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基于深共熔溶剂/环戊基甲基醚体系的桉木分级及联产葡萄糖、糠醛和木质素的集成生物炼制策略

An integrated biorefinery strategy for Eucalyptus fractionation and co-producing glucose, furfural, and lignin based on deep eutectic solvent/cyclopentyl methyl ether system.

作者信息

Sun Li-Li, Sun Shao-Ni, Cao Xue-Fei, Yao Shuang-Quan

机构信息

Beijing Key Laboratory of Lignocellulosic Chemistry, Beijing Forestry University, Beijing 100083, China.

Beijing Key Laboratory of Lignocellulosic Chemistry, Beijing Forestry University, Beijing 100083, China; MOE Engineering Research Center of Forestry Biomass Materials and Bioenergy, Beijing Forestry University, Beijing 100083, China.

出版信息

Carbohydr Polym. 2024 Nov 1;343:122420. doi: 10.1016/j.carbpol.2024.122420. Epub 2024 Jun 22.

DOI:10.1016/j.carbpol.2024.122420
PMID:39174113
Abstract

A novel biphasic system containing water-soluble deep eutectic solvent (DES) and cyclopentyl methyl ether (CPME) was developed to treat Eucalyptus for furfural production, extracting lignin and enhancing cellulose enzymatic hydrolysis. Herein effect of DES type, water content in DES, temperature and time on furfural yield in water-soluble DES/CPME pretreatment process was firstly evaluated. A maximum furfural yield of 80.6 % was attained in 10 min at 150 °C with choline chloride (ChCl)/citric acid monohydrate (CAM)/CPME system containing 30 wt% water and 2.5 wt% SnCl·5HO, which was higher than that obtained from ChCl/CAM/CPME system without water (55.5 %) and HO/CPME system (49.7 %). These results demonstrated that the water-soluble DES/CPME system was a powerful method enhancing the furfural production. Under the optimal pretreatment conditions, the delignification and glucose yield were reached to 72.7 % and 94.3 %, respectively. The extracted lignin showed low molecular weight and β-aryl-ether was obviously cleaved. Additionally, water-soluble DES/CPME pretreatment led to a significant removal of hemicelluloses (100.0 %) and lignin (72.7 %) and introduced morphological changes on cell walls, especially from the cell corner (CC) and secondary wall (SW) layers. Overall, this work proposed a practical one-step fractionation strategy for co-producing furfural, lignin and fermentable sugar, providing a way to biorefinery.

摘要

开发了一种包含水溶性低共熔溶剂(DES)和环戊基甲基醚(CPME)的新型双相体系,用于处理桉木以生产糠醛、提取木质素并增强纤维素的酶水解。本文首次评估了DES类型、DES中的含水量、温度和时间对水溶性DES/CPME预处理过程中糠醛产率的影响。在150℃下10分钟内,使用含有30 wt%水和2.5 wt% SnCl·5HO的氯化胆碱(ChCl)/一水柠檬酸(CAM)/CPME体系,糠醛产率最高可达80.6%,高于无水的ChCl/CAM/CPME体系(55.5%)和水/CPME体系(49.7%)。这些结果表明,水溶性DES/CPME体系是提高糠醛产量的有效方法。在最佳预处理条件下,脱木素率和葡萄糖产率分别达到72.7%和94.3%。提取的木质素分子量较低,β-芳基醚明显断裂。此外,水溶性DES/CPME预处理导致半纤维素(100.0%)和木质素(72.7%)大量去除,并使细胞壁发生形态变化,尤其是在细胞角(CC)和次生壁(SW)层。总体而言,这项工作提出了一种联产糠醛、木质素和可发酵糖的实用一步分级策略,为生物炼制提供了一条途径。

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