首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Water, lithium and trace element compositions of olivine from Lanzo South replacive mantle dunites (Western Alps): New constraints into melt migration processes at cold thermal regimes
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Water, lithium and trace element compositions of olivine from Lanzo South replacive mantle dunites (Western Alps): New constraints into melt migration processes at cold thermal regimes

机译:来自Lanzo南替代地幔Dunites(西阿尔卑斯山)的橄榄石的水,锂和痕量元素组成:冷热制度下的熔体迁移过程中的新约束

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摘要

Replacive mantle dunites are considered to be shallow pathways for extraction of mantle melts from their source region. Dunites offer a unique possibility to unravel the compositional variability of the melts produced in the upper mantle, before mixing and crystal fractionation modify their original signature. This study includes a quantification of H2O, Li and trace elements (Ni, Mn, Co, Sc, V, Ti, Zr, Y and HREE) in olivine from large replacive dunite bodies (>20 m) within a mantle section exposed in the Western Italian Alps (Lanzo South ophiolite). On the basis of olivine, clinopyroxene and spinel compositions, these dunites were previously interpreted to be formed by melts with a MORB signature. Variations in Ni, Mn, Co and Ca contents in olivine from different dunite bodies suggested formation by different melt batches. The variable H2O and Li contents of these olivines agree with this idea. Compared to olivine from residual peridotites and olivine phenocrysts in MORB (both having H2O <5 ppm; Li >1 ppm), the Lanzo South dunite olivine has high H2O (18-40 ppm) and low Li (0.35-0.83 ppm) contents. Geochemical modelling suggests that the dunite-forming melts were produced by low melting degrees of a mixed garnet-pyroxenite-peridotite mantle source, with a contribution of a garnet pyroxenite component variable from 20 to 80%. The Lanzo dunites experienced migration of melts geochemically enriched and mainly produced in the lower-most part of the melting region. Extraction of enriched melts through dunite channels are probably characteristic of cold thermal regimes, where low temperatures and a thick mantle lithosphere inhibit mixing with melts produced at shallower depths. (C) 2017 Elsevier Ltd. All rights reserved.
机译:替代地幔Dunites被认为是从源区提取地幔熔体的浅通路。 Dunites在混合和晶体分级改变其原始签名之前,可以提供独特的可能性。该研究包括从大型替代DINITE体(>20μ)暴露在露天部分内的大型替代DINITE体(> 20m)中的H2O,LI和少量元素(NI,MN,CO,SC,V,TI,ZR,Y和HREE)的定量。西部意大利阿尔卑斯山(Lanzo South Ophiolite)。基于橄榄石,临床,临床和尖晶石组合物,先前被解释为通过熔体与Morb签名形成形成的这些Dunites。来自不同DINE体的橄榄石中Ni,Mn,Co和Ca和Ca含量的变化,不同的DINE体表明不同的熔融批次形成。这些橄榄石的变量H2O和LI内容与这个想法一致。与橄榄石来自残留的恒星和Morb中的橄榄石异杂细胞(含有H2O <5ppm; Li> 1 ppm),Lanzo South Dunite Olivine具有高H2O(18-40ppm)和低li(0.35-0.83ppm)含量。地球化学建模表明,通过混合的石榴石 - 聚苯钛矿 - 橄榄石岩石源的低熔点熔化程度来制备DINE形成熔体,其贡献石榴石纤维素组分变量从20〜80%的贡献。 Lanzo Dunites经历了熔化的迁移地球化学富集,主要在熔化区的较低部分中产生。通过DUNITE通道提取富集的熔体可能是冷热制度的特征,其中低温和厚厚的地幔岩石圈抑制与在较浅深度的熔体中混合。 (c)2017 Elsevier Ltd.保留所有权利。

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