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探讨控制大规模 A2O 工艺中占优势的丝状菌种群 Kouleothrix(1851 型)的运行因素。

Exploring the operating factors controlling Kouleothrix (type 1851), the dominant filamentous bacterial population, in a full-scale A2O plant.

机构信息

Division of Materials Science and Chemical Engineering, Faculty of Engineering, Yokohama National University, 79-5 Tokiwadai, Hodogaya-ku, Yokohama, 240-8501, Japan.

Department of Chemistry, Chemical Engineering and Life Science, College of Engineering Science, Yokohama National University, 79-5 Tokiwadai, Hodogaya-ku, Yokohama, 240-8501, Japan.

出版信息

Sci Rep. 2020 Apr 22;10(1):6809. doi: 10.1038/s41598-020-63534-2.

Abstract

This study reveals that the abundance of the filament Kouleothrix (Eikelboom type 1851) correlated positively with poor settleability of activated sludge biomass in a Japanese full-scale nutrient removal wastewater treatment plant sampled over a one-year period. 16S rRNA amplicon sequence data confirmed that Kouleothrix was the dominant filament in the plant, with a relative abundance of 3.06% positively correlated with sludge volume index (SVI) (R = 0.691). Moreover, Kouleothrix (type 1851) appeared to form interfloc bridges, typical of bulking sludge, regardless of season. Together with earlier studies that indicated the responsibility of Kouleothrix (type 1851) on bulking events, these data suggest that their high relative abundances alone may be responsible for sludge bulking. 16S rRNA qPCR data for this filament showed changes in its relative abundance correlated with changes in several operational parameters, including mixed liquor temperature, sludge retention time, and suspended solids concentration, and it may be that manipulating these may help control Kouleothrix bulking.

摘要

本研究表明,在日本一个为期一年的全规模营养去除废水处理厂中,丝状菌 Kouleothrix(Eikelboom 型 1851)的丰度与活性污泥生物量的沉降性能差呈正相关。16S rRNA 扩增子序列数据证实,Kouleothrix 是该厂中的优势丝状菌,相对丰度为 3.06%,与污泥体积指数(SVI)呈正相关(R=0.691)。此外,Kouleothrix(1851 型)似乎形成了絮体之间的桥联,这是膨胀污泥的典型特征,与季节无关。结合早期研究表明,Kouleothrix(1851 型)对膨胀事件负有责任,这些数据表明,仅它们的高相对丰度就可能导致污泥膨胀。该丝状菌的 16S rRNA qPCR 数据表明,其相对丰度的变化与几个操作参数的变化相关,包括混合液温度、污泥停留时间和悬浮固体浓度,因此,可能需要通过操纵这些参数来帮助控制 Kouleothrix 膨胀。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2735/7176654/18e9aa17bc37/41598_2020_63534_Fig1_HTML.jpg

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