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Secondary mineralogy and microtextures of weathered sulfides and manganoan carbonates in mine waste-rock dumps, with implications for heavy-metal fixation

机译:矿山废石场中风化的硫化物和碳酸锰锰矿的次生矿物学和微观结构,对重金属的固定有影响

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摘要

The secondary mineralogy and microtextures of weathered waste-rock dumps derived from the mining of galena-sphalerite ore in quartz veins containing manganoan carbonates were examined using back-scattered electron imaging, X-ray diffraction, and chemical analysis. Sphalerite, pyrrhotite, and arsenopyrite were coated or replaced by iron oxyhydroxides in the earliest stage of the weathering, and were then replaced by sulfur. Galena shows a thin alteration rim of anglesite. Oxidation of pyrite has resulted in porous boxworks of Fe oxyhydroxides. The relative resistance to oxidation, from most resistant to least resistant, was observed to be pyrite galena > arsenopyrite sphalerite > pyrrhotite. Rhodochrosite dissolved to form hydrohetaerolite pseudomorphs, and manganoan calcite has an outer alteration rim of hydrohetaerolite and an inner zone of smithsonite. Rock and mineral fragments were cemented by fine aggregates of plumbojarosite, Fe oxyhydroxides/sulfates, and manganates. Microchemical analysis and sequential extractions showed a close association of As with Fe oxyhydroxides/sulfates, of Pb, Cu, Zn, and As with plumbojarosite, and of Pb and Zn with manganates. Despite their lower acid-neutralizing capacity, manganoan carbonates played an important role in the fixation of Pb and Zn by the formation of manganates.
机译:使用背向散射 <检查了方铅矿-方铅矿矿石在石英 脉中的风化废石 转储的二次矿物学和微观结构。 / sup>电子成像,X射线衍射和化学分析。 在风化的最早阶段,闪锌矿,黄铁矿和毒砂被羟基氧化铁包被或替换为 然后被硫取代。 Galena的角位边缘变薄 。黄铁矿的氧化导致羟基氧化铁的多孔 盒子。观察到的相对抗氧化性,从最强抗性到最弱抗性,是黄铁矿 方铅矿>毒砂闪锌矿>黄铁矿。菱锰矿 溶解形成水滑石假晶,而锰锰矿 方解石具有水滑石的外部蚀变边缘和 的新铁矿内部区域。岩石和矿物碎片被铅锌铁矿,羟基氧化铁/硫酸铁, 和锰酸盐的细小聚集体胶结。微量化学分析和顺序提取 显示,As与羟基氧化铁/硫酸盐,Pb,Cu,Zn和As与铅钛铁矿以及铅和Zn 含锰。尽管酸中和能力较低,但 碳酸锰锰酸盐通过形成锰酸盐而在Pb和Zn的固定 中起着重要作用。

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  • 来源
    《American Mineralogist》 |2003年第12期|00001933-00001942|共10页
  • 作者单位

    Department of Earth and Environmental Sciences, Andong National University, Andong 760–749, South Korea;

    Department of Earth and Environmental Sciences, Andong National University, Andong 760–749, South Korea;

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