首页> 外文期刊>Canadian journal of microbiology >Microbial community in anoxic-oxic-settling-anaerobic sludge reduction process revealed by 454 pyrosequencing analysis
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Microbial community in anoxic-oxic-settling-anaerobic sludge reduction process revealed by 454 pyrosequencing analysis

机译:454焦磷酸测序分析揭示了厌氧-氧化-沉降-厌氧污泥还原过程中的微生物群落

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Modification of the anoxic-oxic (AO) process by inserting a sludge holding tank (SHT) into the sludge return line forms an anoxic-oxic-settling-anaerobic (A+OSA) process that can achieve a 48.98% sludge reduction rate. The 454 pyrosequencing method was used to obtain the microbial communities of the AO and A+OSA processes. Results showed that the microbial community structures of the 2 processes were different as a result of the SHT insertion. Bacteria assigned to the phyla Proteobacteria and Bacteroidetes commonly existed and dominated the microbial populations of the 2 processes. However, the relative abundance of these populations shifted in the presence of SHT. The relative abundance of Proteobacteria decreased during the A+OSA process. A specific comparison at the class level showed that Sphingobacteria was enriched in the A+OSA process. The result suggested that the fermentative bacteria Sphingobacteria may have key functions in reducing the sludge from the A+OSA process. Uncultured Nitrosomonadaceae gradually became the dominant ammonia-oxidizing bacteria, and the nitrite-oxidizing bacterium Nitrospira was enriched in the A+OSA process. Both occurrences were favorable for stabilized nitrogen removal. The known denitrifying species in the A+OSA process were similar to those in the AO process; however, their relative abundance also decreased.
机译:通过将污泥容纳罐(SHT)插入污泥返回管线来修改缺氧-缺氧(AO)工艺,形成可以实现48.98%的污泥减量率的缺氧-缺氧-沉降-厌氧(A + OSA)工艺。 454焦磷酸测序法用于获得AO和A + OSA过程的微生物群落。结果表明,由于SHT的插入,这两个过程的微生物群落结构不同。属于菌群属细菌的细菌和拟杆菌属细菌普遍存在,并主导了这两个过程的微生物种群。但是,这些种群的相对丰度在存在SHT的情况下发生了变化。在A + OSA过程中,变形杆菌的相对丰度降低。在班级的具体比较显示,鞘氨醇杆菌在A + OSA过程中富集。结果表明,发酵菌鞘氨醇菌可能在减少A + OSA过程中产生的污泥中起关键作用。未培养的亚硝酸盐杆菌逐渐成为占主导地位的氨氧化细菌,亚硝酸盐氧化细菌硝化螺旋藻在A + OSA过程中富集。两种情况都有利于稳定的脱氮。 A + OSA过程中已知的反硝化物种与AO过程中的相似。但是,它们的相对丰度也下降了。

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