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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Primary crustal melt compositions: Insights into the controls, mechanisms and timing of generation from kinetics experiments and melt inclusions
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Primary crustal melt compositions: Insights into the controls, mechanisms and timing of generation from kinetics experiments and melt inclusions

机译:主要地壳熔体组合物:从动力学实验和熔体夹杂物中发电的控制,机制和时机的见解

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摘要

We explore the controls, mechanisms and timing of generation of primary melts and their compositions, and show that the novel studies of melt inclusions in migmatites can provide important insights into the processes of crustal anatexis of a particular rock. Partial melting in the source region of granites is dependent on five main processes: (i) supply of heat; (ii) mineral-melt interface reactions associated with the detachment and supply of mineral components to the melt, (iii) diffusion in the melt, (iv) diffusion in minerals, and (v) recrystallization of minerals. As the kinetics of these several processes vary over several orders of magnitude, it is essential to evaluate in Nature which of these processes control the rate of melting, the composition of melts, and the extent to which residue-melt chemical equilibrium is attained under different circumstances. To shed light on these issues, we combine data from experimental and melt inclusion studies. First, data from an extensive experimental program on the kinetics of melting of crustal protoliths and diffusion in granite melt are used to set up the necessary framework that describes how primary melt compositions are established during crustal anatexis. Then, we use this reference frame and compare compositional trends from experiments with the composition of melt inclusions analyzed in particular migmatites. We show that, for the case of El Hoyazo anatectic enclaves in lavas, the composition of glassy melt inclusions provides important information on the nature and mechanisms of anatexis during the prograde suprasolidus history of these rocks, including melting temperatures and reactions, and extent of melt interconnection, melt homogenization and melt-residue equilibrium. Compositional trends in several of the rehomogenized melt inclusions in garnet from migmatites/granulites in anatectic terranes are consistent with diffusion in melt-controlled melting, though trace element compositions of melt inclusions and coexisting minerals are necessary to provide further clues on the nature of anatexis in these particular rocks. (C) 2017 Published by Elsevier B.V.
机译:我们探讨了初级熔体及其组合物产生的控制,机制和时机,并表明,Migmatites中的熔体夹杂物的新型研究可以为特定岩石的地壳厌氧过程提供重要见解。花岗岩源区中的部分熔化取决于五个主要过程:(i)供应热量; (ii)与脱离和供应矿物组件的矿物熔体界面反应与熔融,(iv)在矿物质中的扩散中的扩散,(v)重结晶矿物质。由于这些过程的动力学随着几个数量级的变化而变化,因此必须评估这些过程中的哪一个控制熔化速率,熔体组成以及残留熔融化学平衡的程度在不同的情况下实现情况。为了阐明这些问题,我们将数据与实验和熔体包容性研究相结合。首先,用于在地壳促果冻熔化动力学和花岗岩熔体中扩散的大量实验程序的数据来建立描述在地壳厌氧期间建立伯熔融组合物的必要框架。然后,我们使用该参考框架,并与特定分析的熔体夹杂物的组成比较从实验中的组成趋势。我们表明,对于熔岩中El Hoyazo的案例,玻璃熔体夹杂物的组成提供了关于植物在这些岩石的植物历史中antexis的性质和机制的重要信息,包括熔化的温度和反应,以及熔化的程度互连,熔融均质化和熔融残留均衡。来自茂剂陶瓷中的Migmatites /颗粒中的少数型熔体夹杂物中的几种重新发化熔体夹杂物的成分趋势与熔融控制熔化的扩散一致,但是必须在熔体夹杂物和共存矿物质的痕量元素组合物中提供进一步的anatexis性质的进一步线索这些特殊的岩石。 (c)2017年由Elsevier B.V发布。

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