高晓峰, 校培喜, 谢从瑞, 范立勇, 过磊, 奚仁刚. 2010: 东昆仑阿牙克库木湖北巴什尔希花岗岩锆石LA-ICP-MS U-Pb 定年及其地质意义. 地质通报, 29(7): 1001-1008.
    引用本文: 高晓峰, 校培喜, 谢从瑞, 范立勇, 过磊, 奚仁刚. 2010: 东昆仑阿牙克库木湖北巴什尔希花岗岩锆石LA-ICP-MS U-Pb 定年及其地质意义. 地质通报, 29(7): 1001-1008.
    GAO Xiao-feng, XIAO Pei-xi, XIE Cong-rui, FAN Li-yong, GUO Lei, XI Ren-gang. 2010: Zircon LA-ICP-MS U-Pb dating and geological significance of Bashierxi granite in the eastern Kunlun area, China. Geological Bulletin of China, 29(7): 1001-1008.
    Citation: GAO Xiao-feng, XIAO Pei-xi, XIE Cong-rui, FAN Li-yong, GUO Lei, XI Ren-gang. 2010: Zircon LA-ICP-MS U-Pb dating and geological significance of Bashierxi granite in the eastern Kunlun area, China. Geological Bulletin of China, 29(7): 1001-1008.

    东昆仑阿牙克库木湖北巴什尔希花岗岩锆石LA-ICP-MS U-Pb 定年及其地质意义

    Zircon LA-ICP-MS U-Pb dating and geological significance of Bashierxi granite in the eastern Kunlun area, China

    • 摘要: 巴什尔希岩体分布在东昆仑西段白干湖断裂和阿尔金断裂之间,岩性主要为二长花岗岩和钾长花岗岩,其中二长花岗岩与白干湖钨、锡多金属矿床关系密切。对锆石内部结构、阴极发光图像特征和Th/U比值的研究表明,二长花岗岩中的锆石为岩浆锆石。锆石LA-ICP-MS U-Pb同位素分析结果显示,二长花岗岩形成年龄为 (458.0±9.0)Ma。结合前人对巴什尔希钾长花岗岩的锆石U-Pb定年(432.3±0.8)Ma,初步认为该岩体为晚奥陶世—早志留世侵入体。元素地球化学特征显示,巴什尔希花岗岩为弱准铝质或弱过铝质A型花岗岩,是东昆仑地区加里东期局部弧后盆地拉张过程中,地幔底侵导致地壳物质熔融的产物。

       

      Abstract: The Bashierxi pluton is located in the western segment of the eastern Kunlun, between Baiganhu fault and Aerjin fault, this pluton mainly consists of monzonitic granite and K-feldspar granite, and the monzonitic granite is closely related with the ore-forming process of the Baiganhu tungsten-tin deposit. The internal structures, cathodeluminescence (CL) images and Th/U ratios of the zircon grains from the monzonitic granite reveal that these zircon grains have typical characteristics of magmatic zircon. The LA-ICP-MS analyses show that the zircon grains from the monzonitic granite have concordant U-Pb ages of (458.0±9.0)Ma, on the other hand, the zircon grains from the K-feldspar granite have U-Pb ages of (432.3±0.8)Ma, these data indicated that the Bashierxi pluton is a intrusion formed from Late Ordovician to Early Silurian. Major and trace element data of the monzonitic granite show that Bashierxi granite is weakly metaluminous or peraluminous A-type granite. These rocks were considered as melts derived from crustal source during back-arc basin extension in eastern Kunlun, and the early Baiganhu tungsten-tin deposit era is represented by the ages of monzonitic granite.

       

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