通过混合优化策略加强高固玉米芯水解作用

IF 3.1 3区 工程技术 Q3 ENERGY & FUELS
Yafei Zhu, Kanghong Wang, Chaozhong Xu, Jia Ouyang, Xiaoli Gu
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引用次数: 0

摘要

为了提高高固体负荷下的纤维素水解效果,通常需要增加混合强度,但这会导致产品抑制作用增强。在这项工作中,研究了混合对高固体纤维素水解的影响。通过响应面优化实验,得出了在不同的产品抑制水平下,15%、25% 和 35% (w/v)纤维素水解的最佳混合强度。针对不同的固体浓度,开发了一种组合混合优化策略,旨在同时提高葡萄糖产量和微晶纤维素与玉米芯的转化率。优化后,微晶纤维素水解产生的葡萄糖浓度分别为 85 克/升、130 克/升和 167 克/升,最大转化率分别提高了 23%、13% 和 8.6%。同样,玉米芯水解产生的葡萄糖浓度分别为 81 克/升、124.6 克/升和 140 克/升,最大转化率分别提高了 4%、5% 和 13%。这些结果表明,优化策略可有效提高纤维素高固酶水解的转化率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Enhancing High-Solid Corn Cob Hydrolysis via Mixing Optimization Strategies

Enhancing High-Solid Corn Cob Hydrolysis via Mixing Optimization Strategies

To enhance cellulose hydrolysis under high solid loadings, increasing the mixing intensity is often necessary, but this can lead to heightened product inhibition. In this work, the effect of mixing on high-solid cellulose hydrolysis was investigated. Through response surface optimization experiments, the optimal mixing intensities for 15%, 25%, and 35% (w/v) cellulose hydrolysis were obtained under different levels of product inhibition. A combined mixing optimization strategy was developed for different solid concentrations, aiming to enhance both the glucose yield and the conversion rate of microcrystalline cellulose and corn cobs. After optimization, the hydrolysis of microcrystalline cellulose resulted in glucose concentrations of 85 g/L, 130 g/L, and 167 g/L, corresponding to maximal conversion enhancements of 23%, 13%, and 8.6%, respectively. Similarly, the hydrolysis of corn cobs achieved glucose concentrations of 81 g/L, 124.6 g/L, and 140 g/L, with maximal conversion improvements of 4%, 5%, and 13%. These results indicate that the optimized strategy can effectively improve the conversion rate of high-solid enzymatic hydrolysis of cellulose.

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来源期刊
BioEnergy Research
BioEnergy Research ENERGY & FUELS-ENVIRONMENTAL SCIENCES
CiteScore
6.70
自引率
8.30%
发文量
174
审稿时长
3 months
期刊介绍: BioEnergy Research fills a void in the rapidly growing area of feedstock biology research related to biomass, biofuels, and bioenergy. The journal publishes a wide range of articles, including peer-reviewed scientific research, reviews, perspectives and commentary, industry news, and government policy updates. Its coverage brings together a uniquely broad combination of disciplines with a common focus on feedstock biology and science, related to biomass, biofeedstock, and bioenergy production.
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