首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >Geochemistry of sulfide minerals from skarn Cu (Au) deposits in the Fenghuangshan ore field, Tongling, eastern China: Insights into ore-forming process
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Geochemistry of sulfide minerals from skarn Cu (Au) deposits in the Fenghuangshan ore field, Tongling, eastern China: Insights into ore-forming process

机译:凤凰山矿石岩石(AU)沉积物的硫化物矿物质的地球化学矿物质,东部,中国东部地区:矿石成矿过程见解

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In situ elemental compositions of sulfide minerals have been widely applied to trace ore-forming processes of magmatic-hydrothermal ore systems, yet the application of elemental compositions of the sulfide minerals in skarn ore deposits is still restricted by the lack of understanding of their behaviors during the skarn formation processes. In this study, in situ (LA-ICP-MS and EPMA) elemental compositions of medium- to coarse-grained euhedral pyrite and xenomorphic granular chalcopyrite are investigated for the Fenghuangshan and Baoshantao skarn Cu (Au) deposits in the Tongling region, eastern China. The results show that the studied pyrite samples have relatively consistent trace element composition characteristics, while the chalcopyrite studied displays high Zn, Ag and Pb contents, and relatively high Bi content. Au, Ag, Cu, Pb, Bi, Sb and Tl are mainly of lattice bound appearance in the pyrite structure. The Au, Ag, Sb, Pb and Bi are mainly incorporated into the chalcopyrite structure as coupled substitutions. Low Au (mainly < 0.1 ppm), Se (< 3 ppm) and As (< 100 ppm) contents, and high Co/Ni (mainly > 1) and Se/Tl (mainly > 10) ratios of the pyrite studied, and high Sn (> 10 ppm) and low Tl (< 1 ppm) contents of the chalcopyrite imply a high temperature, high oxygen fugacity and acidic pH magmatic-hydrothermal fluid for the Tongling skarn Cu (Au) mineralization. High Zn and Bi contents in the pyrite and chalcopyrite studied, and low Co/Ni ratios (< 0.1) of the pyrite from quartz monzodiorite probably indicate a sedimentary component from subducted slab contribution to the magmatic-hydrothermal system.
机译:原位元素的硫化物矿物的组合物已被广泛应用于Magmatic-hymothermal矿石系统的痕量矿石成型方法,但在缺血矿床中的硫化物矿物质的基本组合物的应用仍然受到对其行为期间缺乏理解的限制矽卡斯形成过程。在本研究中,原位(La-ICP-MS和EPMA)中汤山和Baoshantao Skarn Cu(Au)沉积在中国东部铜绿山和Baoshantao Skarn Cu(Au)沉积物的基础 - 粗粒粒子硫酸盐和异晶颗粒状菌丝的元素组合物。结果表明,研究的黄铁矿样品具有相对一致的微量元素组合物特征,而研究的硫代铜矿呈现出高Zn,Ag和Pb内容物,以及相对高的BI含量。 Au,Ag,Cu,Pb,Bi,Sb和T1主要是胶质结构中的晶格结合外观。 Au,Ag,Sb,Pb和Bi主要掺入黄铜矿结构中作为偶联的取代。低Au(主要是<0.1ppm),Se(<3 ppm)和As(<100ppm)含量,高CO / Ni(主要> 1)和硫铁矿的含量(主要> 10)比率,以及高Sn(> 10 ppm)和低T1(<1ppm)含量的氯偶矿含量意味着高温,高氧逃逸性和酸性pH岩浆 - 热液流体,用于铜隆矽卡岩Cu(Au)矿化。从石英单巨石的硫铁矿和黄石矿中的高Zn和Bi含量和石英莫替钛矿的低CO / Ni比率(<0.1)的硫铁矿可能表示从岩浆 - 水热系统的塌陷板贡献的沉积组分。

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