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反硝化除磷污泥的富集培养及其微生物群落分析

Enrichment culture of denitrifying phosphorus removal sludge and its microbial community analysis.

作者信息

Dai Hongliang, Lu Xiwu, Peng Lihong, Li Xiang, Dai Zheqin

机构信息

a School of Energy and Environment , Southeast University , Nanjing , China.

b ERC Taihu Lake Water Environment (Wuxi) , Wuxi , China.

出版信息

Environ Technol. 2017 Nov;38(22):2800-2810. doi: 10.1080/09593330.2016.1278276. Epub 2017 Jan 17.

Abstract

An efficient one-step domestication method with mixed electron acceptors and short-time post-aeration was developed for the enrichment culture of denitrifying phosphorus removal sludge. The acclimation time, performance of nitrogen and phosphorus simultaneous removal and microbial community structure were investigated to reveal the difference among the obtained phosphorus removal sludge using different acclimation ways. Results showed that the proposed method with optimal proportion of nitrite and nitrate could significantly shorten domestication time (28 days) compared with the traditional two-step method (60 days), but exerted nearly no influence on the removal efficiency of nitrogen and phosphorus. High-throughput sequencing revealed that similar microbial community structure of DPAOs sludge was obtained with different acclimation methods. Compared with seed sludge, microbial community shifted obviously, and the dominant microbial population of Dechloromonas-related phosphorus removal bacteria increased significantly. It could be inferred that the appropriate concentration of nitrite was conducive to the rapid enrichment of DPAOs under alternative anaerobic/anoxic operation. Meanwhile, anaerobic/oxic condition was favorable for the enrichment of Candidatus Accumulibacter-related phosphorus removal organisms, and short-time post-aeration in the proposed method could reduce the potential public health hazard.

摘要

开发了一种高效的一步驯化方法,该方法采用混合电子受体并进行短时间后曝气,用于反硝化除磷污泥的富集培养。研究了驯化时间、氮磷同步去除性能和微生物群落结构,以揭示采用不同驯化方式获得的除磷污泥之间的差异。结果表明,与传统的两步法(60天)相比,所提出的亚硝酸盐和硝酸盐比例最佳的方法可显著缩短驯化时间(28天),但对氮磷去除效率几乎没有影响。高通量测序表明,不同驯化方法获得的聚磷菌污泥具有相似的微生物群落结构。与接种污泥相比,微生物群落明显发生变化,与脱氯单胞菌相关的除磷细菌的优势微生物种群显著增加。可以推断,适当浓度的亚硝酸盐有利于在交替厌氧/缺氧运行条件下聚磷菌的快速富集。同时,厌氧/好氧条件有利于与“聚磷菌属”相关的除磷微生物的富集,所提出方法中的短时间后曝气可降低潜在的公共卫生危害。

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