首页> 外文期刊>Mineralium deposita >Chalcophile and platinum-group element distribution in the Ultramafic series of the Stillwater Complex, MT, USA-implications for processes enriching chromite layers in Os, Ir, Ru, and Rh
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Chalcophile and platinum-group element distribution in the Ultramafic series of the Stillwater Complex, MT, USA-implications for processes enriching chromite layers in Os, Ir, Ru, and Rh

机译:美国蒙大拿州斯蒂尔沃特综合体的超镁铁质系列中的嗜绿菌和铂族元素分布-对富集Os,Ir,Ru和Rh中亚铬铁矿层的过程的启示

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All of the rocks from the Ultramafic series of the Stillwater Complex are enriched in PGE relative to most mafic magmas. Furthermore, the chromite layers are particularly enriched in IPGE (Os, Ir, and Ru) and Rh. This enrichment appears to be a common characteristic of ultramafic rocks from many types of settings, layered intrusions, ophiolites, and zoned complexes. We have carried out a petrological, mineralogical, and geochemical study to assess how the enrichment occurred in the case of the Stillwater Complex and applied our results to the chromite layers of the Bushveld and Great Dyke complexes. The minerals that now host the PGE are laurite and fine-grained intergrowths of pentlandite, millerite, and chalcopyrite. The laurite occurs as inclusions in chromite, and mass balance calculations indicate that it hosts most of the Os, Ir, and Ru. The sulfide minerals occur both as inclusions in chromite and as interstitial grains. The sulfides host much of the Pd and Rh. The IPGE and Rh correlate with Cr but not with S or Se, indicating that these elements were not collected by a sulfide liquid. Palladium, Cu, and Se correlate with each other, but not with S. The low S/Se (< 1500) of the whole rock and magnetite rims around the sulfides indicate some S has been lost from the rocks. We conclude that to account for all observations, the IPGE and Rh were originally collected by chromite, and subsequently, small quantities of base metal sulfide liquid was added to the chromite layers from the overlying magma. The IPGE and Rh in the chromite diffused from the chromite into the base metal sulfides and converted some of the sulfides to laurite.
机译:与大多数镁铁质岩浆相比,斯蒂尔沃特综合体的超镁铁质系列中的所有岩石都富含PGE。此外,亚铬酸盐层特别富含IPGE(Os,Ir和Ru)和Rh。这种富集似乎是超镁铁质岩石的共同特征,它来自许多类型的环境,分层侵入体,蛇绿岩和分层复合体。我们已经进行了岩石学,矿物学和地球化学研究,以评估在Stillwater矿床中富集是如何发生的,并将我们的结果应用于Bushveld和Great Dyke矿床的铬铁矿层。现在拥有PGE的矿物是月桂石和五氧化二铁,Millerite和黄铜矿的细粒共生体。月桂酸盐以铬铁矿中的夹杂物形式存在,质量平衡计算表明它含有大部分Os,Ir和Ru。硫化物矿物既以铬铁矿的夹杂物形式存在,也以间隙晶粒的形式存在。硫化物含有大量的Pd和Rh。 IPGE和Rh与Cr相关,但与S或Se不相关,表明这些元素未被硫化物液体收集。钯,铜和硒相互关联,但与S无关。硫化物周围的整个岩石和磁铁矿边缘的低S / Se(<1500)表明岩石中已经损失了一些S。我们得出结论,考虑到所有观察结果,IPGE和Rh最初是由铬铁矿收集的,随后,从上层岩浆中向铬铁矿层中添加了少量贱金属硫化物液体。亚铬酸盐中的IPGE和Rh从亚铬酸盐扩散到贱金属硫化物中,并将一些硫化物转化为月桂酸盐。

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