:Late Triassic–Cenozoic Thermochronology in the Southern Sanjiang Tethys, SW China, New Insights from Zircon Fission Track Analysis论文

:Late Triassic–Cenozoic Thermochronology in the Southern Sanjiang Tethys, SW China, New Insights from Zircon Fission Track Analysis论文

本文主要研究内容

作者(2019)在《Late Triassic–Cenozoic Thermochronology in the Southern Sanjiang Tethys, SW China, New Insights from Zircon Fission Track Analysis》一文中研究指出:The Sanjiang Tethys orogenic belt is located in the southeast side of the Qinghai-Tibet Plateau. It has undergone the opening and closing movements in different periods of Tethys oceans, complex accretive orogeny and strong mineralization from Paleozoic to Mesozoic. Using zircon fission track(ZFT) thermochronology, this study reveals the Sanjiang Tethys has experienced multi-stage tectonic activities during the Late Triassic–Cenozoic. The 15 ZFT ages with their decomposition components obtained from Sanjiang Tethysian region range from 212 to 19 Ma, which not only shows 6 age groups of 212, 179–172, 156–133, 121–96, 84–70 and 50–19 Ma, but also constrains the age limit of the tectonothermal events. These age groups recorded the Paleo-Tethys main and branches ocean opening/closure time. The age-elevation plot indicates the Sanjiang region had differential uplifting and exhumation and fast uplifting times of ca. 133, 116 and 80 Ma, coinciding with the age groups mentioned above. These results show new geochronological evidences and viewpoints.

Abstract

The Sanjiang Tethys orogenic belt is located in the southeast side of the Qinghai-Tibet Plateau. It has undergone the opening and closing movements in different periods of Tethys oceans, complex accretive orogeny and strong mineralization from Paleozoic to Mesozoic. Using zircon fission track(ZFT) thermochronology, this study reveals the Sanjiang Tethys has experienced multi-stage tectonic activities during the Late Triassic–Cenozoic. The 15 ZFT ages with their decomposition components obtained from Sanjiang Tethysian region range from 212 to 19 Ma, which not only shows 6 age groups of 212, 179–172, 156–133, 121–96, 84–70 and 50–19 Ma, but also constrains the age limit of the tectonothermal events. These age groups recorded the Paleo-Tethys main and branches ocean opening/closure time. The age-elevation plot indicates the Sanjiang region had differential uplifting and exhumation and fast uplifting times of ca. 133, 116 and 80 Ma, coinciding with the age groups mentioned above. These results show new geochronological evidences and viewpoints.

论文参考文献

  • [1].Thermal evolution characteristics of Triassic coal in Chuxiong Basin and its geological significance[J]. Wang Meng,Li Xiaoping,Dai Xuguang.  International Journal of Mining Science and Technology.2016(05)
  • [2].The northern Qiangtang Block rapid drift during the Triassic Period:Paleomagnetic evidence[J]. Yanan Zhou,Xin Cheng,Yiying Wu,Vadim Kravchinsky,Ruiqi Shao,Weijie Zhang,Bitian Wei,Ruiyao Zhang,Fanrong Lu,Hanning Wu.  Geoscience Frontiers.2019(06)
  • [3].Triassic integrative stratigraphy and timescale of China[J]. Jinnan TONG,Daoliang CHU,Lei LIANG,Wenchao SHU,Haijun SONG,Ting SONG,Huyue SONG,Yuyang WU.  Science China(Earth Sciences).2019(01)
  • [4].Triassic Scleractinian Corals in China:A Review of Present Knowledge[J]. BO Jingfang,YAO Jianxin,LIAO Weihua,DENG Zhanqiu.  Acta Geologica Sinica(English Edition).2017(01)
  • [5].A Triassic Archosaur Preying in the Ocean[J].   Bulletin of the Chinese Academy of Sciences.2006(02)
  • [6].Study Offers New Insights into Triassic Protorosaurs[J].   Bulletin of the Chinese Academy of Sciences.2004(04)
  • [7].Sedimentary Facies Architectures of Third-Order Sequences from Early to Middle Triassic in Nanpanjiang Basin[J]. Mei Mingxiang Ma Yongsheng Deng Jun Gao Jinhan Chen Huijun Meng Qingfen Li Donghai Faculty of Earth Sciences and Resources, China University of Geosciences, Beijing 100083.  Journal of China University of Geosciences.2003(02)
  • [8].Guanling Biota: A Rare Biota in Sea Early Late Triassic[J]. Wang Shangyan The State Key Laboratory of Environmental Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550002; Guizhou Geological Survey, Guiyang, 550004 Wang Yangeng Wang Liting Yin Gongzheng Guizhou Geological Survey, Guiyang 550004.  Journal of China University of Geosciences.2002(03)
  • [9].Proposed new Lower Triassic stages in South China[J]. 童金南,殷鸿福,张建军,赵来时.  Science in China(Series D:Earth Sciences).2001(11)
  • [10].Geochemical Characteristics of Deep-Seated Potassium-Rich Brine in the Middle Triassic Leikoupo Formation, Sichuan, China[J]. 黄思静,曾允孚.  Chinese Journal of Geochemistry.1998(02)
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