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Propagation of environmental risk from contaminant transport through groundwater and stream networks

机译:污染物通过地下水和河流网络的传播对环境的危害

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We use a Lagrangian stochastic advective-reactive (LaSAR) approach to model coupled groundwater and surface water contaminant transport. In this approach, physical (advective) solute travel time distributions constitute main functions for the contaminant transport representation. In a specific catchment area case study, we show how these travel time distributions, for separate groundwater and stream network systems and for the linked groundwater-stream systems of whole catchments, can be modelled and quantified from available field data. We further use the LaSAR modelling approach in an extreme-scenario methodology for investigating how the risk (probability) of concentrations exceeding given environmental or health-based concentration limits may propagate downstream of a contaminant source for various spatial source extents and contaminant release magnitudes and dynamics under different aquifer conditions. Results show that the average relation between characteristic advective transport and natural rnattenuation time scales is essential and in some (with results identifying also in which) cases sufficient information for assessing if and where this risk may decline below acceptable levels downstream of the source zone. The presented general quantification methodology and specific exemplification results may provide useful guidelines for emergency remediation of contaminated land sites and for prioritisation decisions and scoping calculations to focus further investigations of long-term remediation options on critical site and contaminant parameters.
机译:我们使用拉格朗日随机对流反应(LaSAR)方法对地下水和地表水污染物的耦合运移进行建模。在这种方法中,物理(对流)溶质传播时间分布构成了污染物迁移表示的主要功能。在一个特定的集水区案例研究中,我们展示了如何根据可用的现场数据对独立的地下水和水流网络系统以及整个集水区的链接的地下水-水流系统的这些旅行时间分布进行建模和量化。我们在极端情景方法中进一步使用LaSAR建模方法来研究浓度超过给定环境或基于健康的浓度限值的浓度的风险(概率)如何在各种空间源范围以及污染物释放量和动态范围内传播到污染物源的下游。在不同含水层条件下。结果表明,典型的对流输运与自然衰减时间尺度之间的平均关系至关重要,并且在某些情况下(结果还确定了哪些情况下),有足够的信息来评估这种风险是否以及在何处可能降至源区下游可接受的水平以下。提出的一般量化方法和特定的示例结果可以为紧急修复受污染的土地场地以及确定优先次序的决定和范围计算提供有用的指导,以进一步研究对关键场地和污染物参数的长期补救方案。

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