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Ionic liquid-mediated selective extraction of lignin from wood leading to enhanced enzymatic cellulose hydrolysis

机译:离子液体介导的木材中木质素的选择性提取,导致增强的酶促纤维素水解

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摘要

Lignocellulose represents a key sustainable source of biomass for transformation into biofuels and bio-based products. Unfortunately, lignocellulosic biomass is highly recalcitrant to biotransformation, both microbial and enzymatic, which limits its use and prevents economically viable conversion into value-added products. As a result, effective pretreatment strategies are necessary, which invariably involves high energy processing or results in the degradation of key components of lignocellulose. In this work, the ionic liquid, 1-ethyl-3-methylimidazolium acetate ([Emim][CH _3COO]), was used as a pretreatment solvent to extract lignin from wood flour. The cellulose in the pretreated wood flour becomes far less crystalline without undergoing solubilization. When 40% of the lignin was removed, the cellulose crystallinity index dropped below 45, resulting in >90% of the cellulose in wood flour to be hydrolyzed by Trichoderma viride cellulase. [Emim] [CH 3COO] was easily reused, thereby resulting in a highly concentrated solution of chemically unmodified lignin, which may serve as a valuable source of a polyaromatic material as a value-added product.
机译:木质纤维素代表了转化为生物燃料和生物基产品的生物质的关键可持续来源。不幸的是,木质纤维素生物质对微生物和酶促生物转化具有很高的抵抗性,这限制了其用途并阻止了经济上可行的转化为增值产品。结果,有效的预处理策略是必要的,这始终涉及高能量处理或导致木质纤维素关键成分的降解。在这项工作中,离子液体乙酸1-乙基-3-甲基咪唑鎓乙酸盐([Emim] [CH _3COO])被用作从木粉中提取木质素的预处理溶剂。预处理的木粉中的纤维素在不发生增溶的情况下结晶度大大降低。当除去40%的木质素时,纤维素的结晶度指数降至45以下,导致木粉中90%以上的纤维素被木霉绿色纤维素酶水解。 [Emim] [CH 3COO]易于重复使用,从而得到高度浓缩的化学未改性木质素溶液,该溶液可作为有价值的聚芳烃材料来源。

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