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Evaluation of a Three-Stage Biological Aerated Filter System Combined Recirculation/Dynamic Flow in Treating Low Carbon-to-Nitrogen Ratio Wastewater

机译:三级生物曝气滤池结合循环/动态流量处理低碳氮比废水的评价

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摘要

In this study, a three-stage biological aerated filter (BAF) system was proposed to enhance nitrogen removal in the treatment of low carbon-to-nitrogen ratio (C/N ratio) municipal wastewater. Laboratory experiments were conducted at three different recirculation ratios of 1, 2, and 3. Effects of dynamic flow were also evaluated in this study. Results of the long-term operation of the three-stage BAF system in dynamic flow showed nitrogen removal was affected by the both recirculation ratio and C/N ratio in dynamic flow. Dynamic flow enabled the nitrogen removal efficiency of the system to be higher than that of nondynamic flow system in treating low C/N ratio wastewater due to the more efficient use of organic substrates. Overall NH_4-N removal performance was stable with a removal efficiency of 99% on average during the operational period due to the unique system configuration where independent nitrification occurred. It was concluded that the three-stage BAF system proposed in this study provided excellent performance in the removal of nitrogen by employing dynamic flow and three columns functioning as sorption, denitrification, and nitrification, respectively.
机译:在这项研究中,提出了一种三级生物曝气滤池(BAF)系统,以提高对低碳氮比(C / N比)城市废水的处理中的氮去除率。在1、2和3三种不同的再循环比下进行了实验室实验。在本研究中还评估了动态流动的影响。三级BAF系统在动态流中的长期运行结果表明,动态流中的回流比和C / N比均会影响脱氮效果。由于更有效地利用了有机底物,动态流使系统的氮去除效率高于非动态流系统在处理低C / N比废水中的效率。由于独特的系统配置(发生独立的硝化作用),因此整体NH_4-N去除性能稳定,在操作期间平均去除效率为99%。结论是,本研究中提出的三级BAF系统通过采用动态流和三塔分别起到吸附,反硝化和硝化作用,在脱氮方面提供了出色的性能。

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