclepro.2020.120081\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/08\/Journal-Cleaner-prod-novo-1-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/08\/Journal-Cleaner-prod-novo-1-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/08\/Journal-Cleaner-prod-novo-1.jpg 576w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/journal-cleaner-prod-novo-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><span style=\"font-size: 12pt;\"><a href=\"https:\/\/doi.org\/10.1016\/j.jclepro.2020.120081\"><strong>Process simulation of renewable electricity from sugarcane straw: Techno-economic assessment of retrofit scenarios in Brazil<\/strong><\/a><\/span><\/p>\n<p style=\"text-align: justify;\"><strong>MAI-2020 <\/strong>O Brasil pode reduzir ainda mais as emiss\u00f5es de gases de efeito estufa ao aumentar significativamente a eletricidade renov\u00e1vel gerada a partir da biomassa. Isso se deve \u00e0 legisla\u00e7\u00e3o ambiental que proibiu progressivamente a queima antes da colheita da cana e levou a uma alta disponibilidade de palha. Este trabalho integra modelos agr\u00edcolas e industriais para fornecer avalia\u00e7\u00f5es tecno-econ\u00f4micas que podem permitir investimentos de retrofit em biorefinarias existentes. Destaca ainda a forte depend\u00eancia dos pre\u00e7os da eletricidade dos projetos de colheita da palha.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_empty_space][vc_row_inner css=&#8221;.vc_custom_1594988391496{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594985968478{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594986104498{margin-bottom: 3px !important;border-bottom-width: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-f2548cb641d652b98623ad94e9c218eb.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-f2548cb641d652b98623ad94e9c218eb.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-f2548cb641d652b98623ad94e9c218eb .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-f2548cb641d652b98623ad94e9c218eb .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-f2548cb641d652b98623ad94e9c218eb alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/biotechnologyforbiofuels.biomedcentral.com\/articles\/10.1186\/s13068-020-01732-w\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20306%20306&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/08\/Biotech-for-biofuels-novo.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/08\/Biotech-for-biofuels-novo.jpg 306w\" loading=\"eager\" style=\"--ratio: 306 \/ 306\" sizes=\"(max-width: 306px) 100vw, 306px\" width=\"306\" height=\"306\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/biotech-for-biofuels-novo\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988399619{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><span style=\"font-size: 12pt;\"><a href=\"https:\/\/biotechnologyforbiofuels.biomedcentral.com\/articles\/10.1186\/s13068-020-01732-w\"><strong>Rational engineering of the <em>Trichoderma reesei<\/em> RUT-C30 strain into an industrially relevant platform for cellulase production<\/strong><\/a><\/span><\/p>\n<p style=\"text-align: justify;\"><strong>MAI-2020 <\/strong>Os biocombust\u00edveis sustent\u00e1veis s\u00e3o importantes para a descarboniza\u00e7\u00e3o do transporte rodovi\u00e1rio de ve\u00edculos leves. Biologia sint\u00e9tica foi utilizada para desenvolver uma plataforma microbiana para a produ\u00e7\u00e3o de celulase para reduzir o custo da produ\u00e7\u00e3o de etanol celul\u00f3sico. Este trabalho descreve uma tecnologia brasileira validada em condi\u00e7\u00f5es de opera\u00e7\u00e3o industrial, que emprega o projeto racional de uma cepa de dom\u00ednio p\u00fablico para a fabrica\u00e7\u00e3o de enzimas para a produ\u00e7\u00e3o de etanol a partir de res\u00edduos de cana-de-a\u00e7\u00facar.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594985511328{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243;][vc_column_text css=&#8221;.vc_custom_1594986122121{margin-bottom: 3px !important;border-bottom-width: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-036c1ec519c57b8ce00638dd1dd4d17a.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-036c1ec519c57b8ce00638dd1dd4d17a.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-036c1ec519c57b8ce00638dd1dd4d17a .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-036c1ec519c57b8ce00638dd1dd4d17a .