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Simultaneous Adsorption of Heavy Metals from Roadway Stormwater Runoff Using Different Filter Media in Column Studies

机译:在列研究中使用不同过滤介质的巷道雨水径流同时吸附重金属

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摘要

Stormwater runoff from roadways often contains a variety of contaminants such as heavy metals, which can adversely impact receiving waters. The filter media in stormwater filtration/infiltration systems play a significant role in the simultaneous removal of multiple pollutants. In this study, the capacity of five filter media—natural quartz sand (QS), sandy soil (SS) and three mineral-based technical filter media (TF-I, TF-II and TF-III)—to adsorb heavy metals (Cu, Pb and Zn) frequently detected in stormwater, as well as remobilization due to de-icing salt (NaCl), were evaluated in column experiments. The column breakthrough data were used to predict lifespan of the filter media. Column experiment operated under high hydraulic load showed that all technical filters and sandy soil achieved >97%, 94% and >80% of Pb, Cu and Zn load removals, respectively, while natural quartz sand (QS) showed very poor performance. Furthermore, treatment of synthetic stormwater by the soil and technical filter media met the requirements of the Austrian regulation regarding maximum effluent concentrations and minimum removal efficiencies for groundwater protection. The results showed that application of NaCl had only a minor impact on the remobilization of heavy metals from the soil and technical filter media, while the largest release of metals was observed from the QS column. Breakthrough analysis indicated that load removal efficiencies at column exhaustion (SS, TF-I, TF-II and TF-III) were >95% for Cu and Pb and 80–97% for Zn. Based on the adsorption capacities, filtration systems could be sized to 0.4 to 1% (TF-I, TF-II and TF-III) and 3.5% (SS) of their impervious catchment area and predicated lifespan of each filter media was at least 35, 36, 41 and 29 years for SS, TF-I, TF-II and TF-III, respectively. The findings of this study demonstrate that soil—based and technical filter media are effective in removing heavy metals and can be utilized in full-stormwater filtration systems.
机译:来自道路的雨水径流通常含有各种污染物,如重金属,这可能会对接收水域产生不利影响。雨水过滤/渗透系统中的过滤介质在同时去除多个污染物中起着重要作用。在这项研究中,五个过滤介质 - 天然石英砂(QS),砂土(SS)和三种矿物的技术过滤介质(TF-1,TF-II和TF-III)的容量 - 吸附重金属(在脉冲水中经常检测到的Cu,Pb和Zn,以及由于去冰盐(NaCl)而重复化,在列实验中评估。列突破性数据用于预测过滤介质的寿命。在高液压载量下操作的柱实验表明,所有技术过滤器和砂土都分别达到了> 97%,94%和> 80%的Pb,Cu和Zn负载,而天然石英砂(QS)表现出很差。此外,土壤和技术过滤媒体对合成雨水的处理符合奥地利监管关于地下水保护的最大清除效率的要求。结果表明,NaCl的施用仅对来自土壤和技术过滤介质的重金属的重新染色,而从QS柱观察到最大的金属释放。突破性分析表明,Cu和Pb的柱耗尽(SS,TF-I,TF-II和TF-III)的负载去除效率> Zn的80-97%。基于吸附容量,过滤系统可以大小为0.4〜1%(TF-I,TF-II和TF-III)和3.5%(SS)的其不受欢迎的集水区和每个过滤介质的预测寿命至少是SS,TF-I,TF-II和TF-III的35,36,41和29岁分别。本研究的发现表明,基于土壤和技术过滤介质可有效除去重金属,并且可以用于全雨水过滤系统。

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