Literature DB >> 25082660

Effect of liquid hot water pretreatment severity on properties of hardwood lignin and enzymatic hydrolysis of cellulose.

Ja Kyong Ko1, Youngmi Kim, Eduardo Ximenes, Michael R Ladisch.   

Abstract

Lignin, one of the major components of lignocellulosic biomass, plays an inhibitory role on the enzymatic hydrolysis of cellulose. This work examines the role of lignin in pretreated hardwood, where extents of cellulose hydrolysis decrease, rather than increase with increasing severity of liquid hot water pretreatment. Hardwood pretreated with liquid hot water at severities ranging from log Ro  = 8.25 to 12.51 resulted in 80-90% recovery of the initial lignin in the residual solids. The ratio of acid insoluble lignin (AIL) to acid soluble lignin (ASL) increased and the formation of spherical lignin droplets on the cell wall surface was observed as previously reported in the literature. When lignins were isolated from hardwoods pretreated at increasing severities and characterized based on glass transition temperature (Tg ), the Tg of isolated lignins was found to increase from 171 to 180°C as the severity increased from log Ro  = 10.44 to 12.51. The increase in Tg suggested that the condensation reactions of lignin molecules occurred during pretreatment and altered the lignin structure. The contribution of the changes in lignin properties to enzymatic hydrolysis were examined by carrying out Avicel hydrolysis in the presence of isolated lignins. Lignins derived from more severely pretreated hardwoods had higher Tg values and showed more pronounced inhibition of enzymatic hydrolysis.
© 2014 Wiley Periodicals, Inc.

Entities:  

Keywords:  AIL/ASL ratio; hardwood; lignin; lignin glass transition temperature; liquid hot water pretreatment; severity

Mesh:

Substances:

Year:  2014        PMID: 25082660     DOI: 10.1002/bit.25349

Source DB:  PubMed          Journal:  Biotechnol Bioeng        ISSN: 0006-3592            Impact factor:   4.530


  31 in total

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2.  Evaluating polymer interplay after hot water pretreatment to investigate maize stem internode recalcitrance.

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3.  Effect of lignin-blocking agent on enzyme hydrolysis of acid pretreated hemp waste.

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Journal:  RSC Adv       Date:  2021-06-22       Impact factor: 4.036

4.  Adsorption and mechanism of cellulase enzymes onto lignin isolated from corn stover pretreated with liquid hot water.

Authors:  Xianqin Lu; Xiaoju Zheng; Xuezhi Li; Jian Zhao
Journal:  Biotechnol Biofuels       Date:  2016-06-03       Impact factor: 6.040

5.  Investigation of the binding properties of a multi-modular GH45 cellulase using bioinspired model assemblies.

Authors:  Monica Fong; Jean-Guy Berrin; Gabriel Paës
Journal:  Biotechnol Biofuels       Date:  2016-01-19       Impact factor: 6.040

6.  Effective alkaline metal-catalyzed oxidative delignification of hybrid poplar.

Authors:  Aditya Bhalla; Namita Bansal; Ryan J Stoklosa; Mackenzie Fountain; John Ralph; David B Hodge; Eric L Hegg
Journal:  Biotechnol Biofuels       Date:  2016-02-09       Impact factor: 6.040

7.  Organosolv pretreatment assisted by carbocation scavenger to mitigate surface barrier effect of lignin for improving biomass saccharification and utilization.

Authors:  Qiulu Chu; Wenyao Tong; Jianqiang Chen; Shufang Wu; Yongcan Jin; Jinguang Hu; Kai Song
Journal:  Biotechnol Biofuels       Date:  2021-06-12       Impact factor: 6.040

8.  Inhibition of lignin-derived phenolic compounds to cellulase.

Authors:  Lei Qin; Wen-Chao Li; Li Liu; Jia-Qing Zhu; Xia Li; Bing-Zhi Li; Ying-Jin Yuan
Journal:  Biotechnol Biofuels       Date:  2016-03-22       Impact factor: 6.040

9.  Adaptor Scaffoldins: An Original Strategy for Extended Designer Cellulosomes, Inspired from Nature.

Authors:  Johanna Stern; Sarah Moraïs; Raphael Lamed; Edward A Bayer
Journal:  MBio       Date:  2016-04-05       Impact factor: 7.867

10.  Structural Changes of Lignin after Liquid Hot Water Pretreatment and Its Effect on the Enzymatic Hydrolysis.

Authors:  Wen Wang; Xinshu Zhuang; Zhenhong Yuan; Wei Qi; Qiang Yu; Qiong Wang
Journal:  Biomed Res Int       Date:  2016-08-03       Impact factor: 3.411

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