Lignin Structural Alterations in Thermochemical Pretreatments with Limited Delignification

被引:1
|
作者
Yunqiao Pu
Fan Hu
Fang Huang
Arthur J. Ragauskas
机构
[1] Oak Ridge National Laboratory,Biosciences Division
[2] Georgia Institute of Technology,School of Chemistry and Biochemistry
[3] University of Tennessee,Department of Chemical and Biomolecular Engineering
[4] University of Tennessee,Department of Forestry, Wildlife, and Fisheries, Center for Renewable Carbon
[5] BioEnergy Science Center,undefined
来源
BioEnergy Research | 2015年 / 8卷
关键词
Lignin; Thermochemical pretreatment; Limited delignification; Structural alterations; Recalcitrance;
D O I
暂无
中图分类号
学科分类号
摘要
Lignocellulosic biomass has a complex and rigid cell wall structure that makes biomass recalcitrant to biological and chemical degradation. Among the three major structural biopolymers (i.e., cellulose, hemicellulose, and lignin) in plant cell walls, lignin is considered the most recalcitrant component and generally plays a negative role in the biochemical conversion of biomass to biofuels. The conversion of biomass to biofuels through a biochemical platform usually requires a pretreatment stage to reduce the recalcitrance. Pretreatment renders compositional and structural changes of biomass with these changes ultimately governing the efficiency of the subsequent enzymatic hydrolysis. Dilute acid, hot water, steam explosion, and ammonia fiber expansion pretreatments are among the leading thermochemical pretreatments with a limited delignification that can reduce biomass recalcitrance. Practical applications of these pretreatment are rapidly developing as illustrated by recent commercial scale cellulosic ethanol plants. While these thermochemical pretreatments generally lead to only a limited delignification and no significant change of lignin content in the pretreated biomass, the lignin transformations that occur during these pretreatments and the roles they play in recalcitrance reduction are important research aspects. This review highlights recent advances in our understanding of lignin alterations during these limited delignification thermochemical pretreatments, with emphasis on lignin chemical structures, molecular weights, and redistributions in the pretreated biomass.
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页码:992 / 1003
页数:11
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