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通过氮补充来管理工业活性污泥中糖原积累生物体的过度增殖:一种 FISH-NanoSIMS 方法。

Managing the excessive proliferation of glycogen accumulating organisms in industrial activated sludge by nitrogen supplementation: A FISH-NanoSIMS approach.

机构信息

Department of Wine & Food Science, University of Adelaide, Australia.

Centre for Microscopy, Characterisation and Analysis, University of Western Australia, Australia.

出版信息

Syst Appl Microbiol. 2017 Dec;40(8):500-507. doi: 10.1016/j.syapm.2017.07.006. Epub 2017 Oct 2.

Abstract

Defluviicoccus vanus-related glycogen accumulating organisms (GAO) regularly proliferate in industrial wastewater treatment plants handling high carbon but nitrogen deficient wastes. When GAO dominate, they are associated with poor performance, characterised by slow settling biomass and turbid effluents. Although their ecophysiology has been studied thoroughly in domestic waste treatment plants, little attention has been paid to them in aerobic industrial systems. In this study, the effect of nitrogen addition on GAO carbon metabolism was investigated during an 8h cycle. Activated sludge dominated by GAO from a winery wastewater sequencing batch reactor was incubated under different carbon to nitrogen (COD:N) ratios (100:1, 60:1 and 20:1) using C - acetate and N - urea. GAO cell assimilation was quantified using FISH-NanoSIMS. The activated sludge community was assessed by 16S rRNA gene profiling, DNA and storage polymer production. Carbon and nitrogen quantification at the cellular level by NanoSIMS revealed that low (COD:N of 100:1) or null nitrogen concentrations enhanced GAO carbon uptake. COD:N ratios of 60:1 and 20:1 reduced GAO carbon uptake and promoted whole microbial community DNA production. Nitrogen dosing at COD:N ratios of 60:1 or higher was demonstrated as feasible strategy for controlling the excessive GAO growth in high COD waste treatment plants.

摘要

贫营养球菌相关的糖原积累菌(GAO)常在处理高碳但氮缺乏废物的工业废水处理厂中大量繁殖。当 GAO 占主导地位时,它们与不良性能有关,其特征是沉降缓慢的生物量和浑浊的流出物。尽管它们的生理生态学在生活污水处理厂中得到了深入研究,但在好氧工业系统中对它们的关注很少。在这项研究中,在 8 小时的周期内研究了氮添加对 GAO 碳代谢的影响。使用 C-乙酸盐和 N-尿素,在不同的碳氮比(COD:N)(100:1、60:1 和 20:1)下,用来自酿酒厂废水序批式反应器的以 GAO 为主的活性污泥进行了孵育。使用 FISH-NanoSIMS 定量测定 GAO 细胞同化。通过 16S rRNA 基因谱、DNA 和储存聚合物生产评估活性污泥群落。通过 NanoSIMS 在细胞水平上进行的碳和氮定量揭示,低(COD:N 为 100:1)或零氮浓度增强了 GAO 的碳吸收。COD:N 比为 60:1 和 20:1 降低了 GAO 的碳吸收,并促进了整个微生物群落的 DNA 产生。在 COD:N 比为 60:1 或更高的条件下投加氮被证明是控制高 COD 废水处理厂中 GAO 过度生长的可行策略。

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