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An evaluative mode for assessing the fate and effects of contaminants in engineered wetlands

机译:一种评估工程湿地中污染物的命运和影响的评估模式

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摘要

To investigate the potential of engineered wetlands to remove contaminants from wastewaters, a steady-state and temporal multimedia model was developed for a free water surface design. The model estimates contaminant fate throughout wetland media, assesses the potential for bioaccumulation, and evaluates ecological risk using relevant toxicological endpoints (i.e. EC5). Illustrative examples for pyrene, arsenic, a naphthenic acid, and a chemical universe defined by a range of log KOW (-0.5 – 7.5) and log KOA (-4.5 – 11.5) were used to demonstrate the models applications. In these illustrative applications, the steady-state removal efficiencies of pyrene, arsenic, and the naphthenic acid from the wetland were 41%, 83%, and 31%, respectively. The most efficiently removed chemicals had a log KOW ≈ 6 and log KOA ≤ 2.5. Removal efficiency was lowest for substances showing reduced evapotranspiration flux. This study concluded that wetland treatment could be a feasible method of remediation for certain contaminants in wastewater.
机译:为了研究工程湿地去除废水中污染物的潜力,开发了用于自由水面设计的稳态和时态多媒体模型。该模型估算整个湿地介质中污染物的命运,评估生物蓄积的潜力,并使用相关的毒理学终点(即EC5)评估生态风险。由log KOW(-0.5 – 7.5)和log KOA(-4.5 – 11.5)范围定义的pyr,砷,环烷酸和化学宇宙的说明性示例用于说明模型的应用。在这些示例性应用中,从湿地中the,砷和环烷酸的稳态去除效率分别为41%,83%和31%。去除效率最高的化学品的log KOW≈6,log KOA≤2.5。对于蒸散通量降低的物质,去除效率最低。这项研究得出的结论是,湿地处理可能是补救废水中某些污染物的可行方法。

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