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首页> 外文期刊>Doklady Earth Sciences >First findings of Paleo- and Mesoarchean zircons in the rocks from the Central Arctic province of oceanic rises as an evidence of the ancient continental crust
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First findings of Paleo- and Mesoarchean zircons in the rocks from the Central Arctic province of oceanic rises as an evidence of the ancient continental crust

机译:北极中部海洋崛起省的岩石中的古,中初古锆石的首次发现是古代大陆壳的证据

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摘要

This report presents the results of local U-Pb zircon dating (SIMS SHRIMP II) for a sample of migmatite gneiss dredged on the western slope of Alpha Ridge in the Arctic Ocean in the course of the "Arktika-2012" Russian polar expedition. The distribution of U-Pb ages of the examined zircon points to the Early Precambrian origin of this gneiss, for the bulk of the zircon was crystallized at least 3450 Ma ago from a magmatic melt under acidic volcanism at the primary crust formation. Zircon of the second generation was crystallized 3300 Ma ago under the remelting of acid volcanics and appearance of migmatite gneisses under the amphibolite facies of metamorphism. Most likely, a partial recrystallization of zircon and formation of microfolded structures and foliation took place 3000 Ma ago at the stage of rocks deformation. The latest zircon was formed 1900 Ma ago from the crust fluid or melt under the low-gradient metamorphism. In view of the possibility of the appearance of the treated clastogenic gneiss fragment under current oceanic erosion, the obtained results allow one to affirm that the occurrence of a fragment of the most ancient sialic continental crust formed at least 3450 Ma ago is possible at the submarine rises of the Arctic Ocean (Alpha Ridge and the Mendeleev Rise).
机译:本报告介绍了在“ Arktika-2012”俄罗斯极地探险过程中,在北冰洋Alpha Ridge西坡上挖出的辉锰矿片麻岩样品的本地U-Pb锆石定年结果(SIMS SHRIMP II)。被检查的锆石的U-Pb年龄分布指向该片麻岩的早前寒武纪起源,因为大部分锆石至少在3450 Ma以前从酸性火山作用下的岩浆熔液中初生地壳形成结晶。第二代锆石在3300 Ma以前因酸性火山的重熔和在变质闪石岩相下的辉长岩片麻岩的出现而结晶。锆石的变形阶段最有可能在3000 Ma以前发生了锆石的部分重结晶以及微褶结构的形成和叶化。最新的锆石是在1900 Ma以前由低梯度变质作用下的地壳流体或熔体形成的。考虑到在当前的海洋侵蚀下可能出现经过处理的裂片状片麻岩碎片的出现,所获得的结果可以使人们确认,至少在3450 Ma之前形成的最古老的唾液性大陆壳碎片可能在海底发生北冰洋的上升(阿尔法山脊和门捷列夫崛起)。

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  • 来源
    《Doklady Earth Sciences》 |2015年第1期|684-689|共6页
  • 作者单位

    St Petersburg State Univ, St Petersburg 199034, Russia|Russian Acad Sci, Karpinskii Russian Geol Res Inst, St Petersburg 196140, Russia;

    Russian Acad Sci, Karpinskii Russian Geol Res Inst, St Petersburg 196140, Russia;

    Russian Acad Sci, Karpinskii Russian Geol Res Inst, St Petersburg 196140, Russia;

    Russian Acad Sci, Karpinskii Russian Geol Res Inst, St Petersburg 196140, Russia;

    Russian Acad Sci, Karpinskii Russian Geol Res Inst, St Petersburg 196140, Russia;

    Russian Acad Sci, Karpinskii Russian Geol Res Inst, St Petersburg 196140, Russia;

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