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Reduction of Urban Storm-Runoff Pollution Using Porous Concrete Containing Iron Slag Adsorbent

机译:含铁渣吸附剂的多孔混凝土减少城市暴雨径流污染

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Urban storm runoff is one of the significant sources of surface and groundwater pollution in metropolitan areas. The purpose of this research is to evaluate the performance of porous concrete containing iron slag with sand filter to control urban storm-runoff pollution. Treatments of porous concrete containing iron slag in presence and absence of a sand filter were studied and compared. Parameters of chemical oxygen demand (COD), turbidity, concentration of lead, electrical conductivity (EC), total suspended solids (TSS), and pH in treatment media influent and effluent were measured. The results show that except for EC and pH, the porous concrete containing iron slag with a sand filter significantly improved all of these stated parameters. While the removal efficiency of control porous concrete with a sand filter for COD, turbidity, lead (initial=2mg/L), lead (initial=5mg/L), and TSS was at 11, 38, 44, 42, and 53%, respectively, these rates increased to more than 43, 91, 91, 95, and 70% for porous concrete containing iron slag with a sand filter. The use of porous concrete containing iron slag with a sand filter is suggested in urban areas affected by stormwater in order to reduce surface-water and groundwater pollution. (C) 2015 American Society of Civil Engineers.
机译:城市暴雨径流是大都市地区地表和地下水污染的重要来源之一。这项研究的目的是评估含铁渣和砂滤的多孔混凝土在控制城市暴雨径流污染方面的性能。研究和比较了有砂滤池和无砂滤池的含铁渣多孔混凝土的处理方法。测量了处理介质流入和流出物中的化学需氧量(COD),浊度,铅浓度,电导率(EC),总悬浮固体(TSS)和pH值的参数。结果表明,除EC和pH值外,含铁渣和砂滤器的多孔混凝土可显着改善所有上述参数。使用砂滤器的对照多孔混凝土对COD,浊度,铅(初始值为2mg / L),铅(初始值为5mg / L)和TSS的去除效率分别为11、38、44、42和53%对于含铁渣和砂滤器的多孔混凝土,这些比率分别提高到43%,91%,91%,95%和70%以上。为了减少地表水和地下水的污染,建议在受雨水影响的城市地区使用含铁渣和砂滤器的多孔混凝土。 (C)2015年美国土木工程师学会。

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