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Stormwater infiltration and surface runoff pollution reduction performance of permeable pavement layers

机译:雨水渗透和表面径流污染降低渗透路面层的性能

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摘要

In this paper, the laboratory-scale permeable pavement layers, including a surface permeable brick layer, coarse sand bedding layers (thicknesses = 2, 3.5, and 5 cm), and single-graded gravel sub-base layers (thicknesses = 15, 20, 25, and 30 cm), were built to evaluate stormwater infiltration and surface runoff pollution reduction performance. And, the infiltration rate (I) and concentrations of suspended solids (SS), total phosphorus (TP), chemical oxygen demand (COD), ammonia nitrogen, and total nitrogen (TN) were measured under the simulated rainfall intensity of 72.4 mm/h over duration of 60 min. The results indicate that the thickness factor primarily influences the infiltration rate and pollutant removal rate. The highest steady infiltration rate was for surface brick layer 51.0 mm/h, for 5-cm sand bedding layer 32.3 mm/h, and for 30-cm gravel sub-base layer 42.3 mm/h, respectively. The SS average removal rate was relative higher (79.8 similar to 98.6 %) for all layers due to the interception and filtration. The average removal rates of TP and COD were for surface layer 71.2 and 24.1 %, for 5-cm bedding layer 54.8 and 9.0 %, and for 20-cm sub-base layer 72.2 and 26.1 %. Ammonia nitrogen and TN cannot steadily be removed by layers according to the experiment results. The optimal thickness of bedding sands was 5 cm, and that of sub-base gravels was 20 similar to 30 cm.
机译:本文中,实验室透明的路面层,包括表面可渗透砖层,粗砂床上用品层(厚度= 2,3.5和5cm),以及单梯砾石子基层(厚度= 15,20为评估雨水渗透和表面径流污染降低性能,建立25厘米。并且,在模拟的降雨强度为72.4mm /时,测量渗透速率(I),悬浮固体(SS),总磷(TP),化学需氧量(TN),氨氮和总氮(TN), H持续时间为60分钟。结果表明,厚度因子主要影响渗透率和污染物去除率。最高稳态渗透率为表面砖层51.0mm / h,5厘米砂垫层32.3mm / h,分别为30厘米砾石亚基层42.3mm / h。由于截取和过滤,SS平均去除率相对更高(79.8类似于98.6%)。 TP和COD的平均除去速率为表面层71.2和24.1%,适用于5cm垫层54.8和9.0%,以及20cm基础层72.2和26.1%。根据实验结果,氨氮和TN不能稳定地通过层除去。床上用砂的最佳厚度为5厘米,副砾石的厚度为20厘米20厘米。

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