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首页> 外文期刊>Journal of Geochemical Exploration: Journal of the Association of Exploration Geochemists >Environmental geochemistry of As and Pb in a copper low-grade dump, Miduk copper mine, Kerman province, SE Iran
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Environmental geochemistry of As and Pb in a copper low-grade dump, Miduk copper mine, Kerman province, SE Iran

机译:作为铜低级倾倒,Miduk铜矿,克尔曼省,SE伊朗的环境地球化学

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In this study, the geochemistry of As and Pb was investigated in a copper low-grade dump of the Miduk copper mine, Iran. The bulk chemical analyses were combined with complementary mineralogical approaches including X-ray Diffraction (XRD), Scanning Electron Microscope (SEM-EDS), Electron Probe Micro-Analysis (EPMA), and Raman Spectroscopy (RS) to characterise a high pyrite dump. Environmental stability of the newly formed minerals was investigated using leaching experiments and thermodynamic modelling employing PHREEQC code. The distribution of As and Pb with minerals were investigated in addition to the extent of their mobilisation. The bulk concentrations of As (Mean = 27.28, Min = 12.4, and Max = 59.5 mg/kg) and Pb (Mean = 72.05, Min = 19, and Max = 159 mg/kg) were within the normal range of the mine waste rocks. Arsenic and lead were associated with pyrite crystal and the enclosed form of galena in pyrite, respectively. The oxidation of pyrite was confirmed according to the high concentration of SO42- (ranges from 3950 to 286,000 mg/L) in the waste leachate and the prevalence of oxidation evidence around the pyrite particles. Due to the lack of carbonate minerals within the low-grade dump, the pH values of waste leachates were acidic (ranges from 1.47 to 4.23). The precipitation of secondary minerals formed by weathering including coquimbite, plumbojarosite, and brochantite was identified. The association of As and Pb along with hydroxosulphates was confirmed. Consequently, the presence of Pb-As-jarosite-group minerals was one of the main controlling factors on the low concentration of As (ranges from 0.05 to 8.25 mg/L) and Pb (ranges from 0.07 to 1.61 mg/L) in the waste leachates of the dump. The highest solubility of both As and Pb was observed at pH = 2. The oxidation of pyrite occurred during the 96 h leaching test.
机译:在这项研究中,在Miduk铜矿,伊朗的铜低级倾卸地球化学中研究了地球化学。将散装化学分析与互补矿物学方法相结合,包括X射线衍射(XRD),扫描电子显微镜(SEMEDS),电子探针微分析(EPMA)和拉曼光谱(RS),以表征高硫铁矿倾卸。使用Phreeqc码的浸出实验和热力学建模研究了新形成的矿物的环境稳定性。除了动员的程度之外,还调查了与矿物质的分布和Pb。体积浓度(平均= 27.28,min = 12.4和Max = 59.5mg / kg)和Pb(平均值72.05,min = 19,min = 159mg / kg)在矿井废物的正常范围内岩石。砷和铅分别与硫铁矿晶体和封闭形式的硫铁矿的封闭形式有关。在废渗滤液中根据SO42-(范围为3950至286,000mg / L)的高浓度和氧化证据的血液颗粒周围的氧化证据的患病率,证实了黄铁矿的氧化。由于低级倾卸内的碳酸盐矿物质,废渗滤液的pH值是酸性的(范围为1.47-4.23)。鉴定了由耐候形成的辅助矿物质的沉淀,包括CoQuimbite,Plumbojaral和铜肽。确认AS和Pb与羟基硫酸盐的缔合。因此,Pb-AS-族族基矿物的存在是低浓度(0.05至8.25 mg / L)和Pb(范围为0.07至1.61 mg / L)的主要控制因子之一垃圾的废物浸出。在pH = 2时观察到AS和Pb的最高溶解度。在96小时浸出试验期间,硫铁矿的氧化发生。

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