木质素
生物炼制
化学
分馏
纤维素
水解
木聚糖
生物量(生态学)
酶水解
生物燃料
有机化学
深共晶溶剂
制浆造纸工业
原材料
生物技术
共晶体系
农学
生物
工程类
合金
作者
Jinyuan Cheng,Chen Huang,Yunni Zhan,Shanming Han,Jia Wang,Xianzhi Meng,Chang Geun Yoo,Guigan Fang,Arthur J. Ragauskas
标识
DOI:10.1016/j.cej.2022.136395
摘要
A sustainable and renewable biorefinery will increase the economic viability of lignocellulose-derived products. In this study, a diol-based deep eutectic solvent (DES) was developed to reduce the recalcitrance of bamboo, facilitate saccharification and valorize the lignin fraction. The DES pretreatment dramatically enhanced glucan digestibility by the effective removal of lignin (as high as 85.45%) and xylan (91.12%). Notably, the recovered lignin from DES pretreatment was protected during the fractionation, showing well-preserved β-O-4 structures (31.82%–59.06%). The mechanism of lignin protection was analyzed to be accomplished by incorporating the diol hydroxyl functional groups into the α position of the lignin β-O-4 structure via etherification. This study highlighted that diol DES is a promising pretreatment solvent to valorize both cellulose and lignin fractions with high enzymatic hydrolysis yield and high-quality lignin co-product.
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