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Meso-Cenozoic tectonic evolution of the Talas-Fergana region of the Kyrgyz Tien Shan revealed by low-temperature basement and detrital thermochronology
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  • 英文篇名:Meso-Cenozoic tectonic evolution of the Talas-Fergana region of the Kyrgyz Tien Shan revealed by low-temperature basement and detrital thermochronology
  • 作者:Simon ; Nachtergaele ; Elien ; De ; Pelsmaeker ; Stijn ; Glorie ; Fedor ; Zhimulev ; Marc ; Jolivet ; Martin ; Dani?ík ; Mikhail ; M.Buslov ; Johan ; De ; Grave
  • 英文作者:Simon Nachtergaele;Elien De Pelsmaeker;Stijn Glorie;Fedor Zhimulev;Marc Jolivet;Martin Dani?ík;Mikhail M.Buslov;Johan De Grave;Laboratory for Mineralogy and Petrology, Department of Geology, Ghent University;Tectonics, Resources and Exploration (TraX), Department of Earth Sciences, University of Adelaide;Institute of Geology & Mineralogy, Siberian Branch, Russian Academy of Sciences;Université de Rennes 1, Laboratoire Géosciences Rennes;John de Laeter Centre, Applied Geology, TIGe R, Curtin University;
  • 英文关键词:Tian Shan;;Central Asian Orogenic Belt;;Thermal history modelling;;Apatite fission track dating;;Zircon(U-Th)/He dating
  • 中文刊名:GSFT
  • 英文刊名:地学前缘(英文版)
  • 机构:Laboratory for Mineralogy and Petrology, Department of Geology, Ghent University;Tectonics, Resources and Exploration (TraX), Department of Earth Sciences, University of Adelaide;Institute of Geology & Mineralogy, Siberian Branch, Russian Academy of Sciences;Université de Rennes 1, Laboratoire Géosciences Rennes;John de Laeter Centre, Applied Geology, TIGe R, Curtin University;
  • 出版日期:2018-09-06
  • 出版单位:Geoscience Frontiers
  • 年:2018
  • 期:v.9
  • 基金:supported by a Ghent University project (BOF 015B1309);; the DARIUS program;; supported by ARC DP150101730;; TRAX record 387. F.I;; supported by state assignment project No. 0330-2016-0015
  • 语种:英文;
  • 页:GSFT201805017
  • 页数:20
  • CN:05
  • ISSN:11-5920/P
  • 分类号:240-259
摘要
This study provides new low-temperature thermochronometric data, mainly apatite fission track data on the basement rocks in and adjacent to the Talas-Fergana Fault, in the Kyrgyz Tien Shan in the first place.In the second place, we also present new detrital apatite fission track data on the Meso-Cenozoic sediments from fault related basins and surrounding intramontane basins. Our results confirm multistaged Meso-Cenozoic tectonic activity, possibly induced by the accretion of the so-called Cimmerian blocks to the Eurasian margin. New evidence for this multi-staged thermo-tectonic activity is found in the data of both basement and Meso-Cenozoic sediment samples in or close to the Talas-Fergana Fault.Zircon(U-Th)/He and apatite fission track data constrain rapid Late TriassiceE arly Jurassic and Late JurassiceE arly Cretaceous basement cooling in the Kyrgyz Tien Shan around 200 Ma and 130 -100 Ma respectively. Detrital apatite fission track results indicate a different burial history on both sides of the Talas-Fergana Fault. The apatite fission track system of the Jurassic sediments in the Middle Tien Shan unit east of the Talas-Fergana Fault is not reset, while the Jurassic sediments in the Fergana Basin and Yarkand-Fergana Basin, west of the fault zone, are partially and in some cases even totally reset. The totally reset samples exhibit Oligocene and Miocene ages and evidence the Cenozoic reactivation of the western Kyrgyz Tien Shan as a consequence of the India-Eurasia convergence.
        This study provides new low-temperature thermochronometric data, mainly apatite fission track data on the basement rocks in and adjacent to the Talas-Fergana Fault, in the Kyrgyz Tien Shan in the first place.In the second place, we also present new detrital apatite fission track data on the Meso-Cenozoic sediments from fault related basins and surrounding intramontane basins. Our results confirm multistaged Meso-Cenozoic tectonic activity, possibly induced by the accretion of the so-called Cimmerian blocks to the Eurasian margin. New evidence for this multi-staged thermo-tectonic activity is found in the data of both basement and Meso-Cenozoic sediment samples in or close to the Talas-Fergana Fault.Zircon(U-Th)/He and apatite fission track data constrain rapid Late TriassiceE arly Jurassic and Late JurassiceE arly Cretaceous basement cooling in the Kyrgyz Tien Shan around 200 Ma and 130 -100 Ma respectively. Detrital apatite fission track results indicate a different burial history on both sides of the Talas-Fergana Fault. The apatite fission track system of the Jurassic sediments in the Middle Tien Shan unit east of the Talas-Fergana Fault is not reset, while the Jurassic sediments in the Fergana Basin and Yarkand-Fergana Basin, west of the fault zone, are partially and in some cases even totally reset. The totally reset samples exhibit Oligocene and Miocene ages and evidence the Cenozoic reactivation of the western Kyrgyz Tien Shan as a consequence of the India-Eurasia convergence.
引文
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