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Analysis and Feasibility of Measures to Minimize the Impact of Acid Mine Waters Discharged by Abandoned Copper-Sulphide Mines on Hydrosphere of the Tagil River

机译:减少废弃铜 - 硫化物矿井酸性矿水对Tagil River水液体煤层施用酸性矿水水域影响的分析及可行性

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Mass closure of copper-sulphide mining sites both in the Sverdlovsk Region and worldwide resulted in the emergence of environmental challenges. One of such challenges is generation and discharge of acid mine waters. Manmade and natural factors have their impact on chemical composition of mine waters due to activation of sulphides oxidation processes taking place in disturbed rock mass and mines. Concentrations of components in treated mine waters are much higher than MAC (dozens and hundreds of times for iron, copper and zinc). That results in pollution of hydrosphere which goes on for decades and spreads over large distances along rivers. Quite a few reasons cause environmental degradation of hydrosphere in old industrial districts. These are baseline amounts of metals in the hydrosphere, low rates of self-rehabilitation of dead pits, high amounts of acid waters, high amounts of contaminants in mine waters, imperfection of treatment systems. Given the demand of mine waters treatment over decades, improvement of existing treatment systems and implementation of new technologies are required.
机译:铜硫化铜矿地区的大规模闭合在Sverdlovsk地区和全球范围内均导致环境挑战的出现。其中一种挑战是酸性矿水的产生和排放。由于硫化物氧化过程的激活发生在令人不安的岩体和矿山,Manade和Natural因素对矿水的化学成分产生影响。经处理的矿井水中的组分浓度远高于Mac(铁,铜和锌数十个和数百次)。这导致水圈污染了几十年,沿着河流沿着大距离传播。相当多的原因导致旧工业区水层的环境退化。这些是水层中的基线金属量,耐死坑的自我恢复率低,酸水域大量污染物,矿水中的污染物,治疗系统的缺陷。鉴于矿山水域的需求数十年来,需要改进现有的治疗系统和新技术的实施。

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