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Bismuth-Decorated Beta Zeolites Catalysts for Highly Selective Catalytic Oxidation of Cellulose to Biomass-Derived Glycolic Acid

Catalytic conversion of cellulose to liquid fuel and highly valuable platform chemicals remains a critical and challenging process. Here, bismuth-decorated β zeolite catalysts (Bi/β) were exploited for highly efficient hydrolysis and selective oxidation of cellulose to biomass-derived glycolic acid...

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Autores principales: Wang, Fenfen, Qu, Dongxue, Wang, Shaoshuai, Liu, Guojun, Zhao, Qiang, Hu, Jiaxue, Dong, Wendi, Huang, Yong, Xu, Jinjia, Chen, Yuhui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9738590/
https://www.ncbi.nlm.nih.gov/pubmed/36498370
http://dx.doi.org/10.3390/ijerph192316298
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author Wang, Fenfen
Qu, Dongxue
Wang, Shaoshuai
Liu, Guojun
Zhao, Qiang
Hu, Jiaxue
Dong, Wendi
Huang, Yong
Xu, Jinjia
Chen, Yuhui
author_facet Wang, Fenfen
Qu, Dongxue
Wang, Shaoshuai
Liu, Guojun
Zhao, Qiang
Hu, Jiaxue
Dong, Wendi
Huang, Yong
Xu, Jinjia
Chen, Yuhui
author_sort Wang, Fenfen
collection PubMed
description Catalytic conversion of cellulose to liquid fuel and highly valuable platform chemicals remains a critical and challenging process. Here, bismuth-decorated β zeolite catalysts (Bi/β) were exploited for highly efficient hydrolysis and selective oxidation of cellulose to biomass-derived glycolic acid in an O(2) atmosphere, which exhibited an exceptionally catalytic activity and high selectivity as well as excellent reusability. It was interestingly found that as high as 75.6% yield of glycolic acid over 2.3 wt% Bi/β was achieved from cellulose at 180 °C for 16 h, which was superior to previously reported catalysts. Experimental results combined with characterization revealed that the synergetic effect between oxidation active sites from Bi species and surface acidity on H-β together with appropriate total surface acidity significantly facilitated the chemoselectivity towards the production of glycolic acid in the direct, one-pot conversion of cellulose. This study will shed light on rationally designing Bi-based heterogeneous catalysts for sustainably generating glycolic acid from renewable biomass resources in the future.
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spelling pubmed-97385902022-12-11 Bismuth-Decorated Beta Zeolites Catalysts for Highly Selective Catalytic Oxidation of Cellulose to Biomass-Derived Glycolic Acid Wang, Fenfen Qu, Dongxue Wang, Shaoshuai Liu, Guojun Zhao, Qiang Hu, Jiaxue Dong, Wendi Huang, Yong Xu, Jinjia Chen, Yuhui Int J Environ Res Public Health Article Catalytic conversion of cellulose to liquid fuel and highly valuable platform chemicals remains a critical and challenging process. Here, bismuth-decorated β zeolite catalysts (Bi/β) were exploited for highly efficient hydrolysis and selective oxidation of cellulose to biomass-derived glycolic acid in an O(2) atmosphere, which exhibited an exceptionally catalytic activity and high selectivity as well as excellent reusability. It was interestingly found that as high as 75.6% yield of glycolic acid over 2.3 wt% Bi/β was achieved from cellulose at 180 °C for 16 h, which was superior to previously reported catalysts. Experimental results combined with characterization revealed that the synergetic effect between oxidation active sites from Bi species and surface acidity on H-β together with appropriate total surface acidity significantly facilitated the chemoselectivity towards the production of glycolic acid in the direct, one-pot conversion of cellulose. This study will shed light on rationally designing Bi-based heterogeneous catalysts for sustainably generating glycolic acid from renewable biomass resources in the future. MDPI 2022-12-05 /pmc/articles/PMC9738590/ /pubmed/36498370 http://dx.doi.org/10.3390/ijerph192316298 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wang, Fenfen
Qu, Dongxue
Wang, Shaoshuai
Liu, Guojun
Zhao, Qiang
Hu, Jiaxue
Dong, Wendi
Huang, Yong
Xu, Jinjia
Chen, Yuhui
Bismuth-Decorated Beta Zeolites Catalysts for Highly Selective Catalytic Oxidation of Cellulose to Biomass-Derived Glycolic Acid
title Bismuth-Decorated Beta Zeolites Catalysts for Highly Selective Catalytic Oxidation of Cellulose to Biomass-Derived Glycolic Acid
title_full Bismuth-Decorated Beta Zeolites Catalysts for Highly Selective Catalytic Oxidation of Cellulose to Biomass-Derived Glycolic Acid
title_fullStr Bismuth-Decorated Beta Zeolites Catalysts for Highly Selective Catalytic Oxidation of Cellulose to Biomass-Derived Glycolic Acid
title_full_unstemmed Bismuth-Decorated Beta Zeolites Catalysts for Highly Selective Catalytic Oxidation of Cellulose to Biomass-Derived Glycolic Acid
title_short Bismuth-Decorated Beta Zeolites Catalysts for Highly Selective Catalytic Oxidation of Cellulose to Biomass-Derived Glycolic Acid
title_sort bismuth-decorated beta zeolites catalysts for highly selective catalytic oxidation of cellulose to biomass-derived glycolic acid
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9738590/
https://www.ncbi.nlm.nih.gov/pubmed/36498370
http://dx.doi.org/10.3390/ijerph192316298
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