分馏
生物量(生态学)
深共晶溶剂
化学
木糖
生物炼制
阿拉伯木聚糖
糠醛
水解
溶剂
泡沫分离
产量(工程)
木质素
共晶体系
有机化学
分离过程
色谱法
萃取(化学)
酶水解
制浆造纸工业
水解物
作者
Tingjiao Wang,Qiongyao Su,Xinyuan Zhang,Yuchen Zeng,Chengyue Yuan,Shang Wan,Jinguang Hu,Xiaoqiang Yu,Fei Shen,Dong Tian
标识
DOI:10.1021/acssuschemeng.5c05627
摘要
The effective fractionation technology route is a crucial aspect for the full valorization of lignocellulose. The current fractionation technologies primarily focus on single-component fractionation of lignocellulose, with the technical dilemma between each component conversion availability and overall product yields, especially under harsh fractionation conditions. This work proposed the mild fractionation process of a mechanochemistry-assisted choline hydroxide-ethylene glycol alkaline deep eutectic solvent (Ch-Ely DES) to fractionate straw biomass, with the goal of higher-value binary-component fractions pursuing, i.e., holocellulose, lignin-carbohydrate complexes (LCC), and arabinoxylan (AX). Through the synergistic effect of mechanochemical deconstruction and alkaline deep eutectic solvent swelling, 93% holocellulose recovery, corresponding to a 53.2/100 Ar β-O-4 bond content in the LCC fraction, was achieved. The resulting holocellulose hydrolysis values at a 5 wt % solid loading were 96 and 55% for glucose and xylose respectively. The mild fractionation process could yield fractions with well-preserved structures by selective hydrogen bond network interaction and lignin-carbohydrate complex covalent bond preservation. The proposed binary-component fractionation route is promising to diversify current fractionation technologies and product streams.
科研通智能强力驱动
Strongly Powered by AbleSci AI