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Assessing Groundwater Contamination Risk and Detection of Unknown Sources Using a Multi-Component Reactive Transport Model

机译:使用多组分反应性运输模型评估地下水污染风险和未知来源的检测

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One of the most serious and important environmental issues related to the mining sector in Central Queensland is the contamination of abandoned mine sites. Representative of this issue is the abandoned Mount Morgan gold mine. The potential dispersal of acid mine drainage (AMD), a product of more than 100 million tons of sulphide-rich waste rock, into the surrounding environment, is the most challenging environmental problem currently facing this abandoned mine site. The abandoned Mount Morgan gold mine has multiple pollutant species that involve complex geochemical processes. The present study simulated the flow and transport processes founded on hydrological and geochemical conditions of the real-life field at the mine site. To assess the groundwater contamination risk and detect unknown pollution sources, few chemical species such as Iron and Sulphur were considered as the contaminants. The flow model was simulated using the computer code MODFLOW, and PHT3D was used for the simulation of advection, dispersion and chemical reactions of constituents dissolved in this groundwater system, and to mimic the reactive chemical transport processes in the polluted groundwater. To improve on results from other studies (Datta et al., 2017;Scotney, 2016;Doyle, 2016), a calibrated model was a main focus for this study. Field concentration measurements were matched with the flow simulation outcomes to calibrate the model. The results obtained showed a great potential to model transport of contaminants in the groundwater system using a real-world situation.
机译:与昆士兰州中部的采矿部门有关的最严重和重要的环境问题之一是废弃矿山的污染。这个问题的代表是废弃的摩根金矿。酸矿排水(AMD)的潜在分散,硫化物富含硫化物富岩的产物,进入周围环境中,是目前面临的这个被遗弃的矿山的最具挑战性的环境问题。废弃的摩根金矿具有多种污染物物种,涉及复杂的地球化学过程。本研究模拟了在矿场现场现实场地的水文和地球化学条件上的流动和运输过程。为了评估地下水污染风险并检测未知的污染源,少量熨斗和硫等化学物质被认为是污染物。使用计算机代码模拟流模拟流动模型,PHT3D用于模拟溶解在该地下水系统中的成分的分散,分散和化学反应,并模拟污染地下水中的反应化学输送过程。为了改善其他研究的结果(Datta等,2017; Scotney,2016; Doyle,2016),校准模型是这项研究的主要关注点。与校准模型的流动模拟结果匹配场浓度测量。获得的结果表明,使用现实世界的情况显示地下水系统中的污染物运输的巨大潜力。

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