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采用储水池-污水处理厂-湿地联合系统对雨水溢流水进行深度处理的模拟及工程论证。

Simulation and engineering demonstration of the advanced treatment of rainy overflow wastewater using a combined system of storage tank-wastewater treatment plant-wetland.

机构信息

School of Environmental Science and Engineering, Shanghai Jiao Tong University, Shanghai, China.

Yunnan Institute of Environmental Science, Kunming, China.

出版信息

Water Environ Res. 2020 Jul;92(7):1057-1069. doi: 10.1002/wer.1301. Epub 2020 Feb 14.

DOI:10.1002/wer.1301
PMID:31995651
Abstract

We propose a new technology to advanced treat overflow wastewater from a combined sewer system using a storage tank-wastewater treatment plant (STP)-constructed wetland (CW) system. The engineering demonstration (a 7,500 m storage tank and a 3,436 m CW) has been built to treat the combined sewer overflows (CSOs) at the largest combined rainwater/wastewater overflow outlet in the middle reaches of the Xinbaoxiang River, which is the second largest river in the Dianchi Lake Basin. During the rainfall period, CSOs enter the storage tank. After sedimentation purification, the higher concentration CSOs at the bottom enter the STP, and the upper low-concentration CSOs enter CWs, thereby linking the multiple means of treating CSOs and minimizing the impact of CSOs on the STP. During the dry season, CWs can also assist in purification of polluted river water. The supernatant (COD <80 mg/L) and the bottom part water (COD >200 mg/L) of the storage tank were sent to CWs and STP, respectively, for treatment. The project was stably operated over 6 months. The final effluent qualities were 12, 1.79, and 0.18 mg/L for COD, TN, and TP, respectively, which achieved the surface water class V standard. PRACTITIONER POINTS: A combined system of storage tank-wastewater treatment plant-wetland was proposed to advanced treat overflow wastewater of rainy season. The SWMM could calculate the water quality and volume of overflow under different rainfall conditions in the runoff area. The effluent of the engineering demonstration reached the standard of surface water class V.

摘要

我们提出了一种使用储水箱-污水处理厂(STP)-人工湿地(CW)系统处理合流制污水溢流的新技术。该工程示范(7500m3 储水箱和 3436m3 CW)已建成,用于处理新宝象河中游最大的雨水/污水合流溢流口的合流制污水溢流(CSO),该河是滇池流域的第二大河流。在降雨期间,CSO 进入储水箱。经过沉淀净化后,底部浓度较高的 CSO 进入 STP,上部浓度较低的 CSO 进入 CW,从而将处理 CSO 的多种方法联系起来,并将 CSO 对 STP 的影响降至最低。在旱季,CW 也可以协助净化受污染的河水。储水箱的上清液(COD<80mg/L)和底部水(COD>200mg/L)分别被送到 CW 和 STP 进行处理。该项目稳定运行了 6 个月。最终出水 COD、TN 和 TP 的质量浓度分别为 12、1.79 和 0.18mg/L,达到地表水 V 类标准。

实践者要点

提出了一种储水箱-污水处理厂-湿地联合系统,用于对雨季的溢流污水进行深度处理。SWMM 可以计算出在径流区不同降雨条件下的水质和溢流体积。工程示范的出水达到地表水 V 类标准。

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