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首页> 外文期刊>The Science of the Total Environment >Long-term effects of three types of permeable pavements on nutrient infiltrate concentrations
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Long-term effects of three types of permeable pavements on nutrient infiltrate concentrations

机译:三种渗透性路面对养分渗透浓度的长期影响

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There is limited information about long-term effects of permeable pavement parking lots on concentrations of nutrients in infiltrates. A 0.40-ha parking lot that contained three types of permeable pavement including permeable interlocking concrete pavement (PICP), porous asphalt (PA) and pervious concrete (PC) was constructed in 2010 at a US. EPA facility in Edison, New Jersey. This study was conducted from October 2010 to August 2017. Water quality samples were collected from the rainfall, parking lot runoff, and infiltrate from these three pavement types. Samples were analyzed for parameters including NH3-N, NO2-N, NO3-N, TN, PO4-PO4, TOC. ORP and pH. Statistical methods were used to study infiltrate concentration changes with time.Results showed, for all analytes, there were no differences between permeable interlocking concrete pavement and pervious concrete median concentrations. Data showed distribution of species changed and supported nitrification processes. The trend varied with source. Nitrogen species showed slowly increasing trends in rainwater, PC and PICP infiltrate concentrations while phosphate concentration showed a slightly increasing trend in rainwater and porous asphalt infiltrate. It is recommended that communities select PC and PICP when nitrogen species are the pollutants of concern and PA is more suitable for orthophosphate removal. (C) 2019 Elsevier B.V. All rights reserved.
机译:关于渗透性路面停车场对渗透物中养分浓度的长期影响的信息有限。 2010年,在美国建造了一个占地0.40公顷的停车场,其中包含三种类型的渗透性路面,包括渗透性互锁混凝土路面(PICP),多孔沥青(PA)和透水混凝土(PC)。 EPA在新泽西州爱迪生的工厂。这项研究于2010年10月至2017年8月进行。从这三种路面类型的降雨,停车场径流和渗透物中收集了水质样本。分析样品的参数,包括NH3-N,NO2-N,NO3-N,TN,PO4-PO4,TOC。 ORP和pH。统计方法用于研究渗透物浓度随时间的变化。结果表明,对于所有分析物,渗透性连锁混凝土路面与透水混凝土中位数浓度之间没有差异。数据显示物种变化的分布并支持硝化过程。趋势随来源而变化。氮素在雨水,PC和PICP的入渗量中呈缓慢增加的趋势,而磷酸盐在雨水和多孔沥青的渗入中呈略有增加的趋势。当氮成为关注的污染物,而PA更适合去除正磷酸盐时,建议社区选择PC和PICP。 (C)2019 Elsevier B.V.保留所有权利。

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