Late Mesozoic-Cenozoic multistage exhumation of the central Bangong-Nujiang Suture, Central Tibet

被引:20
作者
Li, Chao [1 ]
Zhao, Zhongbao [1 ,2 ]
Lu, Haijian [1 ,2 ]
Li, Haibing [1 ,2 ]
机构
[1] Chinese Acad Geol Sci, Inst Geol, Jiangsu Donghai Continental Deep Hole Crustal Act, Beijing 100037, Peoples R China
[2] Southern Marine Sci & Engn Guangdong Lab Guangzho, Guangzhou 511458, Peoples R China
基金
中国国家自然科学基金;
关键词
Central Tibetan Plateau; Bangong-Nujiang Suture; Low-temperature thermochronology; Thrusting and sedimentation; Low-relief topography; TRACK THERMOCHRONOLOGY EVIDENCE; HELIUM DIFFUSION KINETICS; INDIA-ASIA COLLISION; FISSION-TRACK; QIANGTANG TERRANE; LUNPOLA BASIN; TECTONIC EVOLUTION; SOUTHERN QIANGTANG; LHASA-QIANGTANG; TETHYAN OCEAN;
D O I
10.1016/j.tecto.2022.229268
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
The Cenozoic rise of the Tibetan Plateau has significantly altered global climate change and the biological redistribution of Asia. However, there remain great controversies about its detailed topographical evolution, especially in the hinterland of the Plateau, such as around the Bangong-Nujiang Suture (BNS). Here, we choose the Gaize Basin, which is located in the central BNS, as our target research area. New low-temperature thermochronology data have been used to quantify the cooling history of the intrusive rocks and sedimentary strata from the N-S edges of the Gaize Basin. Our thermochronology results show that 1) zircon (U-Th)/He ages range from 54 +/- 3.7 to 113 +/- 8.4 Ma, 2) apatite fission track ages mostly cluster around similar to 55 Ma, and 3) apatite (IJ - Th)/He ages are between 34 +/- 3.3 and 63 +/- 4.4 Ma. Combined with the results from thermochronology modelling, we suggest that there were three cooling stages recorded around the Gaize Basin: 1) the late Mesozoic (120-100 Ma), which was probably due to the BNS closure and subsequent Qiangtang-Lhasa collision, 2) the Late Cretaceous-early Paleogene (85-55 Ma), which was perhaps related to the far-field effects of the Neo-Tethyan oceanic subduction, and 3) 47-30 Ma, in response to the continuous India-Asian collision. Similar to today, low relief topography has finalized in the central Tibetan Plateau after the last cooling stage and is mainly aided by river incision and erosion on both sides of the BNS.
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页数:15
相关论文
共 160 条
[1]   Orbital climate variability on the northeastern Tibetan Plateau across the Eocene-Oligocene transition [J].
Ao, Hong ;
Dupont-Nivet, Guillaume ;
Rohling, Eelco J. ;
Zhang, Peng ;
Ladant, Jean-Baptiste ;
Roberts, Andrew P. ;
Licht, Alexis ;
Liu, Qingsong ;
Liu, Zhonghui ;
Dekkers, Mark J. ;
Coxall, Helen K. ;
Jin, Zhangdong ;
Huang, Chunju ;
Xiao, Guoqiao ;
Poulsen, Christopher J. ;
Barbolini, Natasha ;
Meijer, Niels ;
Sun, Qiang ;
Qiang, Xiaoke ;
Yao, Jiao ;
An, Zhisheng .
NATURE COMMUNICATIONS, 2020, 11 (01)
[2]   Radiolarian age constraints on Mesotethyan ocean evolution, and their implications for development of the Bangong-Nujiang suture, Tibet [J].
Baxter, Alan T. ;
Aitchison, Jonathan C. ;
Zyabrev, Sergey V. .
JOURNAL OF THE GEOLOGICAL SOCIETY, 2009, 166 :689-694
[3]   Deformation and cooling history of the Central Qiangtang terrane, Tibetan Plateau and its tectonic implications [J].
Bi, Wenjun ;
Han, Zhongpeng ;
Li, Yalin ;
Li, Chengming ;
Wang, Chengshan ;
Zhang, Jiawei ;
Han, Jianyun ;
He, Haiyang ;
Qian, Xinyu ;
Xu, Tiankun ;
Ma, Zining .
INTERNATIONAL GEOLOGY REVIEW, 2021, 63 (15) :1821-1837
[4]   Dominant control of the South Asian monsoon by orographic insulation versus plateau heating [J].
Boos, William R. ;
Kuang, Zhiming .
NATURE, 2010, 463 (7278) :218-U102
[5]  
Brandon M.T., 2002, Decomposition of mixed grain age distributions using binomfit: On Track, V24, P13
[6]   Thrusting, exhumation, and basin fill on the western margin of the South China block during the India-Asia collision [J].
Cao, Kai ;
Leloup, Philippe Herve ;
Wang, Guocan ;
Liu, Wei ;
Maheo, Gweltaz ;
Shen, Tianyi ;
Xu, Yadong ;
Sorrel, Philippe ;
Zhang, Kexin .
GEOLOGICAL SOCIETY OF AMERICA BULLETIN, 2021, 133 (1-2) :74-90
[7]   Oligocene-Early Miocene Topographic Relief Generation of Southeastern Tibet Triggered by Thrusting [J].
Cao, Kai ;
Wang, Guocan ;
Leloup, Philippe Herve ;
Maheo, Gweltaz ;
Xu, Yadong ;
van der Beek, Pieter A. ;
Replumaz, Anne ;
Zhang, Kexin .
TECTONICS, 2019, 38 (01) :374-391
[8]   Tibetan Magmatism Database [J].
Chapman, James B. ;
Kapp, Paul .
GEOCHEMISTRY GEOPHYSICS GEOSYSTEMS, 2017, 18 (11) :4229-4234
[9]   Combined paleomagnetic and geochronological study on Cretaceous strata of the Qiangtang terrane, central Tibet [J].
Chen, Weiwei ;
Zhang, Shihong ;
Ding, Jikai ;
Zhang, Junhong ;
Zhao, Xixi ;
Zhu, Lidong ;
Yang, Wenguang ;
Yang, Tianshui ;
Li, Haiyan ;
Wu, Huaichun .
GONDWANA RESEARCH, 2017, 41 :373-389
[10]   Insights into the early Tibetan Plateau from (U-Th)/He thermochronology [J].
Dai, Jingen ;
Wang, Chengshan ;
Hourigan, Jeremy ;
Santosh, M. .
JOURNAL OF THE GEOLOGICAL SOCIETY, 2013, 170 (06) :917-927