加拿大拉布拉多海槽Montagnais still杂岩岩浆硫化物矿床中贵金属的分布

William D. Smith, W. Maier, I. Bliss
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摘要

利用光学和电子显微镜结合激光烧蚀-电感耦合等离子体质谱分析方法,研究了青海北部拉布拉多海槽Montagnais Sill杂岩6种岩浆硫化物成矿类型中贵金属的分布特征。主要的硫化物矿物有磁黄铁矿、黄铜矿和镍黄铁矿,伴生有闪锌矿和硫化物。此外,超镁铁质组合中还存在古巴长石、三铁长石和镁铁长石。贵金属矿物组合以碲化物、富银金和绿柱石为主,一般赋存于硫化物边缘。少量含铱族铂族元素和含铑颗粒被发现,质量平衡计算表明这些元素一般赋存于磁黄铁矿和镍黄铁矿中。几乎所有的铂和金都赋存于贵金属晶粒中,而钯则分布在贵金属晶粒和镍黄铁矿之间。在存在的地方,磺胺类化合物是铱族铂族元素,Rh, Pd, Te和Au的关键宿主。超镁铁质硫化物中存在三辉石、立方辉石和镁辉石,而不存在镍辉石溶出片,表明初始硫化物熔体具有较高的金属硫比。球状硫化物组合中的硫化物来自不混溶的富砷熔体,该熔体在含砷底板岩石的同化作用下从硫化物熔体中析出。在本研究中,硫化物的组成与镍铜为主的矿床相一致,而不是铂族元素为主的矿床。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distribution of noble metals in magmatic sulfide occurrences in the Montagnais Sill Complex, Labrador Trough, Canada
We have characterized the distribution of noble metals among six styles of magmatic sulfide mineralization in the Montagnais Sill Complex of the Labrador Trough in northern Québec using optical and electron microscopy combined with laser ablation-inductively coupled plasma-mass spectrometry trace element analysis of sulfides. The principal sulfide minerals include pyrrhotite, chalcopyrite, and pentlandite with accessory sphalerite and sulfarsenides. In addition, cubanite, troilite, and mackinawite are present in ultramafic-hosted assemblages. The precious metal mineral assemblages are dominated by tellurides, Ag-rich gold, and sperrylite which generally occur at the margins of sulfides. Few iridium-group platinum group element- and Rh-bearing grains were identified and mass-balance calculations show that these elements are generally hosted in pyrrhotite and pentlandite. Virtually all Pt and Au are hosted in precious metal grains, whereas Pd is distributed between precious metal grains and pentlandite. Where present, sulfarsenides are a key host of iridium-group platinum group element, Rh, Pd, Te, and Au. The presence of troilite, cubanite, and mackinawite and the absence of pentlandite exsolution lamellae in the ultramafic-hosted sulfides indicates an initial sulfide melt with a high metal/S ratio. Sulfarsenides present among globular sulfide assemblages derive from an immiscible As-rich melt that exsolved from the sulfide melt in response to the assimilation of the As-bearing floor rocks. In this study, the composition of sulfides is consistent with those derived from Ni-Cu-dominated deposits and not platinum group element-dominated deposits.
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