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估算和建模直接快速砂滤对从二级澄清池出水总粪大肠菌群的去除。

Estimation and modeling of direct rapid sand filtration for total fecal coliform removal from secondary clarifier effluents.

机构信息

Key Laboratory of Integrated Regulation and Resource Development on Shallow Lakes, Ministry of Education, College of the Environment, Hohai University, Xikang Road #1, Nanjing 210098, China.

出版信息

Water Sci Technol. 2012;65(9):1615-23. doi: 10.2166/wst.2012.054.

Abstract

The filtration of fecal coliform from a secondary clarifier effluent was investigated using direct rapid sand filters as tertiary wastewater treatment on a pilot scale. The effect of the flocculation dose, flow loading rate, and grain size on fecal coliform removal was determined. Direct rapid sand filters can remove 0.6-1.5 log-units of fecal coliform, depending on the loading rate and grain size distribution. Meanwhile, the flocculation dose has little effect on coliform removal, and increasing the loading rate and/or grain size decreases the bacteria removal efficiency. A model was then developed for the removal process. Bacteria elimination and inactivation both in the water phase and the sand bed can be described by first-order kinetics. Removal was successfully simulated at different loading rates and grain size distributions and compared with the data obtained using pilot-scale filters.

摘要

采用直接快速砂滤器作为二级澄清池出水的三级废水处理,研究了从粪便大肠菌群的过滤。确定了絮凝剂量,流量负荷率和粒度对粪大肠菌群去除的影响。直接快速砂滤器可以去除 0.6-1.5 个对数单位的粪大肠菌群,具体取决于负荷率和粒度分布。同时,絮凝剂量对大肠菌群去除的影响很小,增加负荷率和/或粒度会降低细菌去除效率。然后建立了一个去除过程的模型。水相和砂床中的细菌消除和失活都可以用一级动力学来描述。在不同的负荷率和粒度分布下成功地模拟了去除过程,并与使用中试过滤器获得的数据进行了比较。

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