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影响生物质酶解消化率的结构特征。

Structural features affecting biomass enzymatic digestibility.

作者信息

Zhu Li, O'Dwyer Jonathan P, Chang Vincent S, Granda Cesar B, Holtzapple Mark T

机构信息

Department of Chemical Engineering, Texas A&M University, College Station, TX 77843, USA.

出版信息

Bioresour Technol. 2008 Jun;99(9):3817-28. doi: 10.1016/j.biortech.2007.07.033. Epub 2007 Sep 7.

Abstract

The rate and extent of enzymatic hydrolysis of lignocellulosic biomass highly depend on enzyme loadings, hydrolysis periods, and structural features resulting from pretreatments. Furthermore, the influence of one structural feature on biomass digestibility varies with the changes in enzyme loading, hydrolysis period and other structural features as well. In this paper, the effects of lignin content, acetyl content, and biomass crystallinity on the 1-, 6-, and 72-h digestibilities with various enzyme loadings were investigated. To eliminate the cross effects among structural features, selective pretreatment techniques were employed to vary one particular structural feature during a pretreatment, while the other two structural features remained unchanged. The digestibility results showed that lignin content and biomass crystallinity dominated digestibility whereas acetyl content had a lesser effect. Lignin removal greatly enhanced the ultimate hydrolysis extent. Crystallinity reduction, however, tremendously increased the initial hydrolysis rate and reduced the hydrolysis time or the amount of enzyme required to attain high digestibility. To some extent, the effects of structural features on digestibility were interrelated. At short hydrolysis periods, lignin content was not important to digestibility when crystallinity was low. Similarly, at long hydrolysis periods, crystallinity was not important to digestibility when lignin content was low.

摘要

木质纤维素生物质的酶促水解速率和程度高度依赖于酶负载量、水解时间以及预处理产生的结构特征。此外,一种结构特征对生物质消化率的影响也会随着酶负载量、水解时间和其他结构特征的变化而变化。本文研究了木质素含量、乙酰基含量和生物质结晶度对不同酶负载量下1小时、6小时和72小时消化率的影响。为了消除结构特征之间的交叉影响,采用了选择性预处理技术,在预处理过程中改变一个特定的结构特征,而其他两个结构特征保持不变。消化率结果表明,木质素含量和生物质结晶度主导消化率,而乙酰基含量的影响较小。去除木质素极大地提高了最终水解程度。然而,降低结晶度极大地提高了初始水解速率,并缩短了水解时间或降低了达到高消化率所需的酶量。在一定程度上,结构特征对消化率的影响是相互关联 的。在短水解时间内,当结晶度较低时,木质素含量对消化率并不重要。同样,在长水解时间内,当木质素含量较低时,结晶度对消化率也不重要。

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