combined mechanical destruction and alkaline pretreatment of wheat straw for enhanced enzymatic saccharification

combined mechanical destruction and alkaline pretreatment of wheat straw for enhanced enzymatic saccharification

;Qianqian Wang;Qianqian Zhu;Jiaxing Xu;Jianzhong Sun
medical archives (sarajevo, bosnia and herzegovina) 2014 Vol. 9 pp. 6841-6850
209
wang2014bioresourcescombined

Abstract

Wheat straw was pretreated by combined mechanical destruction and alkaline pretreatments to enhance enzymatic saccharification. Four strategies were employed to evaluate the potential of wheat straw as a feedstock for fermentable sugar production. The effects of the pretreatments on the substrate morphology, size distribution, chemical composition, and cellulose crystallinity, along with the subsequent enzymatic digestibility, were investigated. Optical microscope images showed that mechanical pretreatment alone resulted in poor fiber defibrillation, wherein samples mostly consisted of rigid fiber bundles, while integrated mechanical destruction and alkaline pretreatment led to relatively good fiber defibrillation. Low temperature NaOH/urea pretreatment can fibrillate the rigid fiber bundles into a relatively loose network and alter the structure of the treated substrate to make cellulose more accessible. The glucan conversion rates were 77% and 95% for integrated mechanical destruction and alkaline pretreatments and mechanical destruction followed by low temperature NaOH/urea and ammonium/urea pretreatments, respectively, after 72 h of enzymatic hydrolysis with enzyme loadings of 10 FPU cellulase per g of oven-dry substrate.

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ID: 131508
Ref Key: wang2014bioresourcescombined
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0x95644003c57E6F55A65596E3D9Eac6813e3566dA
Article ID:
131508
Unique Identifier:
10.15376/biores.9.4.6841-6850
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Scimatic Chain (ID: 481)
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