Increase in enzyme accessibility by generation of nanospace in cell wall supramolecular structure

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초록

An energy efficient nanofibrillation method that combines disk milling and mild hot-compressed water (HCW) treatment was developed to improve enzymatic accessibility of Eucalyptus wood. In this method, the residual product of HCW treatment was fibrillated by disk milling under wet conditions. Relatively moderate HCW treatment conditions (temperature below 180 degrees C and reaction time of 30 min) were adopted, and the amount of water used was only five times that of wood. These conditions were sufficient for the partial removal of hemicellulose and lignin from cell wall supramolecular structure to create nanospace between cellulose microfibrils. This morphological characteristic effectively improved nanofibrillation by disk milling. The fibrillated products with a size of less than 20 nm can be obtained after very short milling time, and this process drastically improved the enzymatic saccharification yield. The energy consumption was much lower than that of other mechanical methods for size reduction to give the same monosaccharide-recovery yield. (C) 2010 Elsevier Ltd. All rights reserved.

키워드

Hot-compressed waterNanofibrillationEnzymatic saccharificationDisk millingEnergy efficiencyNEAR-CRITICAL WATERSULFURIC-ACIDSTEAM EXPLOSIONPRETREATMENTHYDROLYSISBIOMASSCELLULOSEDECOMPOSITIONFERMENTATIONFEATURES
제목
Increase in enzyme accessibility by generation of nanospace in cell wall supramolecular structure
저자
Lee, Seung-HwanChang, FuxiangInoue, SeiichiEndo, Takashi
DOI
10.1016/j.biortech.2010.04.069
발행일
2010-10
유형
Article
저널명
Bioresource Technology
101
19
페이지
7218 ~ 7223