首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Microbial community structure in a thermophilic aerobic digester used as a sludge pretreatment process for the mesophilic anaerobic digestion and the enhancement of methane production
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Microbial community structure in a thermophilic aerobic digester used as a sludge pretreatment process for the mesophilic anaerobic digestion and the enhancement of methane production

机译:嗜温好氧消化池中的微生物群落结构,用作污泥的预处理过程,用于中温厌氧消化和提高甲烷的产生

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摘要

An effective two-stage sewage sludge digestion process, consisting of thermophilic aerobic digestion (TAD) followed by mesophilic anaerobic digestion (MAD), was developed for efficient sludge reduction and methane production. Using TAD as a biological pretreatment, the total volatile suspended solid reduction (VSSR) and methane production rate (MPR) in the MAD reactor were significantly improved. According to denaturing gradient gel electrophoresis (DGGE) analysis, the results indicated that the dominant bacteria species such as Ureibacillus thermophiles and Bacterium thermus in TAD were major routes for enhancing soluble organic matter. TAD pretreatment using a relatively short SRT of 1. day showed highly increased soluble organic products and positively affected an increment of bacteria populations which performed interrelated microbial metabolisms with methanogenic species in the MAD; consequently, a quantitative real-time PCR indicated greatly increased Methanosarcinales (acetate-utilizing methanogens) in the MAD, resulting in enhanced methane production.
机译:开发了一种有效的两阶段污水污泥消化工艺,包括高温好氧消化(TAD)和中温厌氧消化(MAD),以有效减少污泥和产生甲烷。使用TAD作为生物预处理,可以显着提高MAD反应器中的总挥发性悬浮固体还原量(VSSR)和甲烷产生速率(MPR)。通过变性梯度凝胶电泳(DGGE)分析,结果表明TAD中的嗜热尿杆菌和嗜热细菌等优势细菌是增强可溶性有机物的主要途径。使用相对较短的SRT一天进行的TAD预处理显示出可溶性有机产物的高度增加,并积极影响了细菌种群的增加,这些细菌与MAD中的产甲烷菌种进行了相关的微生物代谢;因此,定量实时PCR表明MAD中的甲烷八叠膜(利用乙酸的产甲烷菌)大大增加,从而提高了甲烷的产生。

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