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首页> 外文期刊>Environmental Earth Sciences >Investigation of pyrite oxidation and acid mine drainage characterization associated with Razi active coal mine and coal washing waste dumps in the Azad shahr–Ramian region, northeast Iran
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Investigation of pyrite oxidation and acid mine drainage characterization associated with Razi active coal mine and coal washing waste dumps in the Azad shahr–Ramian region, northeast Iran

机译:伊朗东北部Azad shahr-Ramian地区与Razi活性煤矿和洗煤废料场相关的黄铁矿氧化和酸性矿山排水特性研究

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摘要

Acid mine drainage (AMD) pollution is considered to be the most serious water pollution problem in mining areas. AMD containing iron sulfates and other components can affect the receiving water bodies. Pyrite oxidation and AMD generation can be considered as important processes that may take place in the wastes produced by coal mining and coal washing operations in the Golestan province (northeast Iran). The study area is characterized by appropriate atmospheric conditions that favor pyrite oxidation and the presence of a large amount of water bodies. This study attempts to consider pyrite oxidation and AMD generation in the Azad shahr–Ramian region. The impact of AMD on the quality of the surface water bodies was investigated by taking samples and analyzing them for hydro-geochemical parameters. Stiff and Piper diagrams were used to represent chemical analyses of water samples. The coal samples taken from different depths at four points on two different coal waste dumps were analyzed to find the fraction of pyrite that remained in the waste particles to investigate the pyrite oxidation process. A computational fluid dynamic package called PHOENICS was used to model pyrite oxidation process numerically. The results obtained from the geochemical analyses of water and coal samples and numerical simulation show pyrite oxidation and acid generation in the region. However, the presence of carbonate rocks raised the pH of the water samples. The drainages of the Razi mine may be recognized as natural alkaline mine drainages.
机译:酸性矿井排水(AMD)污染被认为是矿区最严重的水污染问题。含有硫酸铁和其他成分的AMD会影响接收水体。黄铁矿氧化和AMD的产生可以被认为是可能发生在Golestan省(伊朗东北部)的煤矿开采和洗煤活动产生的废物中的重要过程。研究区域的特点是适宜的大气条件,有利于黄铁矿的氧化和大量水体的存在。本研究试图考虑Azad shahr-Ramian地区的黄铁矿氧化和AMD的产生。通过取样并分析其水文地球化学参数,研究了AMD对地表水体质量的影响。刚性图和派珀图用于表示水样的化学分析。分析了在两个不同的煤废料堆中从四个位置的不同深度处采集的煤样品,以发现残留在废物颗粒中的黄铁矿部分,以研究黄铁矿的氧化过程。使用称为PHOENICS的计算流体动力学软件包对黄铁矿氧化过程进行数值建模。通过对水和煤样品进行地球化学分析和数值模拟获得的结果表明,该地区黄铁矿的氧化和酸的产生。但是,碳酸盐岩石的存在提高了水样品的pH值。拉兹矿山的排水系统可以被认为是天然碱性矿山的排水系统。

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