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首页> 外文期刊>Doklady Earth Sciences >Paleoproterozoic Anorogenic Granitoids of the Zheltav Sialic Massif (Southern Kazakhstan): Structural Position and Geochronology
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Paleoproterozoic Anorogenic Granitoids of the Zheltav Sialic Massif (Southern Kazakhstan): Structural Position and Geochronology

机译:Zheltav Sialic地块(哈萨克斯坦南部)的古元古代厌食花岗岩:结构位置和年代学

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摘要

The basement of the Zheltav sialic massif (Southern Kazakhstan) is composed of different metamorphic rocks united into the Anrakhai Complex. In the southeastern part of the massif, these rocks form a large antiform with the core represented by amphibole and clinopyroxene gneissic granite varieties. By their chemical composition, dominant amphibole (hastingsite) gneissic granites correspond to subalkaline granites, while their petro-and geochemical properties make them close to A-type granites. The U-Pb geochronological study of accessory zircons yielded an age of 1841-6 Ma, which corresponds to the crystallization age of melts parental for protoliths of amphibole gneissic granites of the Zheltav Massif. Thus, the structural-geological and geochronological data make it possible to define the Paleoproterozoic (Staterian) stage of anorogenic magmatism in the Precambrian history of the Zheltav Massif. The combined Sm-Nd isotopic-geochronological data and age estimates obtained for detrital zircons indicate the significant role of the Paleoproterozoic tectono-magmatic stage in the formation of the Precambrian continental crust of sialic massifs in Kazakhstan and northern Tien Shan.
机译:Zheltav sialic地块(哈萨克斯坦南部)的地下室由不同的变质岩组成,这些变质岩合并为Anrakhai复合体。在地块的东南部,这些岩石形成一个大型反形态,其核心为闪石和斜辉石片麻岩花岗岩。根据其化学成分,主要的角闪石(草屑场)片麻岩花岗岩对应于亚碱性花岗岩,而它们的石油和地球化学性质使其接近于A型花岗岩。副锆石的U-Pb地质年代学研究得出的年龄为1841-6 Ma,这对应于Zheltav地块斜角片麻片岩花岗岩原石的母体熔体的结晶年龄。因此,结构地质和年代学数据使得可以确定Zheltav断层前寒武纪中的古元古代(史特里安期)造反作用岩浆作用阶段。碎屑锆石的Sm-Nd同位素地质年代学数据和年龄估算结果表明,古元古代构造岩浆期在哈萨克斯坦和北天山唾液质前寒武纪大陆壳形成中具有重要作用。

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  • 来源
    《Doklady Earth Sciences》 |2016年第1期|14-19|共6页
  • 作者单位

    Russian Acad Sci, Geol Inst GIN RAS, Pyzhevsky Per 7, Moscow 119017, Russia;

    Russian Acad Sci, Geol Inst GIN RAS, Pyzhevsky Per 7, Moscow 119017, Russia;

    Russian Acad Sci, Inst Precambrian Geol & Geochronol IPGG RAS, Makarova Nab 2, St Petersburg 199034, Russia;

    Russian Acad Sci, Inst Geol Ore Deposits Petrog Mineral & Geochem I, Staromonetny Per 35, Moscow 119017, Russia;

    Russian Acad Sci, Inst Precambrian Geol & Geochronol IPGG RAS, Makarova Nab 2, St Petersburg 199034, Russia;

    Russian Acad Sci, Geol Inst GIN RAS, Pyzhevsky Per 7, Moscow 119017, Russia;

    Russian Acad Sci, Geol Inst GIN RAS, Pyzhevsky Per 7, Moscow 119017, Russia;

    Russian Acad Sci, Inst Precambrian Geol & Geochronol IPGG RAS, Makarova Nab 2, St Petersburg 199034, Russia;

    Russian Acad Sci, Inst Precambrian Geol & Geochronol IPGG RAS, Makarova Nab 2, St Petersburg 199034, Russia;

    Russian Acad Sci, Inst Precambrian Geol & Geochronol IPGG RAS, Makarova Nab 2, St Petersburg 199034, Russia;

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