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An integrated model for assessing the risk of TCE groundwater contamination to human receptors and surface water ecosystems

机译:评估TCE地下水污染人类受体和地表水生态系统的风险的综合模型

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The practical implementation of the European Water Framework Directive has resulted in an increased focus on the hyporheic zone. In this paper, an integrated model was developed for evaluating the impact of point sources in groundwater on human health and surface water ecosystems. This was accomplished by coupling the system dynamics-based decision support system CARO-PLUS to the aquatic ecosystem model AQUATOX using an analytical volatilization model for the stream. The model was applied to a case study where a trichloroethylene (TCE)-contaminated groundwater plume is discharging to a stream. The TCE source will not be depleted for many decades; however, measured and predicted TCE concentrations in surface water were found to be below human health risk management targets. Volatilization rapidly attenuates TCE concentrations in surface water. Thus, only a 30-m stream reach fails to meet surface water quality criteria. An ecological risk assessment found that the TCE contamination did not impact the stream ecosystem. Uncertainty assessment revealed hydraulic conductivity to be the most important site-specific parameter. These results indicate that contaminant plumes with μg L~(-1) concentrations of TCE entering surface water systems may not pose a significant risk.
机译:《欧洲水框架指令》的实际实施导致人们更加关注低渗区。在本文中,开发了一个集成模型来评估地下水中点源对人类健康和地表水生态系统的影响。这是通过将基于系统动力学的决策支持系统CARO-PLUS与水流生态分析模型耦合到水生生态系统模型AQUATOX来实现的。该模型应用于案例研究,其中受三氯乙烯(TCE)污染的地下水羽流排放到河流中。传统文化表现形式的来源将不会耗尽数十年。但是,发现和预测的地表水中三氯乙烯的浓度低于人类健康风险管理指标。挥发迅速减弱了地表水中三氯乙烯的浓度。因此,只有30米的水流无法满足地表水水质标准。生态风险评估发现,TCE污染并未影响河流生态系统。不确定性评估表明,水力传导率是最重要的现场特定参数。这些结果表明,进入地表水系统的三氯乙烯浓度为μgL〜(-1)的污染物羽流可能不会构成重大风险。

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