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Comparative studies on the differently operated trains of the North-Budapest Wastewater Treatment Plant

机译:北布达佩斯污水处理厂不同运营列车的比较研究

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In order to reduce the pollution load of the Danube, the North-Budapest Wastewater Treatment Plant has been upgraded to enhanced nitrogen removal by establishing a new activated sludge treatment line and modifying the existing unit for nitrification and denitrification. As both the influent flow rate and the influent chemical oxygen demand (COD), biological oxygen demand (BOD _5) and total suspended solids (TSS) concentration levels remained far below the design values, setting one fourth of the reactor volume out of operation in the Old Line, and operating the nitrification reactor of the New Line with part-time aeration proved to be possible. Analytical data as well as simulation studies supported the advantage of the intermittent-aeration process in efficient N-removal. However, the lengths of the aerated periods have to be increased with decreasing temperature, and thereby effluent total nitrogen (TN) concentration can increase due to decreasing denitrification efficiency. Potential occurrence of low-dissolved oxygen (DO) bulking should be hindered through applying an efficient anoxic selector system.
机译:为了减少多瑙河的污染负荷,通过建立新的活性污泥处理线并改造现有的硝化和反硝化装置,将北布达佩斯废水处理厂升级为提高脱氮率。由于进水流速和进水化学需氧量(COD),生物需氧量(BOD _5)和总悬浮固体(TSS)浓度水平均远低于设计值,因此将反应器体积的四分之一设置为停产事实证明,在旧管线上运行和在新管线上使用兼职曝气的硝化反应器是可行的。分析数据和模拟研究均支持间歇曝气工艺在高效脱氮方面的优势。然而,随着温度的降低,充气时间的长度必须增加,因此,由于反硝化效率的降低,废水中的总氮(TN)浓度会增加。应通过使用有效的缺氧选择器系统来阻止低溶解氧(DO)膨胀的潜在发生。

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