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Challenges for sustainable water use in dolomitic mining regions of South Africa - A case study of uranium pollution Part I: Sources and pathways

机译:南非白云岩矿区可持续用水面临的挑战-铀污染案例研究第一部分:来源和途径

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Extensive karst aquifers developed in compartmentalized dolomitic strata constitute important groundwater reservoirs in semi-arid parts of South Africa. Located in the vicinity of densely populated and increasingly water-stressed metropolitan areas of Gauteng, these aquifers are of strategic importance for future water supply. However, many of the dolomitic groundwater compartments are severely affected by deep-level gold-mining operations. Apart from large-scale dewatering and associated modification of spatial and temporal water availability, gold mining also adversely impacts on the quality of remaining water resources. The focus of this paper is on uranium, a chemically toxic radioactive heavy metal identified by a number of previous studies as the contaminant of concern. Point- and non-point sources of U associated with mining activities in the Wonderfonteinspruit catchment, as an example of a dolomitic gold-mining area, as well as pathways of U pollution are discussed. Associated U loads emanating from major sources are estimated. The results suggest that detected levels of U pollution in the catchment are not only caused by century-old mining activities but also by current operations and that U pollution of water is likely to continue well beyond the closure of mines.
机译:在分隔的白云质地层中发育的大量岩溶含水层构成了南非半干旱地区的重要地下水库。这些蓄水层位于豪登省人口稠密且用水日益紧张的大都市附近,对未来的供水具有战略重要性。但是,许多白云岩地下水层都受到深层金矿开采作业的严重影响。除了大规模脱水和对时空水资源的相关修改外,金矿开采还对剩余水资源的质量产生不利影响。本文的重点是铀,铀是一种化学毒性的放射性重金属,先前的许多研究都将其确定为关注的污染物。讨论了与Wonderfonteinspruit流域的采矿活动相关的U点和非点U的来源,作为白云岩金矿区的一个例子,以及U污染的途径。估算了主要来源产生的相关U载荷。结果表明,在流域中检测到的U污染水平不仅是由具有百年历史的采矿活动造成的,而且还由当前的作业造成,并且水的U污染很可能会持续到矿山关闭为止。

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