A tailored deep eutectic solvent for high-yield conversion of poplar residues to bio-based building blocks at mild conditions

半纤维素 深共晶溶剂 产量(工程) 共晶体系 木质素 纤维素 水解 溶剂 乙醇 傅里叶变换红外光谱 材料科学 降水 乙醇沉淀 木聚糖 降级(电信) 化学 缩合反应 化学工程 有机化学 催化作用 工程类 冶金 电信 计算机科学 气象学 物理 合金
作者
Xuelian Zhou,Xuze Liu,Yunni Zhan,Huiyang Bian,Shufang Wu,Hongqi Dai,Fangmin Liang,Xianzhi Meng,Chen Huang,Guigan Fang,Arthur J. Ragauskas
出处
期刊:Chemical Engineering Journal [Elsevier]
卷期号:487: 150407-150407 被引量:7
标识
DOI:10.1016/j.cej.2024.150407
摘要

The generation of condensed compounds in a deep eutectic solvent (DES) pretreatment has become a paramount factor that inhibits the further conversion of pretreated cellulose-rich substrate. This study proposed a novel three-constituent DES system for the value-added utilization of poplar residues by efficiently suppressing hemicellulose derived condensation reactions. The results showed that adding ethanol into the DES system could effectively deconstruct the recalcitrant structure of poplar residues, simultaneously hindering the condensed composition formation. Under optimum ethanol addition (30%), the maximum xylan and lignin removal of 87.94% and 90.99% could be achieved, with more than 90.47% of glucan being preserved. With this, the glucan enzymatic hydrolysis efficiency was remarkably improved to 100% under the pretreatment conditions of 100 °C for 60 min, which was 84.69 times higher than the regular DES-pretreated poplar residues (1.17%). The working mechanism of relieving condensation reactions was characterized by Py-GC–MS, NMR, SEM, FTIR, and others. The results demonstrated that the addition of ethanol could regulate the degradation/conversion pathway of hemicellulose and lignin precipitation, thus inhibit the formation of condensed compounds during the pretreatment.
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