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异位发酵系统中的发酵性能优化。

Fermentation performance optimization in an ectopic fermentation system.

机构信息

College of Biological Sciences and Technology, Beijing Forestry University, Beijing, China.

Institute of Environment and Sustainable Development in Agriculture, Chinese Academy of Agricultural Sciences, Beijing, China.

出版信息

Bioresour Technol. 2018 Jul;260:329-337. doi: 10.1016/j.biortech.2018.03.101. Epub 2018 Mar 30.

Abstract

Ectopic fermentation systems (EFSs) were developed for wastewater treatment. Previous studies have investigated the ability of thermophilic bacteria to improve fermentation performance in EFS. Continuing this research, we evaluated EFS performance using principle component analysis and investigated the addition of different proportions of cow dung. Viable bacteria communities were clustered and identified using BOX-AIR-based repetitive extragenic palindromic-PCR and 16S rDNA analysis. The results revealed optimal conditions for the padding were maize straw inoculated with thermophilic bacteria. Adding 20% cow dung yielded the best pH values (6.94-8.56), higher temperatures, increased wastewater absorption, improved litter quality, and greater microbial quantities. The viable bacteria groups were enriched by the addition of thermophilic consortium, and exogenous strains G21, G14, G4-1, and CR-15 were detected in fermentation process. The proportion of Bacillus species in treatment groups reached 70.37% after fermentation, demonstrating that thermophilic bacteria, especially Bacillus, have an important role in EFS, supporting previous predictions.

摘要

异位发酵系统(EFS)被开发用于处理废水。先前的研究已经探讨了嗜热细菌提高 EFS 发酵性能的能力。在此基础上,我们使用主成分分析评估了 EFS 的性能,并研究了添加不同比例牛粪的效果。使用 BOX-AIR 基重复扩展回文 PCR 和 16S rDNA 分析对可培养细菌群落进行聚类和鉴定。结果表明,用嗜热菌接种玉米秸秆是最佳的垫料条件。添加 20%的牛粪可获得最佳的 pH 值(6.94-8.56)、更高的温度、增加废水吸收率、改善垫料质量和增加微生物数量。添加嗜热菌联合体富集了可培养细菌群落,并且在发酵过程中检测到了外源菌株 G21、G14、G4-1 和 CR-15。发酵后处理组中芽孢杆菌属的比例达到 70.37%,表明嗜热菌,特别是芽孢杆菌,在 EFS 中具有重要作用,这与先前的预测一致。

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