氢解
玉米秸秆
木质素
分馏
发酵
化学
干草
催化作用
除氧
有机化学
制浆造纸工业
农学
生物
工程类
作物
作者
Wen-Zheng Yin,Ling‐Ping Xiao,Shuang-Lin Zou,Wenxin Li,Hongliang Wang,Run‐Cang Sun
标识
DOI:10.1016/j.biortech.2023.128752
摘要
The fermented corn stover residues are abundant renewable lignin-rich bioresources that show great potential to produce aromatic phenols. However, selective catalytic hydrogenolysis of this residual material still remains challenge to obtain high yields. Herein, a novel strategy to produce monophenolic compounds from the fermented stover over a commercial Pd/C catalyst was proposed. Taking the reaction temperature as the key variable, the highest monomer yield was 28.5 wt% at 220 °C in compaction with that of the pristine corn stover (22.8 wt%). The enhanced monophenol yield was due to the higher contents of lignin and less recalcitrance in the fermented stover. Moreover, the van Krevelen diagram revealed a slight selective CO bond scission of lignin macromolecular during fermentation as well as the dehydration and deoxygenation in hydrogenolysis reaction. Overall, this work opens a new avenue for the valorization of lignin through reductive catalytic fractionation of agricultural wastes.
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