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The Influence of Different Pavement Surfaces on Atmospheric Copper, Lead, Zinc, and Suspended Solids Attenuation and Wash-Off

机译:不同路面对大气铜,铅,锌和悬浮固体的衰减和冲刷的影响

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From a storm water management perspective, not all pavements are equivalent. Pavement type can impose a strong influence on pollutant wash-off dynamics. Pollutant loads from pavement wash-off are affected by the pavements' physical and chemical composition. However, there is a dearth of information regarding how pavement type influences atmospherically deposited pollutant loads in storm water. Therefore, experimental impermeable and permeable asphalt and concrete boards were deployed in a residential area in Christchurch, New Zealand, to quantify the influence of pavement type on storm water pollutant dynamics. Each pavement type had four replicate systems elevated 500 mm from the ground at a 4 degrees slope. Wash-off from the pavements was collected and analysed for total suspended solids and metals (Cu, Pb, and Zn) from June to August 2014. Results show that Cu and Zn loads were lower from the concrete pavements than the asphalt pavements because the carbonates and hydroxides within the concrete adsorbed Cu and Zn. Run-off from the impermeable asphalt had the highest loads of Zn, which was attributed to Zn leaching from the asphalt. Infiltrate from permeable asphalt provided littleo retention of Cu and Zn, due to the low pH of the infiltrate causing Cu and Zn to partition into the dissolved phase and leach through the pavement. Total suspended solid (TSS) and Pb loads were the highest in run-off from the impermeable concrete, which was attributed to the smooth surface enabling particulates to be easily mobilised. TSS and Pb loads were the lowest from the permeable pavement due to the permeable material filtering out particulates.
机译:从雨水管理的角度看,并不是所有的人行道都是一样的。路面类型会严重影响污染物的冲刷动力学。路面冲刷产生的污染物负荷受路面物理和化学成分的影响。但是,缺乏有关路面类型如何影响雨水中大气中沉积污染物负荷的信息。因此,实验性的不渗透性和可渗透性沥青及混凝土板被部署在新西兰基督城的一个居民区,以量化路面类型对雨水污染物动力学的影响。每种路面类型都具有四个从地面以4度的坡度升高500毫米的复制系统。收集了路面的冲刷物,并分析了2014年6月至2014年8月的总悬浮固体和金属(铜,铅和锌)。结果表明,混凝土路面中的铜和锌负荷低于沥青路面,因为碳酸盐以及混凝土中的氢氧化物吸附了铜和锌。不可渗透沥青的径流含锌量最高,这归因于从沥青中浸出的锌。由于渗透液的低pH值导致Cu和Zn分配进入溶解相并通过路面浸出,因此渗透性沥青的渗透液几乎没有/没有保留Cu和Zn。从不透水混凝土的径流中,总悬浮固体(TSS)和Pb负载最高,这归因于光滑的表面,使颗粒易于移动。由于可渗透材料滤出了颗粒物,因此TSS和Pb负载是可渗透路面中最低的。

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