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-036c1ec519c57b8ce00638dd1dd4d17a alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.nature.com\/articles\/s41589-020-0554-5\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20300%20300&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/07\/Nature-CHEM-BIO-1.png\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/07\/Nature-CHEM-BIO-1.png 300w\" loading=\"eager\" style=\"--ratio: 300 \/ 300\" sizes=\"(max-width: 300px) 100vw, 300px\" width=\"300\" height=\"300\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/nature-chem-bio-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><span style=\"font-size: 12pt;\"><a href=\"https:\/\/www.nature.com\/articles\/s41589-020-0554-5\"><strong>Structural insights into \u03b2-1,3-glucan cleavage by a glycoside hydrolase family<\/strong><\/a><\/span><\/p>\n<p style=\"text-align: justify;\"><strong>MAI-2020 <\/strong>Descoberta de novas enzimas para a sa\u00fade, nutri\u00e7\u00e3o, biocombust\u00edveis e outras aplica\u00e7\u00f5es biotecnol\u00f3gicas industriais. Inspirado na biodiversidade molecular dos microorganismos, este trabalho aprofundou o conhecimento sobre novas estrat\u00e9gias enzim\u00e1ticas para o processamento de polissacar\u00eddeos \u03b2-1,3-glucanos, descobrindo um novo mecanismo de reconhecimento de polissacar\u00eddeos e um novo modo de a\u00e7\u00e3o enzim\u00e1tica.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_empty_space][vc_row_inner css=&#8221;.vc_custom_1594988391496{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594985968478{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594986104498{margin-bottom: 3px !important;border-bottom-width: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>CI\u00caNCIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-9ca471d85b716df0e0519eac1f940687.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-9ca471d85b716df0e0519eac1f940687.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-9ca471d85b716df0e0519eac1f940687 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-9ca471d85b716df0e0519eac1f940687 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-9ca471d85b716df0e0519eac1f940687 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/doi.org\/10.1016\/j.energy.2020.117422\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/11\/Energy-quadrada-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/11\/Energy-quadrada-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/11\/Energy-quadrada.jpg 576w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/energy-quadrada-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988399619{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/doi.org\/10.1016\/j.energy.2020.117422\"><span style=\"font-size: 12pt;\"><strong>Techno-economic assessment of bioenergy and biofuel production in integrated sugarcane biorefinery: Identification of technological bottlenecks and economic feasibility of dilute acid pretreatment<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>MAI-2020 <\/strong>A produ\u00e7\u00e3o de etanol celul\u00f3sico ainda enfrenta desafios para tornar-se competitiva comercialmente e impactar a economia circular. Este trabalho avaliou a produ\u00e7\u00e3o de etanol celul\u00f3sico a partir do pr\u00e9-tratamento com \u00e1cido dilu\u00eddo e da subsequente hidr\u00f3lise enzim\u00e1tica do baga\u00e7o de um h\u00edbrido de cana-de-a\u00e7\u00facar (com baixo teor de lignina, alto teor de fibras e alta produtividade agr\u00edcola). Destaca-se que os custos de produ\u00e7\u00e3o da cana, investimentos em equipamentos industriais e custos dos insumos qu\u00edmicos s\u00e3o os principais fatores que impactam a viabilidade econ\u00f4mica do processo avaliado.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1594988289422{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243;][vc_column_text css=&#8221;.vc_custom_1594986164534{margin-bottom: 3px !important;border-bottom-width: 3px !important;padding-bottom: 3px !important;background-color: #8224e3 !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>PARCERIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-ddbba48bacf84c4a45262423f17d07f2.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-ddbba48bacf84c4a45262423f17d07f2.