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一种用于从杨木中快速分离和定向增值半纤维素和纤维素的协同水热-深共熔溶剂(DES)预处理方法。

A synergistic hydrothermal-deep eutectic solvent (DES) pretreatment for rapid fractionation and targeted valorization of hemicelluloses and cellulose from poplar wood.

作者信息

Ma Cheng-Ye, Xu Ling-Hua, Zhang Chen, Guo Kai-Ning, Yuan Tong-Qi, Wen Jia-Long

机构信息

Beijing Key Laboratory of Lignocellulosic Chemistry, Beijing Forestry University, No. 35 Tsinghua East Road, Haidian District, Beijing 100083, China.

Beijing Key Laboratory of Lignocellulosic Chemistry, Beijing Forestry University, No. 35 Tsinghua East Road, Haidian District, Beijing 100083, China.

出版信息

Bioresour Technol. 2021 Dec;341:125828. doi: 10.1016/j.biortech.2021.125828. Epub 2021 Aug 23.

Abstract

A synergistic pretreatment that realizing effective fractionation and targeted valorization can guarantee the implementability to future biorefinery scenario. In the present study, a stepwise approach using hydrothermal and deep eutectic solvents (DES) pretreatment was developed to preferentially dissociate hemicelluloses and further remove lignin from poplar, while retaining a cellulose-rich substrate that can be easily digested via enzymatic saccharification to obtain glucose. Results showed that the hydrothermal filtrate is mainly composed of xylooligosaccharide (XOS), monosaccharides, byproducts, and xylan-type hemicelluloses, which have homogenous structures and uniform molecular weights distribution as well as excellent antioxidant activity. Subsequent DES pretreatment further removed the lignin barriers, leading to a remarkable increase in the saccharification efficiency from 15.72% to 96.33% under optimum conditions for enzymatic hydrolysis. In short, the integrated pretreatment is effective for dissociating and chemical conversion of poplar wood, which was reasonable to promote the frontier of highly available biorefinery.

摘要

一种能够实现有效分级和定向增值的协同预处理方法可以确保其在未来生物炼制场景中的可实施性。在本研究中,开发了一种采用水热和深共熔溶剂(DES)预处理的分步方法,以优先解离半纤维素,并进一步从杨树中去除木质素,同时保留富含纤维素的底物,该底物可通过酶糖化轻松消化以获得葡萄糖。结果表明,水热滤液主要由低聚木糖(XOS)、单糖、副产物和木聚糖型半纤维素组成,它们具有均匀的结构和分子量分布以及优异的抗氧化活性。随后的DES预处理进一步消除了木质素障碍,在酶水解的最佳条件下,糖化效率从15.72%显著提高到96.33%。简而言之,这种综合预处理对于杨树木材的解离和化学转化是有效的,这对于推动高可用性生物炼制的前沿发展是合理的。

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