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首页> 外文期刊>Geotectonics >Two Types of Plagiogranite from Mesozoic Ashin Ophiolite (Central Iran): a Mark of Tectonic Setting Change from Jurassic to Cretaceous1
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Two Types of Plagiogranite from Mesozoic Ashin Ophiolite (Central Iran): a Mark of Tectonic Setting Change from Jurassic to Cretaceous1

机译:中生代阿欣蛇绿岩(伊朗中部)的两种斜长花岗岩:构造背景从侏罗纪到白垩纪的变化1

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摘要

The Ashin ophiolite is situated in the western part of Central Iran and presents two stages of Jurassic and Cretaceous spreading. The Ashin ophiolite represents fragments of the Neo-Tethys oceanic lithosphere. Plagiogranite intrusions of this ophiolite have good exposures. Plagiogranites of Cretaceous are more fresh than the metamorphosed samples of Jurassic. The main minerals of plagiogranites from the Ashin ophiolite are plagioclase, quartz and amphibole. Plagiogranites of the Jurassic have tholeitic nature with higher amounts of amphibole, TiO2, Co and lower values of Mg#, Th and Sr than the Cretaceous calc-alkaline plagiogranites. The chondrite-normalized REE patterns of these plagiogranites are characterized by higher values of REEs and negative Eu anomalies for the Jurassic samples and low values of REEs and positive Eu anomalies for the Cretaceous ones. Very low values of HREEs in the Cretaceous plagiogranites indicates a non-peridotitic source rock. We suggest that the Jurassic plagiogranites are formed by fractional crystallization of a low-K tholeitic magma; and the adakitic Cretaceous plagiogranites are formed by partial melting of an amphibolite in the subducting slab. Geochemical criteria of the Ashin plagiogranites indicate changing the Ashin ophiolite tectonic setting from a mid-ocean ridge system in the Jurassic to a supra-subduction zone in the Cretaceous.
机译:Ashin蛇绿岩位于伊朗中部的西部,呈现侏罗纪和白垩纪传播的两个阶段。 Ashin蛇绿岩代表着新特提斯海洋岩石圈的碎片。蛇绿岩的斜长花岗岩侵入具有良好的暴露性。白垩纪斜长花岗岩比侏罗纪变质样品新鲜。 Ashin蛇绿岩中斜长花岗岩的主要矿物是斜长石,石英和闪石。与白垩纪钙碱性斜长花岗岩相比,侏罗纪斜长花岗岩具有生辉性,其闪石,二氧化钛,钴含量较高,Mg#,Th和Sr值较低。这些斜长花岗岩的球粒陨石归一化REE模式的特征是侏罗纪样品的REEs值较高且Eu异常为负值,白垩纪的REEs值较低且Eu正值较低。白垩纪斜长花岗岩中的HREE值极低,表明其为非橄榄岩性烃源岩。我们认为侏罗纪斜长花岗岩是由低钾含量的岩浆岩的分步结晶形成的。板状白垩纪斜长花岗岩是通过俯冲板中角闪石的部分熔融而形成的。 Ashin斜长花岗岩的地球化学标准表明,Ashin蛇绿岩的构造环境已从侏罗纪的中海脊系统转变为白垩纪的超俯冲带。

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