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Geochemistry of pyrite and whole rock samples from the Getchell Carlin–type gold deposit, Humboldt County, Nevada

机译:来自内华达州洪堡县Getchell Carlin型金矿床的黄铁矿和全岩样品的地球化学

摘要

Carlin-type gold deposits were not recognized as a new major type of gold deposit until the 1960’s. The Getchell deposit, which is now known to be a Carlin-type gold deposit, was discovered in 1934 (Joralemon, 1951). This deposit is located in north central Nevada (Fig. 1). Much is known about the physical characteristics of Carlin-type gold deposits (Cline et al., 2005). An unusual characteristic of these deposits is that free gold is generally not present. Instead, gold occurs as sub-micrometer particles in the mineral pyrite or marcasite. The marcasite and pyrite that are gold bearing commonly occur as rims on gold-free pyrite or marcasite cores. These rims typically contain, in addition to gold, elevated arsenic, antimony, thallium, mercury, and copper. We have samples of ore from the Getchell deposit that contain metals that are not typically present in these deposits. For example, silver, which is typically very minor, is as abundant as gold. It is currently unclear if this silver is in the pyrite rims with the gold and other hydrothermally transported metals, or if the silver is in other minerals in the rock. If this is the case, this would indicate another source for the silver. In this study we are conducting petrographic examinations and chemical analyses of pyrites to quantify gold and other metals. First we used the microscope to look at polished thin sections of the samples. Pyrite crystals were identified that had visible rims giving us a location to analyze for gold and other trace metals. Second, we are using an electron microprobe to quantitatively determine elements and their abundances in pyrite and marcasite cores and rims. We expect to see a suite of elements typical of the Carlin-type systems, such as: Au, Sb, Hg, As, Cu, and Tl in the pyrites. Our study is determining the chemistry of four types of pyrite that have been identified, to locate gold, silver, and other trace metals. Our analyses will indicate whether or not silver occurs with the other Carlin metals, or if it is alternatively present in other minerals in the rock.
机译:卡林型金矿直到1960年代才被认为是一种新型的主要金矿。 Getchell矿床,现在被称为Carlin型金矿床,于1934年被发现(Joralemon,1951年)。该矿床位于内华达州中北部(图1)。关于卡林型金矿床的物理特征,人们已经知道很多(Cline等,2005)。这些矿床的一个不寻常的特征是,通常不存在游离金。取而代之的是,金以黄铁矿或镁铁矿中的亚微米级颗粒形式出现。含金的镁铁矿和黄铁矿通常以轮辋形式出现在无金的黄铁矿或镁铁矿芯上。除了金之外,这些轮辋通常还包含高砷,锑,th,汞和铜。我们有来自Getchell矿床的矿石样本,其中含有通常不存在于这些矿床中的金属。例如,通常非常微量的银与黄金一样丰富。目前尚不清楚该银是否与金和其他水热输送的金属一起位于黄铁矿边缘,或者银是否在岩石中的其他矿物中。如果真是这样,这将表明银的另一个来源。在这项研究中,我们正在进行黄铁矿的岩石学检查和化学分析,以量化金和其他金属。首先,我们使用显微镜观察样品的抛光薄片。鉴定出具有可见边缘的黄铁矿晶体,这为我们提供了分析金和其他痕量金属的位置。其次,我们正在使用电子显微探针来定量测定黄铁矿和镁铁矿芯和边缘中的元素及其丰度。我们期望在黄铁矿中看到一系列卡林型系统的典型元素,例如:Au,Sb,Hg,As,Cu和Tl。我们的研究正在确定已鉴定出的四种类型的黄铁矿的化学性质,以定位金,银和其他痕量金属。我们的分析将表明银是否与其他卡林金属一起出现,或者是否存在于岩石中的其他矿物中。

著录项

  • 作者

    Howell Tim A.; Cline Jean S.;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 English
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