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首页> 外文期刊>Journal of Environmental Engineering >Performance of wet weather treatment facility for control of combined sewer overflows: Case study in Cincinnati, Ohio
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Performance of wet weather treatment facility for control of combined sewer overflows: Case study in Cincinnati, Ohio

机译:潮湿天气处理设施控制下水道溢流的性能:俄亥俄州辛辛那提的案例研究

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摘要

Efforts aimed at reducing pollutant loads from combined sewer overflows (CSOs) on the Muddy Creek receiving waters in Cincinnati, Ohio have been underway in recent years. This includes an investigation of the treatment performance of a flow-through wet weather treatment facility (WWTF) using off-line sedimentation tanks, fine screening and chemical disinfection (disinfection was inactive during this study). Calculations using hydrographs and water quality samples collected at the WWTF during rain events established the mass of biochemical oxygen demand (BOD)(5), chemical oxygen demand, and total suspended solids (TSS) removed. Ten storm events sampled from January to September 2002 helped characterize pollutant removal efficiencies for flow-through treatment. Pollutant removal was classified into four components: flow to the wastewater treatment plant (WWTP), sedimentation, storage, and screening. Most pollutant removal was achieved through settling and storage in the treatment tanks, with removal efficiencies of 20-50% for BOD5 and 25-70% for TSS commonly observed. Owing to the high pollutant load in the early portion of the CSO hydrograph, first-flush containment, or capturing and conveying the early portion of the runoff event to the WWTP, was the most efficient treatment method for every storm investigated.
机译:近年来,人们一直在努力减少在俄亥俄州辛辛那提市接收水的泥泞小溪上的污水管道溢流(CSO)造成的污染物负荷。这包括使用离线沉淀池对流通式湿法天气处理设施(WWTF)的处理性能进行调查,精细筛选和化学消毒(在此研究中未进行消毒)。在下雨事件期间,使用WWTF收集的水位图和水质样本进行的计算确定了生化需氧量(BOD)(5),化学需氧量和总悬浮固体(TSS)的去除量。从2002年1月至2002年9月采样的十次暴风雨事件有助于表征流通处理的污染物去除效率。污染物去除分为四个部分:流入废水处理厂(WWTP),沉淀,存储和筛选。大部分污染物的去除是通过在处理池中的沉淀和储存实现的,BOD5的去除效率为20-50%,TSS的去除效率通常为25-70%。由于CSO水位仪早期的污染物负荷很高,因此,对于每次调查的暴风雨,首先进行平流遏制,或将径流事件的早期部分捕获并输送到WWTP,这是最有效的处理方法。

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