首页> 外文学位 >KINETICS OF SULFATE REDUCTION, METASTABLE SULFUR, AND THE GENESIS OF HYDROTHERMAL URANINITE DEPOSITS, MISSISSIPPI VALLEY LEAD-ZINC DEPOSITS, BARITE DEPOSITS AND EPITHERMAL BASE AND PRECIOUS METAL DEPOSITS.
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KINETICS OF SULFATE REDUCTION, METASTABLE SULFUR, AND THE GENESIS OF HYDROTHERMAL URANINITE DEPOSITS, MISSISSIPPI VALLEY LEAD-ZINC DEPOSITS, BARITE DEPOSITS AND EPITHERMAL BASE AND PRECIOUS METAL DEPOSITS.

机译:硫酸盐还原,亚稳硫的动力学,以及水热铀酸盐矿床,密西西比河谷铅锌矿床,重晶石矿床和表皮碱和贵金属矿床的成因。

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摘要

At temperatures greater than approximately 250(DEGREES)C, the oxidation state of sulfur controls the redox potential of most hydrothermal solutions. As a sulfate-bearing hydrothermal solution cools to less than about 250(DEGREES)C, the rate of oxidation by sulfate diminishes. Once the solution has cooled to around 200(DEGREES)C, the rate of oxidation by sulfate is so slow that sulfate is essentially removed from the redox chemistry. This loss of an important oxidizing agent without a comparable loss of a reducing agent makes the solution more effective at reduction. Reduction by this process is a likely precipitation mechanism for uraninite, native gold and native silver in epithermal ore deposits.; As a consequence of kinetics, natural redox reactions involving H(,2)S at less than 250(DEGREES)C produce partly oxidized sulfur species. Available kinetic data indicate that these species can exist as long-lived metastable components of epithermal solutions. The partly oxidized sulfur species may act as complexing agents and, more importantly, they allow the solution to carry sulfur in a form compatible with the simultaneous transport of lead, zinc, and barium. In the case of Mississippi Valley-type lead-zinc deposits, reduction of partly oxidized sulfur species by organic carbon in the host rocks produces sulfide sulfur and triggers the precipitation of sulfide ores. Later in the paragenesis, mixing of the same mineralizing solution with oxygenated ground water oxidizes metastable sulfur to sulfate and precipitates barite. In convecting meteoric-hydroghermal systems around plutons, heating causes partly oxidized sulfur species to disproportionate to H(,2)S and SO(,4)('=), which initiates the simultaneous precipitation of sulfide and sulfate minerals.
机译:在高于约250℃的温度下,硫的氧化态控制着大多数水热溶液的氧化还原电势。当含硫酸盐的水热溶液冷却到低于约250℃时,硫酸盐的氧化速率降低。一旦溶液冷却到约200℃,硫酸盐的氧化速度就很慢,以致于基本上从氧化还原化学中除去了硫酸盐。重要氧化剂的这种损失而还原剂没有可比的损失,使得溶液在还原方面更有效。通过该过程的还原可能是超热矿石矿床中的铀矿,天然金和天然银的沉淀机制。动力学的结果是,涉及低于250(DEGREES)C的H(,2)S的自然氧化还原反应会产生部分氧化的硫。现有的动力学数据表明,这些物质可以作为超热溶液的长寿命亚稳组分存在。部分氧化的硫物质可以充当络合剂,更重要的是,它们使溶液中的硫以与铅,锌和钡的同时运输相容的形式携带。在密西西比河谷型铅锌矿床中,主岩中有机碳对部分氧化的硫物质的还原会产生硫化物硫,并引发硫化矿石的沉淀。在共生的后期,将相同的矿化溶液与含氧的地下水混合,将亚稳硫氧化为硫酸盐并沉淀重晶石。在围绕对流子的对流-水热系统中,加热会使部分氧化的硫物质歧化为H(,2)S和SO(,4)('=),从而引发硫化物和硫酸盐矿物的同时沉淀。

著录项

  • 作者

    SPIRAKIS, CHARLES STANLEY.;

  • 作者单位

    University of Colorado at Boulder.;

  • 授予单位 University of Colorado at Boulder.;
  • 学科 Geology.
  • 学位 Ph.D.
  • 年度 1983
  • 页码 96 p.
  • 总页数 96
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:51:20

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