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Do microbial communities in an anaerobic bioreactor change with continuous feeding sludge into a full-scale anaerobic digestion system?

机译:在厌氧生物反应器中进行微生物群落,用连续喂养污泥变成全规模的厌氧消化系统吗?

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摘要

Microbial communities of sludge samples from a full-scale anaerobic digestion (AD) fed with primary sludge (PS) and excess sludge (ES) were analyzed using qPCR and MiSeq. The results showed that the microbial composition of digested sludge remained relatively stable but was partially changed by microbial immigration from feeding sludge. The dominant archaea in the digested sludge were largely the same as those in the feeding sludge, but their abundances differed markedly. The dominant fungal genera in the digested sludge were different from those in PS but were similar to those in ES. Various differences in bacterial community differences between digested sludge and PS/ES were observed. Notably, this study is the first to suggest Verrucomicrobia is the predominant bacterial phylum in the digested sludge, and that numerous unreported microorganisms belonging to the order LD1-PB3 existed in this AD system and potentially played roles in the processes of hydrolysis, fermentation, and acetogenesis.
机译:使用QPCR和Miseq分析喂入初级污泥(PS)和过量污泥(ES)的全规模厌氧消化(AD)的微生物群落。结果表明,消化污泥的微生物组合物保持相对稳定,但通过来自饲喂污泥的微生物移民部分改变。消化污泥中的主要古亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚亚茶叶与饲养污泥中的污泥相同,但它们的丰富明显不同。消化污泥中的显性真菌属性与PS中的显性真菌属不同,但与ES中的污泥相似。观察到消化污泥和PS / ES之间的细菌群落差异的各种差异。值得注意的是,本研究是第一个提出疣状病症是消化污泥中主要的细菌门,并且在该AD系统中存在的许多未报告的微生物属于LD1-PB3的顺序,并且在水解,发酵过程中可能发挥作用。丙酮化酶。

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