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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Shift in microbial community structure of anaerobic side-stream reactor in response to changes to anaerobic solid retention time and sludge interchange ratio
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Shift in microbial community structure of anaerobic side-stream reactor in response to changes to anaerobic solid retention time and sludge interchange ratio

机译:厌氧侧流反应器中微生物群落结构的变化,以响应厌氧固体停留时间和污泥交换比的变化

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摘要

A laboratory scale nutrient removal activated sludge system coupled with an anaerobic side-stream reactor was operated for 300 days treating real urban wastewater. A significant decrease in sludge production was obtained increasing the anaerobic solid retention time (SRTASSR) and decreasing the sludge interchange ratio (IR). In this study, the microbial community structure was analyzed and compared with the sludge reduction performance. Quantitative polymerase chain reaction analyses encoding 16 ribosomal RNA and functional genes revealed a wide diversity of phylogenetic groups in each experimental period, resulting from long solids retention time and recirculation of sludge under aerobic, anoxic and anaerobic conditions. However, decreasing SRTASSR from 10 to 2.5 d and increasing IR from 27 to 100%, an increasing selection of both fermenting bacteria able to release extracellular polymeric substances and hydrolyze organic matter and slow growing bacteria involved in nutrient removal were detected and linked to the sludge reduction mechanisms. (C) 2016 Elsevier Ltd. All rights reserved.
机译:实验室规模的营养去除活性污泥系统和厌氧侧流反应器相结合运行了300天,用于处理实际的城市废水。污泥产量显着减少,从而增加了厌氧性固体停留时间(SRTASSR)和污泥交换率(IR)。在这项研究中,分析了微生物群落结构,并将其与污泥减少性能进行了比较。编码16个核糖体RNA和功能基因的定量聚合酶链反应分析显示,在每个实验期间,由于长的固体保留时间以及污泥在好氧,缺氧和厌氧条件下的再循环,系统发育基团的多样性很大。但是,将SRTASSR从10 d减少到2.5 d,将IR从27 d增加到100%,检测到能够释放细胞外聚合物质并水解有机物的发酵细菌的选择增加,并且涉及营养去除的细菌生长缓慢,并与污泥相关减少机制。 (C)2016 Elsevier Ltd.保留所有权利。

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