木质素
化学
生物炼制
解聚
有机化学
木质纤维素生物量
胺化
单糖
玉米秸秆
催化作用
水解
原材料
作者
Li Xu,Meifang Cao,Jiefeng Zhou,Yuxia Pang,Zhixian Li,Dongjie Yang,Shao‐Yuan Leu,Hongming Lou,Xuejun Pan,Xueqing Qiu
标识
DOI:10.1038/s41467-024-45073-w
摘要
Abstract Thought-out utilization of entire lignocellulose is of great importance to achieving sustainable and cost-effective biorefineries. However, there is a trade-off between efficient carbohydrate utilization and lignin-to-chemical conversion yield. Here, we fractionate corn stover into a carbohydrate fraction with high enzymatic digestibility and reactive lignin with satisfactory catalytic depolymerization activity using a mild high-solid process with aqueous diethylamine (DEA). During the fractionation, in situ amination of lignin achieves extensive delignification, effective lignin stabilization, and dramatically reduced nonproductive adsorption of cellulase on the substrate. Furthermore, by designing a tandem fractionation-hydrogenolysis strategy, the dissolved lignin is depolymerized and aminated simultaneously to co-produce monophenolics and pyridine bases. The process represents the viable scheme of transforming real lignin into pyridine bases in high yield, resulting from the reactions between cleaved lignin side chains and amines. This work opens a promising approach to the efficient valorization of lignocellulose.
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