首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Accidental Water Pollution Risk Analysis of Mine Tailings Ponds in Guanting Reservoir Watershed Zhangjiakou City China
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Accidental Water Pollution Risk Analysis of Mine Tailings Ponds in Guanting Reservoir Watershed Zhangjiakou City China

机译:张家口市官厅水库集水区矿山尾矿池意外水污染风险分析

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摘要

Over the past half century, a surprising number of major pollution incidents occurred due to tailings dam failures. Most previous studies of such incidents comprised forensic analyses of environmental impacts after a tailings dam failure, with few considering the combined pollution risk before incidents occur at a watershed-scale. We therefore propose Watershed-scale Tailings-pond Pollution Risk Analysis (WTPRA), designed for multiple mine tailings ponds, stemming from previous watershed-scale accidental pollution risk assessments. Transferred and combined risk is embedded using risk rankings of multiple routes of the “source-pathway-target” in the WTPRA. The previous approach is modified using multi-criteria analysis, dam failure models, and instantaneous water quality models, which are modified for application to multiple tailings ponds. The study area covers the basin of Gutanting Reservoir (the largest backup drinking water source for Beijing) in Zhangjiakou City, where many mine tailings ponds are located. The resultant map shows that risk is higher downstream of Gutanting Reservoir and in its two tributary basins (i.e., Qingshui River and Longyang River). Conversely, risk is lower in the midstream and upstream reaches. The analysis also indicates that the most hazardous mine tailings ponds are located in Chongli and Xuanhua, and that Guanting Reservoir is the most vulnerable receptor. Sensitivity and uncertainty analyses are performed to validate the robustness of the WTPRA method.
机译:在过去的半个世纪中,由于尾矿坝的故障,发生了惊人数量的重大污染事件。以往大多数此类事件的研究都包括对尾矿坝破坏后的环境影响进行法医分析,很少有人考虑在流域范围内发生事件之前的综合污染风险。因此,我们提出了流域规模的尾矿池污染风险分析(WTPRA),该分析是根据先前流域规模的意外污染风险评估而设计的,用于多个矿山尾矿池。使用WTPRA中“源-路径-目标”的多条路径的风险等级来嵌入转移和合并的风险。使用多准则分析,大坝破坏模型和瞬时水质模型对以前的方法进行了修改,将其修改以应用于多个尾矿池。研究区域覆盖了张家口市的古滩亭水库(北京最大的后备饮用水水源)流域,那里有许多矿山尾矿池。结果图表明,固特庭水库下游及其两个支流盆地(清水河和龙阳河)的风险较高。相反,中游和上游的风险较低。分析还表明,最危险的矿山尾矿池位于崇礼和宣化,而官厅水库是最脆弱的受体。进行敏感性和不确定性分析以验证WTPRA方法的鲁棒性。

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