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首页> 外文期刊>International Biodeterioration & Biodegradation >Monitoring influential environmental conditions affecting communities of denitrifying and nitrifying bacteria in a combined anoxic-oxic activated sludge system
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Monitoring influential environmental conditions affecting communities of denitrifying and nitrifying bacteria in a combined anoxic-oxic activated sludge system

机译:在组合的缺氧-氧化活性污泥系统中监测影响反硝化和硝化细菌群落的有影响的环境条件

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The goal of this study was to improve biological nitrogen removal (BNR) efficiency by investigating links between environmental factors and the dynamics of denitrifying and nitrifying bacteria in a combined anoxic-oxic activated sludge system. Principal component analysis (PCA) supported a positive correlation of narG, nirS and nosZ genes of denitrifying bacteria with SCN- and CN-, constitute one part of total nitrogen (TN). Supplemental ammonia produced from the biodegradation of those cyanide compounds increased NO2- and NO3- by nitrification, increasing concentrations of the denitrifying bacteria by increasing their N substrates. On the other hand, concentrations of both influent COD and phenol adversely affected the dominant nitrite oxidizing bacteria (NOB), Nitrobacter spp., exhibiting an inverse relationship both with the complete nitrification performance (end products, NO3-) as well as with an accumulation of NO2-. In this BNR system, therefore, creation of favorable conditions by pretreatment of influent phenol and organic matter may allow achievement of complete nitrification and an increase in quantities of nitrifying bacteria. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是通过研究环境因素与缺氧-含氧活性污泥组合系统中反硝化细菌和硝化细菌动力学之间的联系来提高生物脱氮(BNR)效率。主成分分析(PCA)支持反硝化细菌narG,nirS和nosZ基因与SCN-和CN-呈正相关,构成总氮(TN)的一部分。这些氰化物化合物的生物降解产生的补充氨通过硝化作用增加了NO2-和NO3-的含量,通过增加其N底物而增加了反硝化细菌的浓度。另一方面,进水COD和苯酚的浓度都不利地影响了主要的亚硝酸盐氧化细菌(NOB)Nitrobacter spp。,与完全硝化性能(最终产物NO3-)以及累积量均呈反比关系。的NO2-因此,在该BNR系统中,通过预处理流入的苯酚和有机物创造有利的条件可以实现完全硝化并增加硝化细菌的数量。 (C)2015 Elsevier Ltd.保留所有权利。

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