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MINE WATER FOOTPRINT IN THE JOHANNESBURG AREA, SOUTH AFRICA: ANALYSIS BASED ON EXISTING AND MEASURED DATA

机译:南非约翰内斯堡地区的矿山水足迹:基于现有数据和实测数据的分析

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摘要

Groundwater quality in the Johannesburg area has been severely affected by mine water. Surface and ground water quality characteristics have been thoroughly assessed based on water chemistry. The results show that the dilution factor for mine water in the receiving streams ranges from 41% to 90% as a result of interaction with the dolomitic water that has an alkaline nature. The estimated SO4/C1 ratio lies between 0 and 306, while the Fe/Ca ratio ranges between 0 and 6. High SO4/C1 (>0) and Fe/Ca (>2.5) values potentially indicate the interference of mine water with the groundwater system. The closure of mines in the Johannesburg area has resulted in a long-term rise in the groundwater level, with a rate that varies between 1 m/y and 2 m/y, which can be related to the widespread plume of rising mine water in the aquifers. This severely impacts the quality of fresh water resources.
机译:约翰内斯堡地区的地下水水质受到矿井水的严重影响。已根据水化学对地表水和地下水水质特征进行了全面评估。结果表明,由于与具有碱性性质的白云质水相互作用,接收流中矿井水的稀释系数在41%至90%的范围内。估计的SO4 / C1比在0到306之间,而Fe / Ca比在0到6之间。较高的SO4 / C1(> 0)和Fe / Ca(> 2.5)值可能表明矿井水对水的干扰。地下水系统。约翰内斯堡地区的矿山关闭导致地下水位长期上升,其变化率在1 m / y和2 m / y之间,这可能与矿井水上升的广泛羽状流有关。含水层。这严重影响了淡水资源的质量。

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