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-ddbba48bacf84c4a45262423f17d07f2 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-ddbba48bacf84c4a45262423f17d07f2 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-ddbba48bacf84c4a45262423f17d07f2 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.jbc.org\/content\/295\/15\/5012\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20200%20200&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/07\/JBC29-1.gif\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/07\/JBC29-1.gif 200w\" loading=\"eager\" style=\"--ratio: 200 \/ 200\" sizes=\"(max-width: 200px) 100vw, 200px\" width=\"200\" height=\"200\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/jbc29-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243;][vc_column_text]<span style=\"font-size: 12pt;\"><a href=\"https:\/\/www.jbc.org\/content\/295\/15\/5012\"><strong>Spatially remote motifs cooperatively affect substrate preference of a ruminal GH26-type endo-\u03b2-1,4-mannanase<\/strong><\/a><\/span><\/p>\n<p style=\"text-align: justify;\"><strong>MAR-2020 <\/strong>As enzimas podem melhorar a digestibilidade dos manano-ligossacar\u00eddeos presentes nas dietas do gado. Desta forma, o r\u00famen bovino cont\u00e9m uma comunidade microbiana altamente adaptada \u00e0 decomposi\u00e7\u00e3o da biomassa lignocelul\u00f3sica. Este trabalho, com uma empresa parceira, indica um mecanismo novo, complexo e cooperativo entre subsitios enzim\u00e1ticos e dom\u00ednio auxiliar para modular a prefer\u00eancia pelo substrato. Ele promove a compreens\u00e3o molecular da liga\u00e7\u00e3o e reconhecimento do substrato na fam\u00edlia GH26 e apresenta potencial uso industrial.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_empty_space][vc_row_inner css=&#8221;.vc_custom_1594985565766{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594985980260{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594986132431{margin-bottom: 3px !important;border-bottom-width: 3px !important;padding-bottom: 3px !important;background-color: #81d742 !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>TECNOLOGIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-d1581ec7ac069bed6b6ca1acc66e3e29.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-d1581ec7ac069bed6b6ca1acc66e3e29.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-d1581ec7ac069bed6b6ca1acc66e3e29 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-d1581ec7ac069bed6b6ca1acc66e3e29 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-d1581ec7ac069bed6b6ca1acc66e3e29 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S0960852419319145?via%3Dihub\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/08\/biotechnology-res-novo-1-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/08\/biotechnology-res-novo-1-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/08\/biotechnology-res-novo-1.jpg 576w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/biotechnology-res-novo\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988413969{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><span style=\"font-size: 12pt;\"><a href=\"https:\/\/www.sciencedirect.com\/science\/article\/abs\/pii\/S0960852419319145?via%3Dihub\"><strong>Engineering aspects of hydrothermal pretreatment: From batch to continuous operation, scale-up and pilot reactor under biorefinery concept<\/strong><\/a><\/span><\/p>\n<p style=\"text-align: justify;\"><strong>MAR-2020 <\/strong>Os biocombust\u00edveis sustent\u00e1veis s\u00e3o importantes para a descarboniza\u00e7\u00e3o do transporte rodovi\u00e1rio de ve\u00edculos leves. O pr\u00e9-tratamento hidrot\u00e9rmico \u00e9 considerado uma das tecnologias mais promissoras para a produ\u00e7\u00e3o de etanol celul\u00f3sico. Esta revis\u00e3o fornece informa\u00e7\u00f5es abrangentes sobre pr\u00e9-tratamento hidrot\u00e9rmico, incluindo desempenho em escala semi-industrial (planta piloto LNBR) e discute o projeto de processo integrado.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1606307730477{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988529956{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594986174251{margin-bottom: 3px !important;border-bottom-width: 3px !important;padding-bottom: 3px !important;background-color: #81d742 !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>TECNOLOGIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-1af59497439a404bbc702d960bb609c8.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-1af59497439a404bbc702d960bb609c8.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-1af59497439a404bbc702d960bb609c8 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-1af59497439a404bbc702d960bb609c8 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-1af59497439a404bbc702d960bb609c8 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/doi.org\/10.1111\/1751-7915.13556\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20500%20500&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/11\/Microbial-Biotech-quadrada-500x500.