Structural characterization of lignin from the green pretreatments for co-producing xylo-oligosaccharides and glucose: Toward full biomass utilization

木质素 化学 水解 蔗渣 酶水解 产量(工程) 食品科学 生物炼制 催化作用 生物量(生态学) 有机化学 制浆造纸工业 原材料 农学 材料科学 工程类 冶金 生物
作者
Weiwei Zhang,Chenxi Li,Xichuang Cheng,Linlin Xu,Wei Xu,Bo Zhang,Han-Min Wang,Yawen Zhou,Yang Xiao,Jianxin Jiang,Baocai Xu
出处
期刊:International Journal of Biological Macromolecules [Elsevier BV]
卷期号:259 (Pt 2): 129235-129235 被引量:8
标识
DOI:10.1016/j.ijbiomac.2024.129235
摘要

Three green non-enzymatic catalysis pretreatments (NECPs) including autohydrolysis, subcritical CO2-assisted seawater autohydrolysis, and inorganic salt catalysis were utilized to simultaneously produce xylo-oligosaccharides (XOS), glucose, and cellulolytic enzyme lignin (CEL) from sugarcane bagasse (SCB). The yield of XOS in all three NECPs was over 50 % with a competitive glucose yield of enzymatic hydrolysis. And the effects of different pretreatments on the chemical structure and composition of CEL samples were also investigated. The pretreatments significantly increased the thermal stability, yield, and purity of the CEL samples. Moreover, the net yield of lignin was 58.3 % with lignin purity was 98.9 % in the autohydrolysis system. Furthermore, there was a decrease in the molecular weight of CEL samples as the pretreatment intensity increased. And the original lignin structural units sustained less damage during the NECPs, due to the cleavage of the β-O-4 bonds dominating lignin degradation. Meanwhile, these pretreatments increased the phenolic-OH in CEL samples, making the lignin more reactive, and enhancing its subsequent modification and utilization. Collectively, the described techniques have demonstrated practical significance for the coproduction of XOS and glucose, and lignin, providing a promising strategy for full utilization of biomass.
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