首页> 外文期刊>Basin research >Cenozoic evolution of the AltynTagh and East Kunlun fault zones inferred fromdetrital garnet, tourmaline and rutile in southwestern QaidamBasin (Northern Tibetan Plateau)
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Cenozoic evolution of the AltynTagh and East Kunlun fault zones inferred fromdetrital garnet, tourmaline and rutile in southwestern QaidamBasin (Northern Tibetan Plateau)

机译:Altyntagh和East Kunlun断层区的新生代演变推断出QAIDAMBASIN(北藏高原北部)的近距离石榴石,电气石和金红石

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摘要

This study focuses on the Cenozoic provenance and tectonic evolution of the southwestern Qaidam Basin through geochemical analysis of detrital garnet, tourmaline and rutile. The variation of detrital mineral compositions indicates that the Cenozoic evolution can be divided into three stages: (i) before the deposition of the upper Xiaganchaigou Formation (before 37.8 Ma); (ii) between the deposition of the upper Xiaganchaigou Formation and the Shangganchaigou Formation (from 37.8 to 22 Ma); (iii) since the deposition of the Xiayoushashan Formation (since 22 Ma). In the first stage, abundant garnets from high-grade meta-basic and ultramafic rocks in the sediments from the Ganchaigou area support a provenance from the South Altyn Tagh HP/UHP metamorphic zone. The low percentage of tourmalines from granitoid rocks in the sediments in the Kunbei-Lücaotan area suggests a provenance from the East Kunlun fault zone, indicating that the Qimen Tagh Shan was not high enough to prevent the transport of sediments from the southern Qaidam Basin. The sediments in the Qigequan area were derived from both the Altyn Tagh fault zone and the East Kunlun fault zone. In the second stage, the tectonic activity consisted in the rapid uplift of the Altyn Shan. Changes in garnet composition indicate a lower detrital contribution from high-grade metamorphic rocks. In the third stage, the disappearance of garnets from high-grade metamorphic rocks and scattered temperatures of rutiles in the Ganchaigou area suggest that the source area shifted from the South Altyn Tagh HP/UHP metamorphic rocks to weakly metamorphosed Meso-Neoproterozoic sedimentary rocks. The increase in granitoid-derived tourmalines in the Kunbei-Lücaotan area is indicative of the rapid uplift of the Qimen Tagh Shan. The provenance evolution in the southwestern Qaidam Basin indicates that the tectonic activity along the Altyn Tagh fault zone can be divided into an early stage of Altyn Shan uplift and a later stage of left-la
机译:这项研究侧重于柴达木盆地西南部的新生代物质和构造演变,通过邪恶石榴石,电气石和金红石的地球化学分析。滴乳矿物组合物的变异表明新生代进化可分为三个阶段:(i)在沉积上Xiaghchaigou的形成之前(37.8 mA之前); (ii)沉积Xiaganchaigou组的沉积与尚诺坎沟组(从37.8到22 mA); (iii)由于Xiayoushashan形成(自22mA以来)。在第一阶段,来自赣州地区沉积物的高档元基基和超空地岩石的丰富的装饰品支持来自南阿里纳Tagh HP / UHP变质区的物质。 Kunbei-Lücaotan地区沉积物中沉积物中的花岗岩岩石中较低的含量较低的百分比表明,东昆仑断层区的出处,表明祁门锦鸡山不够高,以防止柴达木盆地南部沉积物运输。 Qigequan区域的沉积物来自Altyn Tagh断层区和东昆仑断层区。在第二阶段,构造活动包括在Altyn Shan的快速隆起中。石榴石组合物的变化表明了高档变质岩的较低扭转贡献。在第三阶段,古兰地地区高档变质岩岩石和墨盒分散温度的散落温度暗示,源区从南阿里纳Tagh HP / UHP变质岩转移到弱变质的中间环佐古代沉积岩。 Kunbei-Lücaotan地区的丸丸型陀螺素增加表示Qimen Tagh Shan的快速隆起。 QAIDAM盆地西南部的源进化表明,ALTYN TAGH断层区的构造活动可分为ALTYN Shan隆起的早期阶段和左路的后期阶段

著录项

  • 来源
    《Basin research》 |2018年第1期|共24页
  • 作者单位

    Key Laboratory of Crustal Dynamics Institute of Crustal Dynamics China Earthquake Administration Beijing China;

    Key Laboratory of Orogenic Belts and Crustal Evolution Ministry of Education School of Earth and Space Sciences Peking University Beijing China;

    Key Laboratory of Orogenic Belts and Crustal Evolution Ministry of Education School of Earth and Space Sciences Peking University Beijing China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 盆地、平原、草原;
  • 关键词

    Cenozoic evolution; the AltynTagh; East Kunlun fault;

    机译:新生代进化;Altyntagh;东昆仑故障;

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