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Aqueous transport and fate of pollutants in mining area: a case study of Khibiny apatite-nepheline mines, the Kola Peninsula, Russia

机译:矿区的水运和污染物的命运:俄罗斯科拉半岛Khibiny磷灰石霞石矿的案例研究

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Seven decades of mining activity on the Khibiny apatite-nepheline ore deposits and current large excavation volumes have resulted in elevated concentrations of total dissolved solids and metals in various waters near the mines. To assess the major sources of pollution inputs and fate of pollutants in watercourses draining the mine workings, snow cover, surface waters, and deposited and suspended sediments were sampled and analyzed. Water chemistry data showed that discharges of the mine wastewater are the main contributor to solute and metal loads in the streams. Atmospheric transport of metals and their accumulation in the snowpack account for a sharp increase in metal concentrations in stream waters during spring snowmelt. Data on bed and suspended sediments indicated that the streams have a low capacity of immobilization of metals. The dominant mechanism responsible for decrease in solutes in watercourses is dilution. The results demonstrated the necessity for remediation actions to address pollutant loads due to wastewater discharges.
机译:在Khibiny磷灰石-霞石矿床上进行的七十年采矿活动以及当前的大量开挖导致矿山附近各种水中的总溶解固体和金属浓度升高。为了评估排入矿场的水道中主要的污染输入源和污染物的命运,对积雪,地表水以及沉积和悬浮沉积物进行了采样和分析。水化学数据表明,矿山废水的排放是造成溪流中溶质和金属负载的主要因素。在春季融雪期间,大气中的金属运输及其在积雪中的积累导致溪流水中金属浓度的急剧增加。床和悬浮沉积物上的数据表明,溪流固定金属的能力很低。造成河道溶质减少的主要机制是稀释。结果表明采取补救措施以应对废水排放造成的污染物负荷的必要性。

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