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玉米秸秆中马来酸催化半纤维素水解的动力学建模分析

Kinetic modeling analysis of maleic acid-catalyzed hemicellulose hydrolysis in corn stover.

作者信息

Lu Yulin, Mosier Nathan S

机构信息

Agricultural and Biological Engineering, Laboratory of Renewable Resources Engineering, Purdue University, West Lafayette, Indiana 47907, USA.

出版信息

Biotechnol Bioeng. 2008 Dec 15;101(6):1170-81. doi: 10.1002/bit.22008.

Abstract

Maleic acid-catalyzed hemicellulose hydrolysis reaction in corn stover was analyzed by kinetic modeling. Kinetic constants for Saeman and biphasic hydrolysis models were analyzed by an Arrhenius-type expansion which include activation energy and catalyst concentration factors. The activation energy for hemicellulose hydrolysis by maleic acid was determined to be 83.3 +/- 10.3 kJ/mol, which is significantly lower than the reported E(a) values for sulfuric acid catalyzed hemicellulose hydrolysis reaction. Model analysis suggest that increasing maleic acid concentrations from 0.05 to 0.2 M facilitate improvement in xylose yields from 40% to 85%, while the extent of improvement flattens to near-quantitative by increasing catalyst loading from 0.2 to 1 M. The model was confirmed for the hydrolysis of corn stover at 1 M maleic acid concentrations at 150 degrees C, resulting in a xylose yield of 96% of theoretical. The refined Saeman model was used to evaluate the optimal condition for monomeric xylose yield in the maleic acid-catalyzed reaction: low temperature reaction conditions were suggested, however, experimental results indicated that bi-phasic behavior dominated at low temperatures, which may be due to the insufficient removal of acetyl groups. A combination of experimental data and model analysis suggests that around 80-90% xylose yields can be achieved at reaction temperatures between 100 and 150 degrees C with 0.2 M maleic acid.

摘要

通过动力学模型分析了玉米秸秆中马来酸催化的半纤维素水解反应。通过包括活化能和催化剂浓度因子的Arrhenius型展开式分析了塞曼(Saeman)水解模型和双相水解模型的动力学常数。马来酸催化半纤维素水解的活化能测定为83.3±10.3 kJ/mol,这明显低于报道的硫酸催化半纤维素水解反应的活化能(E(a))值。模型分析表明,将马来酸浓度从0.05 M提高到0.2 M可使木糖产率从40%提高到85%,而通过将催化剂负载量从0.2 M增加到1 M,提高程度趋于稳定,接近定量产率。该模型在150℃、1 M马来酸浓度下对玉米秸秆水解进行了验证,木糖产率达到理论值的96%。采用改进的塞曼模型评估了马来酸催化反应中单体木糖产率的最佳条件:建议采用低温反应条件,然而,实验结果表明低温下双相行为占主导,这可能是由于乙酰基去除不充分所致。实验数据和模型分析相结合表明,在100至150℃、0.2 M马来酸条件下,木糖产率可达到80 - 90%左右。

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