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揭示氯化胆碱:乳酸低共熔溶剂热处理过程中生物质多糖的改性。

Unveiling Modifications of Biomass Polysaccharides during Thermal Treatment in Cholinium Chloride : Lactic Acid Deep Eutectic Solvent.

作者信息

Morais Eduarda S, Da Costa Lopes André M, Freire Mara G, Freire Carmen S R, Silvestre Armando J D

机构信息

CICECO-Aveiro Institute of Materials, Department of Chemistry, University of Aveiro, 3810-193, Aveiro, Portugal.

出版信息

ChemSusChem. 2021 Jan 21;14(2):686-698. doi: 10.1002/cssc.202002301. Epub 2020 Nov 30.

DOI:10.1002/cssc.202002301
PMID:33211400
Abstract

A deep analysis upon the chemical modifications of the cellulose and hemicelluloses fractions that take place during biomass delignification with deep eutectic solvents (DES) is lacking in literature, being this a critical issue given the continued research on DES for this purpose. This work intends to fill this gap by disclosing a comprehensive study on the chemical modifications of cellulose (microcrystalline cellulose and bleached kraft pulp) and hemicelluloses (xylans) during thermal treatment (130 °C) with cholinium chloride/lactic acid ([Ch]Cl/LA) at molar ratio 1 : 10, one of the best reported DES for biomass delignification. The obtained data revealed that [Ch]Cl/LA (1 : 10) has a negative impact on the polysaccharides fractions at prolonged treatments (>4 h), resulting on substantial modifications including the esterification of cellulose with lactic acid, shortening of fibers length, fibers agglomeration and side reactions of the hemicelluloses fraction (e. g., humin formation, lactic acid grafting). Wood delignification trials with [Ch]Cl/LA (1 : 10) at the same conditions also corroborate these findings. Moreover, the DES suffers degradation, including the formation of lactic acid derivatives and its polymerization. Therefore, short time delignification treatments are strongly recommended when using the [Ch]Cl/LA DES, so that a sustainable fractionation of biomass into high quality cellulose fibers, isolated lignin, and xylose/furfural co-production along with solvent recyclability could be achieved.

摘要

目前文献中缺乏对在使用低共熔溶剂(DES)进行生物质脱木质素过程中纤维素和半纤维素部分化学修饰的深入分析,鉴于对此目的的DES仍在持续研究,这是一个关键问题。这项工作旨在通过披露一项关于在130°C热处理过程中,使用氯化胆碱/乳酸([Ch]Cl/LA)摩尔比为1:10(这是报道的用于生物质脱木质素的最佳DES之一)对纤维素(微晶纤维素和漂白硫酸盐浆)和半纤维素(木聚糖)进行化学修饰的综合研究,来填补这一空白。获得的数据表明,[Ch]Cl/LA(1:10)在长时间处理(>4小时)时对多糖部分有负面影响,导致大量修饰,包括纤维素与乳酸的酯化、纤维长度缩短、纤维团聚以及半纤维素部分的副反应(例如,腐殖质形成、乳酸接枝)。在相同条件下用[Ch]Cl/LA(1:10)进行的木材脱木质素试验也证实了这些发现。此外,DES会发生降解,包括乳酸衍生物的形成及其聚合。因此,在使用[Ch]Cl/LA DES时强烈建议进行短时间脱木质素处理,以便能够实现将生物质可持续分离为高质量纤维素纤维、分离的木质素以及木糖/糠醛联产,同时实现溶剂的可回收性。

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