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Riverbank Filtration: An Analysis of Parameters for Optimal Performance

机译:河岸过滤:最佳性能参数分析

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Riverbank filtration has been used for public and industrial water supply in Europe over a century and for nearly half a century in the United States. The process has been shown to be effective in moderating the peak concentrations of various contaminants present in river or lake water (for lake bank filtration) and in many cases involving removal of contaminants to below detection levels. The performance of riverbank filtration systems depends upon well type and pumping rates, travel time of surface water between the river and the pumping wells, source water quality, site hydrogeologic conditions, biogeochemical reactions in sediments and aquifer, and the quality of background ground water. Studies from Europe and United States indicate significant removal of dissolved organic carbon, nitrate, pesticides, pathogen, turbidity, and pharmaceutical and personal care products. The degree of removal in one system varies from the other. Computer simulations indicate that by placing the (vertical) wells somewhat away from the river could reduce the effect of nitrate or pesticide peaks in surface water. In Europe, this has been observed to enhance denitrification, thus reducing the levels of nitrate present in surface water.
机译:在欧洲和美国近半个世纪以来,河岸过滤已用于欧洲的公共和工业供水。事实证明,该方法可以有效地降低河流或湖泊水中存在的各种污染物的峰值浓度(用于湖岸过滤),并且在许多情况下,涉及的污染物去除率要低于检测水平。河岸过滤系统的性能取决于井的类型和抽水率,河流与抽水井之间的地表水传播时间,水源水质,现场水文地质条件,沉积物和含水层中的生物地球化学反应以及背景地下水的质量。来自欧洲和美国的研究表明,大量去除了溶解的有机碳,硝酸盐,农药,病原体,浊度以及药物和个人护理产品。一个系统中的去除程度与另一个系统不同。计算机模拟表明,通过将(垂直)井放在远离河流的位置,可以减少地表水中硝酸盐或农药峰值的影响。在欧洲,已观察到这可增强反硝化作用,从而降低地表水中硝酸盐的含量。

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