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Performance of simultaneous nitrification and denitrification in lateral flow biological aerated filter

机译:侧向曝气生物滤池同时硝化反硝化的性能。

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A new wastewater treatment facility-lateral flow biological aerated filter (LBAF) was developed aiming at solving energy consumption and operational problems in wastewater treatment facilities in small towns. It has the function of nitrification and removing organic substrate. In this study, we focused on the denitrification performance of LBAF and its possible mechanism under thorough aeration. We identified the existence of simultaneous nitrification and denitrification (SND)by analyzing nitrogenous compounds along the flow path of LBAF and supportive microbial microscopy, and studied the effects of air/water ratio and hydraulic loading on the performance of nitrogen removal and on SND in LBAF to find out the optimal operation condition. It is found that for saving operation cost, aeration can be reduced to some degree that allows desirable removal efficiency of pollutants, and the optimal air/water ratio is 10:1. Hydraulic loading less than 0.43 m h-1 hardly affects the nitrification and denitrification performance; whereas higher hydraulic loading is unfavorable to both nitrification and denitrification, far more unfavorable to denitrification than to nitrification.
机译:为了解决小城镇废水处理设施的能耗和运行问题,开发了一种新的废水处理设施-侧流式生物曝气滤池(LBAF)。具有硝化和去除有机底物的功能。在这项研究中,我们重点研究了LBAF的反硝化性能及其在彻底曝气条件下的可能机理。通过分析沿LBAF流动路径的含氮化合物和支持性微生物显微镜,我们确定了同时硝化和反硝化(SND)的存在,并研究了空气/水比和水力负荷对LBAF脱氮性能和SND的影响找出最佳的操作条件。已经发现,为了节省运行成本,可以将通气降低到一定程度,以达到期望的污染物去除效率,并且最佳的空气/水比为10:1。小于0.43 m h-1的水力负荷几乎不会影响硝化和反硝化性能。而较高的水力负荷既不利于硝化反硝化,又不利于反硝化,而不是硝化。

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