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Stormwater Quality Benefits of Permeable Pavement Systems with Deep Aggregate Layers

机译:深集料层的透水路面系统的雨水质量益处

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Green infrastructure (GI) stormwater control measures (SCMs), such as permeable pavement systems, are common practices used for controlling stormwater runoff. In this paper, two permeable pavement strips were studied to quantify their water quality performance. The quality monitoring was coupled with comprehensive rainfall analysis to investigate the effects of common rainfall characteristics on the quality performance of the systems. The pavements utilized deep aggregate layers to promote higher infiltration, and were installed in parking lanes of an urban neighborhood. Water quality samples were collected from upgradient stormwater runoff and from stormwater captured by the permeable pavements. In addition to total suspended solids (TSS), nutrients, and dissolved metals, this research also investigated bacterial contamination ( Escherichia coli , E. coli ). The results indicated that the two permeable pavement systems significantly reduced concentrations of TSS, E. coli , total phosphorus, and ammonia. The average reductions of TSS and E. coli between the two systems were 47% and 69%, respectively. It was also observed that pollutant loadings in the stormwater runoff, as well as pollutant reductions, were affected by the intensity of sampled rainfall events. Thus, it is suggested to consider the effects of rainfall characteristics when reporting the water quality benefits of stormwater GIs.
机译:绿色基础设施(GI)雨水控制措施(SCM),例如渗透性路面系统,是用于控制雨水径流的常见做法。本文研究了两个透水路面条,以量化其水质性能。质量监测与全面的降雨分析相结合,以研究常见降雨特征对系统质量性能的影响。人行道利用深层骨料层促进更高的渗透,并安装在市区附近的停车道上。从渐进式雨水径流和渗透性路面捕获的雨水中收集水质样品。除了总悬浮固体(TSS),营养物质和溶解的金属外,本研究还调查了细菌污染(大肠埃希氏菌,大肠杆菌)。结果表明,两个渗透性路面系统显着降低了TSS,大肠杆菌,总磷和氨的浓度。两个系统之间的TSS和大肠杆菌的平均减少分别为47%和69%。还观察到,雨水径流中的污染物负荷以及污染物的减少都受到采样降雨事件强度的影响。因此,建议在报告雨水地理标志的水质效益时考虑降雨特征的影响。

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