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Geochronology and geochemistry of subducted Cadomian continental basement in central Iran: Decompressional anatexis along the Jurassic Neotethys margin

机译:伊朗中部地质科多米大陆地下室的地理学和地球化学:侏罗纪上肢缘下的解压缩anatexis

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摘要

Late Neoproterozoic-Early Cambrian talc-alkaline granitoids are ubiquitous in the continental basement of Iran and indicate formation within a Cadomian arc system at the northern margin of Gondwana. A basement complex comprising mainly mica schist, paragneisses, and metagranite along with metabasite and rare pegmatite is exposed in the Zayanderud region north of Shahrekord located in the hinterland of the Zagros mountain range. This complex is unique in the Neotethyan realm because it includes edogites with Jurassic metamorphic ages implying involvement of continental crust at the onset of subduction. Ion microprobe U-Pb zircon dating along with trace element and oxygen isotope analyses for metagranites define two zircon age clusters of ca. 552 and 565 Ma confirming connection with the other Ediacaran age basement arc plutons in the belt. Zircon geochronology for pegmatite, by contrast, yielded a concordant age population averaging 176.5 +/- 3.3 (2 sigma) Ma. Zircon crystals from the pegmatite also have unusually low rare earth element (REE) abundances with sharp increases towards the heavy REE. Along with an absence of a negative Eu anomaly, this indicates a high-grade metamorphic origin of zircon crystallizing from a pegmatite which was formed by melting of mica schist and possibly amphibole edogite during decompression where incipient garnet breakdown released Zr and HREE to form zircon, and LREE were retained in stable apatite and titanite. Corresponding Ar-40/ Ar-39 phengite dates from the pegmatite and the mica schist country-rock are overlapping with or only slightly postdate the U-Pb zircon ages, indicating rapid cooling after reaching maximum metamorphic pressure in the Early Jurassic. The Zayanderud basement complex is thus potentially a rare example of deep burial of continental crust and rapid exhumation due to buoyant escape during the incipient stages of subduction, well before the ultimate closing of the Neotethys ocean basin between Arabia and Eurasia in the mid-Tertiary. (C) 2020 International Association for Gondwana Research. Published by Elsevier B.V. All rights reserved.
机译:晚期新蛋白古代 - 早期的寒武纪可滑石 - 碱性花岗岩在伊朗的大陆地下室普遍存在,表明在Gondwana北边缘的Cadomian弧系统中表明形成。一种基础综合体,主要包含MICA SCIST,PALAGNEISS和甲状腺素,以及甲状腺样品和稀有PEGMATITE在位于ZAGROS山脉腹地的SHAHREKORD北部的ZAYANDERUD地区暴露。这个综合体在Neotethyan Realm中是独一无二的,因为它包括带侏罗纪变质年龄的前焦点,这意味着大陆地壳参与俯冲的展开。离子微伏力U-PB锆锆型与群体的痕量元素和氧同位素分析定义了CA的两个锆石年龄簇。 552和565 MA确认与其他埃迪亚锡年龄地下室弧形芦苇在皮带中的连接。相比之下,Pegmatite的锆石地理学产生了一致的年龄群,平均为176.5 +/- 3.3(2 sigma)mA。来自PEGMATITE的锆石晶体也具有异常低的稀土元素(REE)丰富,朝向重型雷剧烈增加。随着不存在负面欧盟异常的情况下,这表明通过蒙皮梭熔化和在减压期间通过熔融形成的胶质石和可能的倒话,释放Zr和HREE来形成Zr和Hree以形成Zircon而形成的锌的高档变质起源。和lee保留在稳定的磷灰石和二岩石中。来自Pegmatite的相应AR-40 / AR-39验证日期和云母Schist国家 - 岩石与U-PB锆石年龄的重叠,或仅略微发布U-Pb锆石,表明在早期侏罗纪达到最大变质压力后表现出快速冷却。因此,Zayanderud地下室复合体是由于在俯冲初期逃脱期间,由于在俯冲阶段的繁荣期间,在俯冲阶段逃脱,在中间三世纪的欧洲海洋盆地的最终关闭之前,因此可能是稀有的大陆地壳和快速挖掘的罕见例子。 (c)2020国际Gondwana研究协会。 elsevier b.v出版。保留所有权利。

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