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Keeping a Completely Autotrophic Nitrogen Removal over Nitrite System Effective in Treating Low Ammonium Wastewater by Adopting an Alternative Low and High Ammonium Influent Regime

机译:通过采用替代性的高铵盐和低铵盐进水方案在亚硝酸盐体系上保持完全自养脱氮从而有效地处理低铵废水

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摘要

An alternative low and high ammonium influent regime was proposed and adopted to keep a completely autotrophic nitrogen removal over nitrite (CANON) effective when treating low ammonium wastewater. Results show that, by cyclic operating at an alternative low and high ammonium concentration for 10 days and 28 days, the CANON system could effectively treat low ammonium wastewater. Excessive proliferation of nitrite oxidizing bacteria (NOB) under low ammonium environment was still the challenge for the stable CANON operation; but with 28 days of a high ammonium treatment combined with a sludge retention time control, the NOB overproliferated in the low ammonium operational period could be under control. Specifically, when the nitrite oxidation rate reached 8 g N/m3/h, the CANON system should enter the high ammonium influent operating mode. 16S rDNA high-throughput sequencing results show that the appropriate sludge discharging provided an environment favoring Candidatus Jettenia.
机译:提出了一种替代性的高氨氮进水方案,该方案可在处理低铵废水时有效地保持亚硝酸盐(CANON)上的完全自养氮去除。结果表明,通过在交替的低和高铵浓度下循环运行10天和28天,CANON系统可以有效处理低铵废水。在低铵环境下,亚硝酸盐氧化细菌(NOB)过度增殖仍然是CANON稳定运行的挑战。但是,采用高铵处理28天并结合污泥保留时间控制后,在低铵操作期间过度增殖的NOB可以得到控制。具体来说,当亚硝酸盐氧化速率达到8 g N / m 3 / h时,CANON系统应进入高氨水进水运行模式。 16S rDNA高通量测序结果表明,适当的污泥排放提供了有利于念珠菌的环境。

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