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首页> 外文期刊>THE CANADIAN MINERALOGIST >CHROMIAN SPINEL COMPOSITION AND PLATINUM-GROUP ELEMENT MINERALOGY OF CHROMITITES FROM THE MILIA AREA, PINDOS OPHIOLITE COMPLEX, GREECE
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CHROMIAN SPINEL COMPOSITION AND PLATINUM-GROUP ELEMENT MINERALOGY OF CHROMITITES FROM THE MILIA AREA, PINDOS OPHIOLITE COMPLEX, GREECE

机译:希腊Pindos蛇绿岩复合物Milia地区铬铁矿的铬尖晶石成分和铂族元素矿物

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摘要

The chromitites of the Milia area in the Pindos ophiolite complex, in Greece, were investigated for their platinum-group mineral (PGM) content. The chromitites are massive, more rarely disseminated in texture and occur as small pods. They are composed of magnesiochromite crystals with Cr# [Cr/(Cr + Al)] between 0.80 and 0.84, and Mg# [Mg/(Mg + Fe~(2+))] between 0.54 and 0.72. The total platinum-group-element (PGE) contents in chromitites are relatively low (<170 ppb), although they may locally be higher (up to 1059 ppb). The IPGE (Os, Ir and Ru) predominate over the PPGE (Rh, Pt and Pd). The PGM assemblage, consistent with the geochemical data, is dominated by laurite and Os-Ir-Ru alloys that occur both as single and composite grains, generally less than 15 μm in size. Laurite has a wide range of Os-for-Ru substitution [Ru/(Ru + Os): 0.42-0.99], whereas primary alloys are enriched in Ru (up to 73.80 wt.%). Some laurite crystals exhibit an anomalous pattern of zoning. Such zoning requires an inversion of the normal T-f(S_2) trend in magmatic systems, and is herein considered to be due to postmagmatic processes. Some Ru-rich alloy grains contain relatively high Rh and Pt abundances, similar to those of residual sulfides in mantle peridotites. This feature suggests that these alloys may represent residual PGM phases from earlier episodes of melt extraction from the severely depleted mantle unit of the Pindos ophiolite complex. Combined compositional data indicate that the Milia chromitites formed from a hydrous boninitic melt in a suprasubduction-zone environment.
机译:研究了希腊Pindos蛇绿岩复合物中米利亚地区的铬铁矿中铂族矿物(PGM)的含量。铬铁矿块状,很少散布,呈小荚果状。它们由镁铬铁矿晶体组成,Cr#[Cr /(Cr + Al)]在0.80和0.84之间,Mg#[Mg /(Mg + Fe〜(2+))]在0.54和0.72之间。铬铁矿中的总铂族元素(PGE)含量相对较低(<170 ppb),尽管局部含量可能更高(最高1059 ppb)。 IPGE(Os,Ir和Ru)高于PPGE(Rh,Pt和Pd)。与地球化学数据一致的PGM组合物以月桂石和Os-Ir-Ru合金为主,它们以单晶粒和复合晶粒的形式出现,尺寸通常小于15μm。 Laurite具有广泛的Os-for-Ru替代[Ru /(Ru + Os):0.42-0.99],而原生合金富含Ru(最高73.80 wt。%)。一些月桂石晶体表现出异常的分区模式。这种分区需要在岩浆系统中反转正常的T-f(S_2)趋势,在这里被认为是由于岩浆后过程。一些富Ru合金晶粒含有相对较高的Rh和Pt丰度,类似于地幔橄榄岩中残留的硫化物。这一特征表明,这些合金可能代表了从Pindos蛇绿岩配合物的严重贫化地幔单元中提炼的早期事件中残留的PGM相。组合的组成数据表明,在超俯冲带环境中,由含水的贝氏体熔体形成的米利亚铬铁矿。

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