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Contaminant removal and hydraulic conductivity of laboratory rain garden systems for stormwater treatment

机译:用于雨水处理的实验室雨花园系统的污染物去除和水力传导率

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In order to evaluate the influence of substrate composition on stormwater treatment and hydraulic effectiveness, mesocosm-scale (180 L, 0.17 m ~2) laboratory rain gardens were established. Saturated (constant head) hydraulic conductivity was determined before and after contaminant (Cu, Zn, Pb and nutrients) removal experiments on three rain garden systems with various proportions of organic topsoil. The system with only topsoil had the lowest saturated hydraulic conductivity (160-164 mm/h) and poorest metal removal efficiency (Cu ≤ 69.0% and Zn ≤ 71.4%). Systems with sand and a sand-topsoi mix demonstrated good metal removal (Cu up to 83.3%, Zn up to 94.5%, Pb up to 97.3%) with adequate hydraulic conductivity (sand: 800-805 mm/h, sand-topsoil: 290-302 mm/h). Total metal amounts in the effluent were <50% of influent amounts for all experiments, with the exception of Cu removal in the topsoil-only system, which was negligible due to high dissolved fraction. Metal removal was greater when effluent pH was elevated (up to 7.38) provided by the calcareous sand in two of the systems, whereas the topsoil-only system lacked an alkaline source. Organic topsoil, a typical component in rain garden systems, influenced pH, resulting in poorer treatment due to higher dissolved metal fractions.
机译:为了评估基质组成对雨水处理和水力有效性的影响,建立了中观规模的(180 L,0.17 m〜2)实验室雨花园。在具有不同比例的有机表土的三个雨水花园系统中去除污染物(铜,锌,铅和养分)实验之前和之后,确定了饱和(恒定水头)的水力传导率。仅表层土壤的系统具有最低的饱和水力传导率(160-164 mm / h)和最差的金属去除效率(Cu≤69.0%和Zn≤71.4%)。含砂和砂-表土混合物的系统显示出良好的金属去除率(铜高达83.3%,锌高达94.5%,铅高达97.3%),并且具有足够的水力传导性(砂:800-805 mm / h,砂表土: 290-302毫米/小时)。对于所有实验,废水中的总金属量小于进水量的50%,唯一的表土系统中的Cu去除除外,由于较高的溶解分数,因此可以忽略不计。在两个系统中,当钙质砂提供的出水pH升高(高达7.38)时,金属去除量更大,而仅表层土壤的系统缺少碱性源。有机表层土(雨花园系统中的典型成分)影响pH值,由于较高的溶解金属分数导致处理效果较差。

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