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从玉米秸秆中同步糖化发酵生产氢气的统计优化。

Statistical optimization of simultaneous saccharification fermentative hydrogen production from corn stover.

机构信息

Key Laboratory of New Materials and Facilities for Rural Renewable Energy Ministry of Agriculture, Henan Agricultural University, Zhengzhou, China.

出版信息

Bioengineered. 2020 Dec;11(1):428-438. doi: 10.1080/21655979.2020.1739405.

Abstract

Corn stovers are rich in carbohydrates and can be used by anaerobic bacteria to produce hydrogen by fermentation. In the present study, using hydrogen production as the main experimental index, the effect of different influential factors on hydrogen production from corn stover saccharification and fermentation was studied, using the response surface method BBD model. The significance of interactions between different influential factors on hydrogen production by simultaneous saccharification and fermentation of corn stover material were investigated and optimized. Results showed that there were several factors affecting simultaneous saccharification fermentative hydrogen production from corn stover, including substrate concentration, inoculation amount, pH value and enzyme concentration. In linear terms, substrate concentration had the greatest influence on hydrogen production by anaerobic simultaneous saccharification and fermentation. In terms of multi-factor interactions, the interaction between pH and enzyme concentration was the most significant. The optimal hydrogen production conditions established from the BBD model were as follows: substrate concentration of 25 mg/mL, inoculation amount proportion of 32.62%, initial pH value of 6.50 and enzyme concentration of 172.08 mg/g, resulting in the maximum hydrogen production of 55.29 mL/g TS. The actual maximum hydrogen production reached 56.66 mL/g TS, with these experimental results consistent with the predicted value established from equation fitting. This study provides a reference for hydrogen production by anaerobic synchronous saccharification fermentation using corn stover as substrate and lays a foundation and provides technical support for the industrialization of biological hydrogen production using corn stover as substrate.

摘要

玉米秸秆富含碳水化合物,可被厌氧菌通过发酵来生产氢气。在本研究中,以产氢为主要实验指标,采用响应面法 BBD 模型,研究了不同影响因素对玉米秸秆糖化发酵产氢的影响。考察并优化了不同影响因素对玉米秸秆同步糖化发酵产氢的交互作用。结果表明,有几个因素会影响玉米秸秆的同步糖化发酵产氢,包括底物浓度、接种量、pH 值和酶浓度。在直线项中,底物浓度对厌氧同步糖化发酵产氢的影响最大。在多因素交互作用方面,pH 值和酶浓度的交互作用最为显著。从 BBD 模型中建立的最佳产氢条件如下:底物浓度为 25 mg/mL,接种量比例为 32.62%,初始 pH 值为 6.50,酶浓度为 172.08 mg/g,最大产氢量为 55.29 mL/gTS。实际最大产氢量达到 56.66 mL/gTS,实验结果与方程拟合建立的预测值一致。本研究为以玉米秸秆为底物的厌氧同步糖化发酵产氢提供了参考,为以玉米秸秆为底物的生物制氢产业化奠定了基础并提供了技术支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba17/7161564/11417f847890/kbie-11-01-1739405-g002.jpg

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