木质素
乙二醇
分馏
化学
纤维素
氯化胆碱
解聚
草酸
产量(工程)
有机化学
深共晶溶剂
反应性(心理学)
水解
共晶体系
化学工程
材料科学
替代医学
冶金
合金
病理
工程类
医学
作者
Yongzhuang Liu,Noémi Deak,Zhiwen Wang,Haipeng Yu,Lisanne Hameleers,Edita Jurak,Peter J. Deuss,Katalin Barta
标识
DOI:10.1038/s41467-021-25117-1
摘要
Stabilization of reactive intermediates is an enabling concept in biomass fractionation and depolymerization. Deep eutectic solvents (DES) are intriguing green reaction media for biomass processing; however undesired lignin condensation is a typical drawback for most acid-based DES fractionation processes. Here we describe ternary DES systems composed of choline chloride and oxalic acid, additionally incorporating ethylene glycol (or other diols) that provide the desired 'stabilization' function for efficient lignocellulose fractionation, preserving the quality of all lignocellulose constituents. The obtained ethylene-glycol protected lignin displays high β-O-4 content (up to 53 per 100 aromatic units) and can be readily depolymerized to distinct monophenolic products. The cellulose residues, free from condensed lignin particles, deliver up to 95.9 ± 2.12% glucose yield upon enzymatic digestion. The DES can be recovered with high yield and purity and re-used with good efficiency. Notably, we have shown that the reactivity of the β-O-4 linkage in model compounds can be steered towards either cleavage or stabilization, depending on DES composition, demonstrating the advantage of the modular DES composition.
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