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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Highly siderophile element behaviour accompanying subduction of oceanic crust: Whole rock and mineral-scale insights from a high-pressure terrain
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Highly siderophile element behaviour accompanying subduction of oceanic crust: Whole rock and mineral-scale insights from a high-pressure terrain

机译:伴随洋壳俯冲的高度嗜铁元素元素行为:来自高压地形的整个岩石和矿物规模洞察力

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Highly siderophile element concentrations (HSE: Re and platinum-group elements (PGE)) are presented for gabbros, gabbroic eclogites and basaltic eclogites from the high-pressure Zermatt-Saas ophiolite terrain, Switzerland. Rhenium and PGE (Os, Ir, Ru, Rh, Pt, Pd) abundances in gabbro- and eclogite-hosted sulphides, and Re-Os isotopes and elemental concentrations in silicate phases are also reported. This work, therefore, provides whole rock and mineral-scale insights into the PGE budget of gabbroic oceanic crust and the effects of subduction metamorphism on gabbroic and basaltic crust. Chondrite-normalised PGE patterns for the gabbros are similar to published mid-ocean ridge basalts (MORB), but show less inter-element fractionation. Mean Pt and Pd contents of 360 and 530 pg/g, respectively, are broadly comparable to MORB, but gabbros have somewhat higher abundances of Os, Ir and Ru (mean: 64, 57 and 108 pg/g). Transformation to eclogite has not significantly changed the concentrations of the PGE, except Pd which is severely depleted in gabbroic eclogites relative to gabbros (~75% loss). In contrast, basaltic eclogites display significant depletion of Pt (≥60%), Pd (>85%) and Re (50-60%) compared with published MORB, while Os, Ir and Ru abundances are broadly comparable. Thus, these data suggest that only Pt, Pd and Re, and not Os, Ir and Ru, may be significantly fluxed into the mantle wedge from mafic oceanic crust. Re-Os model ages for gabbroic and gabbroic eclogite minerals are close to age estimates for igneous crystallisation and high-pressure metamorphism, respectively, hence the HSE budgets can be related to both igneous and metamorphic behaviour. The gabbroic budget of Os, Ir, Ru and Pd (but not Pt) is dominated by sulphide, which typically hosts >90% of the Os, whereas silicates account for most of the Re (with up to 75% in plagioclase alone). Sulphides in gabbroic eclogites tend to host a smaller proportion of the total Os (10-90%) while silicates are important hosts, probably reflecting Os inheritance from precursor phases. Garnet contains very high Re concentrations and may account for >50% of Re in some samples. The depletion of Pd in gabbroic eclogites appears linked, at least in part, to the loss of Ni-rich sulphide. Both basaltic and gabbroic oceanic crust have elevated Pt/Os ratios, but Pt/Re ratios are not sufficiently high to generate the coupled ~(186)Os-~(187)Os enrichments observed in some mantle melts, even without Pt loss from basaltic crust. However, the apparent mobility of Pt and Re in slab fluids provides an alternative mechanism for the generation of Pt- and Re-rich mantle material, recently proposed as a potential source of ~(187)Os-~(186)Os enrichment.
机译:对于来自瑞士策尔马特-萨斯蛇绿岩高压地带的辉长岩,​​辉长岩榴辉岩和玄武岩榴辉岩,存在高嗜铁元素浓度(HSE:Re和铂族元素(PGE))。还报道了辉长辉石和榴辉岩中硫化物中and和PGE(Os,Ir,Ru,Rh,Pt,Pd)的丰度,以及Re-Os同位素和硅酸盐相中的元素浓度。因此,这项工作提供了整个岩石和矿物规模的洞察力,以了解辉长岩大洋地壳的PGE预算以及俯冲变质作用对辉长岩和玄武岩地壳的影响。辉长岩的球粒陨石标准化PGE模式与已发表的洋中脊玄武岩(MORB)相似,但元素间分馏较少。 Pt和Pd的平均含量分别为360 pg / g和530 pg / g,与MORB大致相当,但是辉长岩的Os,Ir和Ru的丰度更高(平均值:64、57和108 pg / g)。转变为榴辉岩并没有显着改变PGE的浓度,除了辉长岩榴辉岩中相对于辉长岩而言Pd严重耗尽(损失约75%)。相反,与已发表的MORB相比,玄武岩榴辉岩显示出Pt(≥60%),Pd(> 85%)和Re(50-60%)的大量消耗,而Os,Ir和Ru的丰度大致可比。因此,这些数据表明只有Pt,Pd和Re,而不是Os,Ir和Ru可能会从镁铁质洋壳明显地流入地幔楔。辉长岩和辉长岩榴辉岩矿物的Re-Os模型年龄分别接近火成岩结晶和高压变质的年龄估计,因此HSE预算可能与火成岩和变质行为有关。 Os,Ir,Ru和Pd(而不是Pt)的辉长岩预算主要由硫化物控制,硫化物通常占Os的90%以上,而硅酸盐占大部分Re(仅斜长石中的含量高达75%)。辉长岩榴辉岩中的硫化物往往占总Os的比例较小(占10-90%),而硅酸盐是重要的宿主,可能反映了Os从前驱相继承而来。石榴石含有很高的Re浓度,在某些样品中可能占Re的50%以上。辉长岩榴辉岩中Pd的减少似乎至少部分与富Ni硫化物的损失有关。玄武岩和辉长岩洋壳的Pt / Os比率均升高,但Pt / Re比率还不足以产生耦合的〜(186)Os ~~(187)Os富集作用,即使没有从玄武岩中损失Pt也是如此。脆皮。然而,Pt和Re在板状流体中的表观迁移率为生成富含Pt和Re的地幔物质提供了另一种机制,最近提出将其作为〜(187)Os-〜(186)Os富集的潜在来源。

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