首页> 外文期刊>Gondwana research: international geoscience journal >Early Cretaceous mantle upwelling and melting of juvenile lower crust in the Middle-Lower Yangtze River Metallogenic Belt: Example from Tongshankou Cu-(Mo-W) ore deposit
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Early Cretaceous mantle upwelling and melting of juvenile lower crust in the Middle-Lower Yangtze River Metallogenic Belt: Example from Tongshankou Cu-(Mo-W) ore deposit

机译:中下长江矿成矿带中的早期白垩纪地幔升温和熔化少年壳:桐山口Cu-(Mo-W)矿床的实例

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摘要

The linkage between intracontinental extension and the Early Cretaceous Cu-Mo-W polymetallic metallogenesis in the Middle-Lower Yangtze River Belt (MLYRB) has long been a subject of controversy due to the lack of convincing petrogenetic evidence to identify the nature of magmatic sources and their geological histories during extensional mantle upwelling. Here we present new zircon U-Pb ages, isotopic and geochemical data for granodiorites, quartz diorites and mafic microgranular enclaves (MMEs) in the Tongshankou area. Comparing the MMEs with their host porphyries, the different ratios of incompatible elements and the similar formation ages, coupled with quenched margins and the xenocrysts in the MMEs, indicate that the MMEs was most likely formed by mixing between mafic magma and their host felsic magma. The MMEs share similar geochemical and isotopic characteristics with the Cretaceous mafic rocks from MLYRB, indicating that MMEs were mostly derived from an enriched lithospheric mantle source without adakitic characteristics. Mixing of a crustal melt derived by melting of an amphibolite bearing juvenile lower crust with a mantle melt derived from melting of enriched lithospheric mantle can account for the generation of the Tongshankou prophyries. The melting of juvenile mafic lower crust and enriched lithospheric mantle is suggested to be caused by upwelling of asthenospheric mantle and the reactivity of trans-lithospheric faults in the intracontinental extensional environment. Our results therefore highlight that juvenile mafic lower crust beneath the Yangtze plate is one of the likely source for ore-forming magmatic rocks in the Early Cretaceous. (C) 2020 International Association for Gondwana Research. Published by Elsevier B.V. All rights reserved.
机译:由于缺乏令人信服的岩石源和识别岩石来源的性质,长期长江带(Mlyrb)在中下长江带(Mlyrb)中的脑内长江带(Mlyrb)的早期白垩纪Cu-Mo-W多金属金属化合物的联系是争议的争议。他们在扩大壁龛上升的地质历史。在这里,我们在通山口地区展示了新的锆石U-PB年龄,同位素和地球化学数据,石英迪斯和MAFIC微血管飞地(MMES)。将MME与其宿主卟啉比较,不相容的元素的不同比例和类似的形成年龄,与MME中的XenoCrys联系起来,表明MME最有可能通过混合MAFIC Magma及其宿主肠道岩浆形成。 MME与来自Mlyrb的白垩纪·米克岩石共享类似的地球化学和同位素特征,表明MME主要来自富含富含脂肪特性的富含型岩石罩源。通过熔化倒置血栓熔化的地壳熔化的地壳熔体的混合源于富含富含富含岩石的岩石地幔的熔融熔体,可以解释通山口预言的产生。少年迈克斯下地壳和富含岩石罩的熔化,建议是由于哮喘裂缝的升高以及脑内延伸环境中的跨岩白断层的反应性引起的。因此,我们的结果强调了长江下方下面的少年迈克斯下地壳是在早期白垩纪中形成矿石岩石的可能源。 (c)2020国际Gondwana研究协会。 elsevier b.v出版。保留所有权利。

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