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Development of sequencing batch reactor with step feed and recycle

机译:逐步进料和循环的顺序批反应器的开发

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SBR process shows high nitrogen and phosphorus removal in countries where separated sewers are used. On the other hand, removal efficiency is low in countries where combined sewers are used though the same SBR is applied. This is because the organic concentration (as BOD), which is used as carbon source for denitrification, of combined sewers is much lower than that of separated sewers. Almost all sewers in Korea are combined, and their BOD is low by about 1/2 over the level needed for denitrification. In this study, a SBR process that can optimise organic usage by step feed and recycle is thus developed to increase the removal efficiency of nitrogen and phosphorus, and the results show that the removal rates of BOD, T-N and T-P are 95.4, 81.4 and 86.1%, respectively, though influent BOD is low.
机译:SBR工艺显示在使用分开的下水道的国家中,氮和磷的去除率很高。另一方面,尽管使用了相同的SBR,但在使用组合式下水道的国家,去除效率很低。这是因为组合式下水道的有机浓度(以BOD计)用作脱氮的碳源,其浓度远低于单独的下水道。韩国几乎所有下水道都被合并了,其BOD降低了反硝化所需水平的1/2。在这项研究中,因此开发了一种可以通过逐步进料和循环利用来优化有机物使用量的SBR工艺,以提高氮和磷的去除效率,结果显示BOD,TN和TP的去除率分别为95.4、81.4和86.1。尽管进水BOD较低,但分别为%。

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