首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Enhanced performance of simultaneous carbon, nitrogen and phosphorus removal from municipal wastewater in an anaerobic-aerobic-anoxic sequencing batch reactor (AOA-SBR) system by alternating the cycle times
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Enhanced performance of simultaneous carbon, nitrogen and phosphorus removal from municipal wastewater in an anaerobic-aerobic-anoxic sequencing batch reactor (AOA-SBR) system by alternating the cycle times

机译:通过交替循环时间,通过交替的循环时间来增强来自城市废水的同时碳,氮和磷从城市废水中去除

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The performance of simultaneous carbon (C), nitrogen (N) and phosphorus (P) removal was investigated by altering the cycle times in an anaerobic-aerobic-anoxic sequencing batch reactor (AOA-SBR) system. Results showed that the AOA-SBR system achieved high simultaneous C, N and P removal efficiency with a cycle time of 6 h, with average removal efficiencies for COD, TN, and TP of 96.81%, 96.32% and 94.33%, respectively. The highest anoxic removal rate of NOX-N was 203.44 mg.g(-1) - MLVSS center dot d(-1). Meanwhile, anaerobic release rate and aerobic, anoxic removal rate of TP reached peak values of 104.31 and 85.81 mg.g(-1) - MLVSS center dot d(-1), respectively. Microbial community analysis demonstrated that Proteobacteria, Bacteroidetes and Candidatus Saccharibacteria at phylum level and Betaproteobacteria, Gammaproteobacteria, Sphingobacteriia, Deltaproteobacteria and Alphaproteobacteria at the class level benefited AOA-SBR performance. Functional analysis of genes indicated that the metabolic potential related to C, N and P metabolism increased under the optimal cycle time condition.
机译:通过改变厌氧 - 有氧缺氧序分批反应器(AOA-SBR)系统中的循环时间来研究同时碳(C),氮(N)和磷(P)去除的性能。结果表明,AOA-SBR系统在6小时的循环时间上实现了高同时C,N和P除去效率,分别具有96.81%,96.32%和94.33%的鳕鱼,TN和TP的平均除去效率。 NOx-N的最高氧化去除率为203.44mg.g(-1) - MLVSS中心点D(-1)。同时,TP的厌氧释放率和有氧缺氧去除率达到104.31和85.81 mg.g(-1) - MLVSS中心点D(-1)的峰值。微生物群落分析表明,在阶级水平和Betaproteobacteria,γ曲线杆菌,鞘曲杆菌,甲状腺菌,血管曲线杆菌和αα的蛋白质细菌,菌株和糖浆酸痛受益于AOA-SBR性能。基因的功能分析表明,在最佳循环时间条件下,与C,N和P代谢相关的代谢潜力增加。

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