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Dynamics of microbial community in a mesophilic anaerobic digester treating food waste: Relationship between community structure and process stability

机译:中温厌氧消化池中食物垃圾的微生物群落动态:群落结构与过程稳定性之间的关系

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Organic loading rate (OLR) disturbances were introduced into a mesophilic anaerobic digester treating food waste (FW) to induce stable and deteriorative phases. The microbial community of each phase was investigated using 454-pyrosequencing. Results show that the relative abundance of acid-producing bacteria and syntrophic volatile fatty acid (VFA) oxidizers increased dramatically at deteriorative phase, while the dominant methanogens did not shift from acetoclastic to hydrogenotrophic groups. The mismatching between bacteria and methanogens may partially be responsible for the process deterioration. Moreover, the succession of predominant hydrogenotrophic methanogens reduced the consumption efficiency of hydrogen; meanwhile, the dominant Methanosaeta with low acetate degradation rate, and the increase of inhibitors concentrations further decreased its activity, which may be the other causes for the process failure. These results improve the understanding of the microbial mechanisms of process instability, and provide theoretical basis for the efficient and stable operation of anaerobic digester treating FW. (C) 2015 Elsevier Ltd. All rights reserved.
机译:将有机负荷率(OLR)干扰引入到处理食物垃圾(FW)的中温厌氧消化池中,以诱导稳定阶段和恶化阶段。使用454-焦磷酸测序对每个阶段的微生物群落进行了研究。结果表明,在退化期,产酸细菌和营养性挥发性脂肪酸(VFA)氧化剂的相对丰度显着增加,而占优势的产甲烷菌并没有从乙酰碎屑转变为氢营养型。细菌和产甲烷菌之间的不匹配可能部分导致过程恶化。此外,主要的氢营养型产甲烷菌的继发降低了氢的消耗效率;同时,占优势的甲烷菌属具有较低的乙酸盐降解速率,并且抑制剂浓度的增加进一步降低了其活性,这可能是造成工艺失败的另一个原因。这些结果增进了人们对过程不稳定性微生物机理的理解,并为厌氧消化池处理FW的高效稳定运行提供了理论依据。 (C)2015 Elsevier Ltd.保留所有权利。

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