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Integrated modelling for assessing the risk of groundwater contaminants to human health and surface water ecosystems

机译:用于评估地下水污染物对人类健康和地表水生态系统的风险的综合建模

摘要

The practical implementation of the European Water Framework Directive has resulted in an increased focus on the groundwater-surface water interaction zone. A gap exists with respect to preliminary assessment methodologies that are capable of evaluating and prioritising point sources of contamination. In particular, adaptive management tools designed to work with sparse data sets from preliminary site assessments are needed which can explicitly link contaminant point sources with groundwater, surface water and ecological impacts. Here, a novel integrated modelling approach was employed for evaluating the impact of a TCE groundwater plume, located in an area with protected drinking water interests, to human health and surface water ecosystems. This is accomplished by coupling the system dynamicsbased decision support system CARO-Plus to the aquatic ecosystem model AQUATOX via an analytical volatilisation model for the stream. The model is tested on a Danish case study involving a 750 m long TCE groundwater plume discharging into a stream. The initial modelling results indicate that TCE contaminant plumes with μgL-1 concentrations entering surface water systems do not pose a significant risk to either human or ecological receptors.
机译:《欧洲水框架指令》的实际实施导致人们更加关注地下水与地表水的相互作用区域。在初步评估方法方面存在差距,该方法能够评估污染源并对其进行优先排序。特别是,需要设计适应性的管理工具来处理来自初步现场评估的稀疏数据集,这些工具可以将污染点源与地下水,地表水和生态影响明确联系起来。在这里,采用了一种新颖的综合建模方法来评估位于受保护饮用水利益地区的TCE地下水羽流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通过水流的分析挥发模型耦合到水生生态系统模型AQUATOX来实现的。该模型在丹麦案例研究中进行了测试,涉及750 m长的TCE地下水羽流排入河流。初始建模结果表明,进入地表水系统的浓度为μgL-1的TCE污染物羽流不会对人类或生态受体造成重大风险。

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