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Structurally and superficially bound gold in pyrite from deposits of different genetic types

机译:黄铁矿中不同基因类型矿床的结构和表面结合的金

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The gold distribution in 32 pyrite samples and some samples of other ore minerals is studied using the method of statistical samplings of analytical data for single crystals. The samples were recovered from deposits of different genetic types within the largest gold provinces of Russia and Uzbekistan. The contents of uniformly distributed gold and the ratios of its structurally to superficially bound forms have been determined. According to the Au–As diagram for the chemical states of gold, uniformly distributed gold in pyrite is chemically bound in the overwhelming majority of cases. The previous experimental data suggest that it is partly incorporated into pyrite and partly into the structures of nanosized nonautonomous phases on the surface of the pyrite crystals. Micro- and nanoparticles of native gold might appear during postgrowth transformations of these phases. Data on the other ore minerals suggest that the dependence of the content of uniformly distributed gold on the size or specific surface area of the crystal and the superficial position of its considerable part are common to the ore minerals. It is shown for pyrite that the observed features are commonly found at deposits of different genetic types, only with differences in the slope and determination coefficients of the dependences. The size dependences of the contents of gold and other elements in pyrite are genetically significant, because they give an insight into the ore-forming processes. The data on structurally bound gold permit comparative evaluation of gold concentrations in ore fluids forming gold deposits of different genetic types.
机译:使用单晶分析数据的统计抽样方法,研究了32个黄铁矿样品和一些其他矿石矿物样品中的金分布。这些样品是从俄罗斯和乌兹别克斯坦最大的黄金省份内不同遗传类型的矿床中回收的。已经确定了均匀分布的金的含量及其在结构上与表面结合形式的比率。根据金的化学状态的Au-As图,在绝大多数情况下,黄铁矿中均匀分布的金是化学结合的。先前的实验数据表明,它部分地掺入了黄铁矿,部分地掺入了黄铁矿晶体表面上的纳米级非自治相的结构。在这些阶段的生长后转化过程中,可能会出现天然金的微颗粒和纳米颗粒。关于其他矿石矿物的数据表明,均匀分布的金含量对晶体的尺寸或比表面积及其相当部分的表层位置的依赖性是矿石矿物所共有的。对于黄铁矿表明,观察到的特征通常存在于不同遗传类型的矿床中,但斜率和依赖性的确定系数不同。硫铁矿中金和其他元素含量的大小相关性在遗传上很重要,因为它们可以洞悉成矿过程。结构结合金的数据可以比较评估形成不同遗传类型金矿床的矿液中的金浓度。

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