优化混合微生物对玉米秸秆的预处理以提高甲烷产量

IF 1.3 4区 农林科学 Q2 MATERIALS SCIENCE, PAPER & WOOD Bioresources Pub Date : 2024-07-20 DOI:10.15376/biores.19.3.6247-6263
Shilin Yang, Yixiang Qin, Panpan Li, Chao He, Pengfei Li, Tingting Hou, Gang Li, Guizhuan Xu, Youzhou Jiao
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引用次数: 0

摘要

为了有效利用秸秆生物质资源,采用混合微生物对玉米秸秆进行预处理,并进行厌氧发酵。研究了秸秆粒度、固液比和初始 pH 值对预处理过程和厌氧发酵的影响。在单因素实验的基础上,采用响应面法对预处理条件进行了优化。预处理温度为 30 °C,持续时间为 15 天。结果表明,预处理过程的最佳参数如下:秸秆粒度为 20 目,固液比为 1:17,初始 pH 值为 6.5。在这些条件下,预测的累积甲烷产量为 3740 mL,而实验结果为 (3805 ± 67) mL。预测值与实验值的相对偏差为 1.68%,该模型优化了预处理条件,提高了对累积甲烷产量的预测。玉米秸秆的甲烷产量达到了 243 mL/(g-VSadded)。
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Optimization of mixed microbes pretreatment on corn straw for enhancing methane production
In order to efficiently utilize straw biomass resources, the mixed microbes were used to pretreat corn straw and anaerobic fermentation was carried out. The effects of the straw particle size, the solid-liquid ratio, and the initial pH value on both the pretreatment process and the anaerobic digestion were investigated. On the basis of single factor experiments, the pretreatment conditions were optimized using the response surface method. The pretreatment was conducted at a temperature of 30 °C for a duration of 15 days. The results indicated that the optimal parameters in pretreatment process were as follows: a straw particle size of 20 mesh, a solid-liquid ratio of 1:17, and an initial pH value of 6.5. The predicted cumulative methane production under these conditions was 3740 mL, while the experimental result obtained was (3805 ± 67) mL. With a relative deviation of 1.68% between the predicted and experimental values, the model optimized the pretreatment conditions and improved the prediction of cumulative methane production. The methane yield of corn straw achieved 243 mL/(g-VSadded).
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来源期刊
Bioresources
Bioresources 工程技术-材料科学:纸与木材
CiteScore
2.90
自引率
13.30%
发文量
397
审稿时长
2.3 months
期刊介绍: The purpose of BioResources is to promote scientific discourse and to foster scientific developments related to sustainable manufacture involving lignocellulosic or woody biomass resources, including wood and agricultural residues. BioResources will focus on advances in science and technology. Emphasis will be placed on bioproducts, bioenergy, papermaking technology, wood products, new manufacturing materials, composite structures, and chemicals derived from lignocellulosic biomass.
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