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/11\/Microbial-Biotech-quadrada-500x500.jpg 500w, https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/11\/Microbial-Biotech-quadrada.jpg 763w\" loading=\"eager\" style=\"--ratio: 500 \/ 500\" sizes=\"(max-width: 500px) 100vw, 500px\" width=\"500\" height=\"500\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/microbial-biotech-quadrada-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988431142{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/doi.org\/10.1111\/1751-7915.13556\"><span style=\"font-size: 12pt;\"><strong>Improvement of homologous GH10 xylanase production by deletion of genes with predicted function in the Aspergillus nidulans secretion pathway<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>MAR-2020 <\/strong>Fungos filamentosos s\u00e3o importantes plataformas microbianas para aplica\u00e7\u00f5es biotecnol\u00f3gicas. Um desafio \u00e9 a produ\u00e7\u00e3o de altos t\u00edtulos de prote\u00ednas. Neste trabalho, an\u00e1lises transcricionais em larga escala foram empregadas para identifica\u00e7\u00e3o de genes associados \u00e0 secre\u00e7\u00e3o de prote\u00ednas. Modifica\u00e7\u00f5es gen\u00e9ticas nestes genes alvos resultaram em linhagens com maior produ\u00e7\u00e3o de prote\u00ednas, demonstrando que esta estrat\u00e9gia \u00e9 interessante para o desenvolvimento de cepas industrialmente relevantes.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_empty_space][vc_row_inner css=&#8221;.vc_custom_1606307737020{background-color: #f7f7f7 !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988529956{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594986174251{margin-bottom: 3px !important;border-bottom-width: 3px !important;padding-bottom: 3px !important;background-color: #81d742 !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>TECNOLOGIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-942022f16731eddf1ac2a6d6372e5ede.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-942022f16731eddf1ac2a6d6372e5ede.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-942022f16731eddf1ac2a6d6372e5ede .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-942022f16731eddf1ac2a6d6372e5ede .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-942022f16731eddf1ac2a6d6372e5ede alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"https:\/\/doi.org\/10.1007\/s00253-019-10318-y\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20138%20138&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/11\/Applied-Micro-Biotech-quadrada.jpg\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/11\/Applied-Micro-Biotech-quadrada.jpg 138w\" loading=\"eager\" style=\"--ratio: 138 \/ 138\" sizes=\"(max-width: 138px) 100vw, 138px\" width=\"138\" height=\"138\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/destaques-de-pesquisa\/applied-micro-biotech-quadrada-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988431142{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><a href=\"https:\/\/doi.org\/10.1007\/s00253-019-10318-y\"><span style=\"font-size: 12pt;\"><strong>Functional genomic analysis of bacterial lignin degraders: diversity in mechanisms of lignin oxidation and metabolism<\/strong><\/span><\/a><\/p>\n<p style=\"text-align: justify;\"><strong>FEV-2020 <\/strong>A valoriza\u00e7\u00e3o de todos os componentes da biomassa \u00e9 importante para o desenvolvimento de novos bioprodutos e para descarboniza\u00e7\u00e3o da economia. Neste trabalho, an\u00e1lises gen\u00f4micas foram usadas para identifica\u00e7\u00e3o de diversos mecanismos empregados por bact\u00e9rias para o metabolismo de lignina, que poder\u00e1 contribuir com o desenvolvimento de aplica\u00e7\u00f5es biotecnol\u00f3gicas para converter lignina em produtos de valor agregado.<\/p>\n<p>[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1606307768617{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988529956{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594986174251{margin-bottom: 3px !important;border-bottom-width: 3px !important;padding-bottom: 3px !important;background-color: #81d742 !important;}&#8221;]<\/p>\n<p style=\"text-align: center;\"><span style=\"color: #ffffff;\"><strong>TECNOLOGIA<\/strong><\/span><\/p>\n<p>[\/vc_column_text]<style type=\"text\/css\" data-type=\"the7_shortcodes-inline-css\">.shortcode-single-image-wrap.shortcode-single-image-35eab8679a34dbf8671855a3ed1d1210.enable-bg-rollover .rollover i,\n.shortcode-single-image-wrap.shortcode-single-image-35eab8679a34dbf8671855a3ed1d1210.enable-bg-rollover .rollover-video i {\n  background: -webkit-linear-gradient();\n  background: linear-gradient();\n}\n.shortcode-single-image-wrap.shortcode-single-image-35eab8679a34dbf8671855a3ed1d1210 .rollover-icon {\n  font-size: 32px;\n  color: #ffffff;\n  min-width: 44px;\n  min-height: 44px;\n  line-height: 44px;\n  border-radius: 100px;\n  border-style: solid;\n  border-width: 0px;\n}\n.dt-icon-bg-on.shortcode-single-image-wrap.shortcode-single-image-35eab8679a34dbf8671855a3ed1d1210 .rollover-icon {\n  background: rgba(255,255,255,0.3);\n  box-shadow: none;\n}\n<\/style><div class=\"shortcode-single-image-wrap shortcode-single-image-35eab8679a34dbf8671855a3ed1d1210 alignnone  enable-bg-rollover dt-icon-bg-off\" style=\"margin-top:0px; margin-bottom:0px; margin-left:0px; margin-right:0px; width:500px;\"><div class=\"shortcode-single-image\"><div class=\"fancy-media-wrap\" style=\"\"><a href=\"http:\/\/task39.sites.olt.ubc.ca\/files\/2020\/02\/Task-39-Phase-2.2-Ethanol-2G-Comparison-of-Biofuel-Life-Cycle-Analysis-Tools.pdf\" class=\" layzr-bg rollover\" style=\"\" target=\"_blank\" rel=\"noopener\" aria-label=\"Image\"><img decoding=\"async\" class=\"preload-me lazy-load aspect\" src=\"data:image\/svg+xml,%3Csvg%20xmlns%3D&#39;http%3A%2F%2Fwww.w3.org%2F2000%2Fsvg&#39;%20viewBox%3D&#39;0%200%20332%20332&#39;%2F%3E\" data-src=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/07\/2020-07-20-10_31_23-Window-1.png\" data-srcset=\"https:\/\/lnbr.cnpem.br\/wp-content\/uploads\/2020\/07\/2020-07-20-10_31_23-Window-1.png 332w\" loading=\"eager\" style=\"--ratio: 332 \/ 332\" sizes=\"(max-width: 332px) 100vw, 332px\" width=\"332\" height=\"332\"  data-dt-location=\"https:\/\/lnbr.cnpem.br\/en\/2020-07-20-10_31_23-window-2\/\" alt=\"\" \/><\/a><\/div><\/div><\/div>[\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988431142{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text]<\/p>\n<p style=\"text-align: justify;\"><span style=\"font-size: 12pt;\"><a href=\"http:\/\/task39.sites.olt.ubc.ca\/files\/2020\/02\/Task-39-Phase-2.2-Ethanol-2G-Comparison-of-Biofuel-Life-Cycle-Analysis-Tools.pdf\"><strong>Comparison of Biofuel Life Cycle Analysis Tools<\/strong><\/a><\/span><\/p>\n<p style=\"text-align: justify;\"><strong>DEZ-2019 <\/strong>A avalia\u00e7\u00e3o do ciclo de vida (ACV) \u00e9 uma ferramenta para avaliar os impactos ambientais de um produto. As diferen\u00e7as de modelo de ACV desafiam a credibilidade das avalia\u00e7\u00f5es individuais aplicadas \u00e0s metas de mitiga\u00e7\u00e3o de gases de efeito estufa. Este trabalho, em parceria com a Ag\u00eancia Internacional de Energia (IEA), compara as emiss\u00f5es de gases de efeito estufa para a produ\u00e7\u00e3o de etanol celul\u00f3sico utilizando modelos de ACV internacionalmente aceitos do Brasil, Canad\u00e1, EUA e UE. 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[\/vc_column_text][\/vc_column_inner][\/vc_row_inner][vc_row_inner css=&#8221;.vc_custom_1610738250618{background-color: #ffffff !important;}&#8221;][vc_column_inner width=&#8221;1\/5&#8243; css=&#8221;.vc_custom_1594988083140{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;}&#8221;][vc_column_text css=&#8221;.vc_custom_1594987229854{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px !important;padding-top: 3px !important;padding-bottom: 3px !important;background-color: #1e73be !important;}&#8221;] CI\u00caNCIA [\/vc_column_text][\/vc_column_inner][vc_column_inner width=&#8221;4\/5&#8243; css=&#8221;.vc_custom_1594988178545{margin-top: 3px !important;margin-bottom: 3px !important;border-top-width: 3px !important;border-bottom-width: 3px&hellip;<\/p>\n","protected":false},"author":3,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"_acf_changed":false,"_monsterinsights_skip_tracking":false,"footnotes":"","_links_to":"","_links_to_target":""},"class_list":["post-46680","page","type-page","status-publish","hentry","description-off"],"acf":[],"_links":{"self":[{"href":"https:\/\/lnbr.cnpem.br\/en\/wp-json\/wp\/v2\/pages\/46680","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/lnbr.cnpem.br\/en\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/lnbr.cnpem.br\/en\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/lnbr.cnpem.br\/en\/wp-json\/wp\/v2\/users\/3"}],"replies":[{"embeddable":true,"href":"https:\/\/lnbr.cnpem.br\/en\/wp-json\/wp\/v2\/comments?post=46680"}],"version-history":[{"count":0,"href":"https:\/\/lnbr.cnpem.br\/en\/wp-json\/wp\/v2\/pages\/46680\/revisions"}],"wp:attachment":[{"href":"https:\/\/lnbr.cnpem.br\/en\/wp-json\/wp\/v2\/media?parent=46680"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}