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Evaluation of an enhanced treatment media and permeable pavement base to remove stormwater nitrogen, phosphorus, and metals under simulated rainfall

机译:在模拟降雨下评估增强型处理介质和渗透性路面基层以去除雨水中的氮,磷和金属的评估

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An enhanced stormwater treatment media, developed previously by the authors, was shown to effectively retain dissolved phosphorus (DP) and total Cu and Zn under simulated rainfall. The media comprises expanded shale aggregate, aluminum-based water treatment residual (WTR), and a psylliumbased binder. A 5-cm layer of media was installed as a permeable pavement base layer in a laboratory mesocosm and subjected to rainfall simulations using synthetic stormwater. At rainfall intensity of 0.66 cm/h, effluent DP event mean concentration (EMC) fell from an average of 0.22 mg/L P to below the EPA water quality criterion of 0.037 mg/L in 8 of 9 storms. DP retention increased at lower rainfall intensity and lower pH. Effluent EMC was lowered to less than 30 mu g/L for total Cu and less than 92 mu g/L for total Zn, on average, relative to average influent EMCs above 61 and 255 mu g/L for total Cu and Zn, respectively. Effluent total Al EMCs were below the 25 mu g/L detection limit for all storm simulations, indicating Al leaching from the WTR-containing media not to be an issue. Inclusion of an internal water storage (IWS) zone resulted in a 33% total nitrogen (TN) load reduction when adequate carbon was present to advance denitrification. This study provides an evaluation and demonstrates expected treatment performance of a novel stormwater treatment media under conditions representative of urban stormwater. (C) 2019 Elsevier Ltd. All rights reserved.
机译:作者先前开发的一种增强型雨水处理介质,在模拟降雨下可有效保留溶解的磷(DP)和总铜和锌。介质包括膨胀的页岩骨料,铝基水处理残留物(WTR)和欧车前基粘合剂。将5厘米厚的介质层作为透湿路面基层安装在实验室中观空间中,并使用合成雨水进行降雨模拟。在降雨强度为0.66 cm / h的情况下,在9次暴风雨中,有8次暴风雨的DP事件平均浓度(EMC)从平均值0.22 mg / L P降至EPA的水质标准0.037 mg / L以下。在较低的降雨强度和较低的pH下,DP保留量增加。相对于总铜和锌分别高于61和255μg / L的平均进水EMCs,总铜的出水EMC降低到小于30μg / L,而总Zn则小于92μg/ L。 。在所有风暴模拟中,废水中的总Al EMCs均低于25μg / L的检测极限,这表明从含WTR的介质中浸出Al并不是问题。当存在足够的碳以促进反硝化作用时,包含内部储水区(IWS)导致总氮(TN)负载减少33%。这项研究提供了评估,并证明了在代表城市雨水的条件下新型雨水处理介质的预期处理性能。 (C)2019 Elsevier Ltd.保留所有权利。

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