Guo Hui, Zhu Changxiong, Geng Bing, Liu Xue, Ye Jing, Tian Yunlong, Peng Xiawei
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.
Bioresour Technol. 2015 Dec;198:867-75. doi: 10.1016/j.biortech.2015.09.105. Epub 2015 Oct 9.
Previous research showed that ectopic fermentation system (EFS) inoculated with thermophilic bacteria is an excellent alternative for cow wastewater treatment. In this study, the effects of thermophilic bacterial consortium on the efficiency and quality of the fermentation process in EFS were evaluated by measuring physicochemical and environmental factors and the changes in organic matter composition. In parallel, the microbial communities correlated with fermentation performance were identified. Inoculation of EFS with thermophilic bacterial consortium led to higher temperatures, increased wastewater requirements for continuous fermentation, and improved quality of the litters in terms of physicochemical factors, security test, functional group analysis, and bacterial community composition. The relationship between the transformation of organic component and the dominant bacteria species indicated that environmental factors contributed to strain growth, which subsequently promoted the fermentation process. The results highlight the great potential of EFS model for wide application in cow wastewater treatment and re-utilization as bio-fertilizer.
先前的研究表明,接种嗜热细菌的异位发酵系统(EFS)是处理奶牛废水的一种极佳替代方案。在本研究中,通过测量物理化学和环境因素以及有机物组成的变化,评估了嗜热细菌群落对EFS中发酵过程的效率和质量的影响。同时,确定了与发酵性能相关的微生物群落。用嗜热细菌群落接种EFS导致温度升高、连续发酵所需废水增加,并且在物理化学因素、安全性测试、官能团分析和细菌群落组成方面改善了垫料质量。有机成分的转化与优势细菌种类之间的关系表明,环境因素有助于菌株生长,进而促进发酵过程。结果突出了EFS模型在奶牛废水处理及作为生物肥料再利用方面广泛应用的巨大潜力。