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Petrogenesis of the Neoproterozoic West Highland Granitic Gneiss, Scottish Caledonides: Cryptic mantle input to S-type granites?

机译:新元古代西部高地花岗质片麻岩的成因,苏格兰喀里多尼德:s型花岗岩的隐秘地幔输入?

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摘要

The Neoproterozoic (c. 870 Ma) West Highland Granitic Gneiss, exposed in the Northern Highlands Terrane of Scotland, has elemental characteristics that are strikingly similar to those of the host Moine metasediments, which are thus consistent with an origin involving major Moine melting. Most of the constituent bodies have compositions significantly removed from minimum melts of pelites, and trace element constraints suggest variable but significant restite entrainment leading to less silicic bulk compositions with enhanced REE, Zr and Y. However, initial Nd and Hf isotope ratios are not coincident with contemporary Moine and imply a significant juvenile contribution. Close association with a regional suite of metabasites prompts consideration of mafic magma input, for which binary mixing models offer qualitative support. Quantitative difficulties with typical Moine metasediments are eased with radiogenic pelites or by partial melting of the mafic component. A possible alternative is currently unexposed Grenvillian felsic crust. Subsequent interaction of the granitic gneisses with meteoric water has significantly perturbed the oxygen and Sr isotope systems, the timing of which is equivocal but probably occurred during Caledonian events.\ud\udThe elemental characteristics of the West Highland Granitic Gneiss show many similarities with Scandinavian (rift-related?) granites of the same age, but since their geochemistry is largely inherited from the protolith it would be unwise to pursue palaeotectonic attribution on this basis. However, the probable incorporation of significant mantle-derived mafic magma of MORB-like affinity is consistent with an extensional setting.\ud
机译:暴露于苏格兰北部高地地区的新元古代(约870 Ma)西部高地花岗岩片麻岩的元素特征与宿主Moine沉积物的特征极为相似,因此与主要的Moine融化相一致。大多数组成体的成分均已从最少的珍珠岩熔体中显着去除,微量元素的约束表明可变而显着的重晶岩夹带导致硅含量较高的稀土元素,Zr和Y的硅组成较少。但是,Nd和Hf的初始同位素比并不重合与当代的Moine并暗示了其对青少年的重大贡献。与一个区域性的变质岩基的紧密联系促使人们考虑镁铁质岩浆的输入,为此,二元混合模型提供了定性的支持。放射源性贝氏体或黑铁质成分的部分熔化减轻了典型的Moine沉积物的定量困难。一种可能的选择是目前未暴露的格勒维利人长丝质硬皮。花岗岩片麻岩随后与陨石水的相互作用已显着扰动了氧气和Sr同位素系统,其时间安排是模棱两可的,但可能发生在喀里多尼亚事件期间。裂谷相关的?)花岗岩,但由于它们的地球化学很大程度上是从原生岩继承而来的,因此在此基础上追求古构造归属是不明智的。但是,可能合并了明显的地幔来源的镁铁质岩浆,且具有类似MORB的亲和力,这与延伸背景一致。

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