小型有机活性炭处理筛选油菜籽秸秆的有效木质纤维素分馏

IF 2.5 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Frontiers in chemical engineering Pub Date : 2023-01-16 DOI:10.3389/fceng.2023.1098411
Jimena Martinez Diaz, Philipp M. Grande, H. Klose
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引用次数: 1

摘要

油菜籽秸秆等农业残留物是纤维素、糖和木质素等芳香分子的宝贵来源。了解其组成对于开发从油菜籽秸秆生产生物燃料或生化产品的合适加工技术至关重要。在此,我们开发了一个小型的OrganoCat系统,以更高的通量筛选多种技术条件和不同的样品,并利用该系统分析了来自14个遗传不同的芸苔系的秸秆样品的可加工性。通过相关分析研究了细胞壁聚合物特征对油菜籽生物量分解的影响。在相对温和的反应条件下,对OrganoCat分馏的抗拒性差异与果胶多糖含量、乙酰化和半纤维素组成等参数有关。这些发现可以随后用于优化和扩大预处理和分离从油菜秸秆中提取的木质纤维素。
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Small-scale OrganoCat processing to screen rapeseed straw for efficient lignocellulose fractionation
Agricultural residues such as rapeseed straw can be a valuable source of cellulose, sugars, and aromatic molecules like lignin. Understanding its composition is crucial in order to develop suitable processing technology for the production of biofuel or biochemicals from rapeseed straw. Here, we developed a small-scale OrganoCat system to screen multiple technical conditions and different samples at higher throughput and utilize this system to analyze straw samples from a set of 14 genetically different Brassica lines on their processability. Correlation analysis was performed to investigate the effects of cell wall polymer features on rapeseed biomass disintegration. At comparably mild reaction conditions, the differences in recalcitrance towards OrganoCat fractionation within the set were especially associated with parameters such as pectic polysaccharide content, acetylation, and hemicellulose composition. These findings can subsequently be used to optimize and scale up the pretreatment and fractionation of lignocellulose derived from rapeseed straw.
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CiteScore
3.50
自引率
0.00%
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审稿时长
13 weeks
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