Late Triassic syn-exhumation magmatism in central Qiangtang, Tibet: Evidence from the Sangehu adakitic rocks

被引:14
作者
Liu, Han [1 ,2 ]
Wang, Bao-di [1 ,2 ]
Ma, Long [1 ]
Gao, Rui [3 ]
Chen, Li [1 ,2 ]
Li, Xiao-bo [1 ,2 ]
Wang, Li-quan [1 ,2 ]
机构
[1] Chengdu Inst Geol & Mineral Resources, Chengdu 610081, Peoples R China
[2] China Geol Survey, Res Ctr Tibetan Plateau Geol, Chengdu 610081, Peoples R China
[3] Chengdu Univ Technol, Chengdu 610059, Peoples R China
关键词
Tibetan plateau; Adakitic rock; Syn-exhumation magmatism; Slab breakoff; Tethys; HF ISOTOPIC CHARACTERISTICS; PALEO-TETHYS OCEAN; PRESSURE METAMORPHIC BELT; LOWER CONTINENTAL-CRUST; NORTH CHINA CRATON; A-TYPE GRANITES; U-PB ZIRCON; TECTONIC IMPLICATIONS; LU-HF; TRACE-ELEMENT;
D O I
10.1016/j.jseaes.2016.10.009
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
The geodynamic setting of Late Triassic magmatic activity along the Longmu Co-Shuanghu suture zone (LSSZ) in central Qiangtang, Tibet is a matter of debate. This paper presents zircon LA-ICP-MS U-Pb ages, zircon Hf isotopic compositions, and whole-rock geochemical data for the Sangehu (SGH) granitic intrusion in central Qiangtang, and addresses the petrogenesis of Late Triassic magmatism, and the history of collision between the northern and southern Qiangtang terranes. The SGH pluton consists mainly of biotite adamellite with mafic microgranular enclaves (MMEs), and small amounts of K-feldspar granite. The biotite adamellite, MMEs, and K-feldspar granite give ages of 207.8 +/- 3.0 Ma, 212.4 +/- 31 Ma, and 211.6 +/- 3.8 Ma, respectively. The MMEs show magmatic textures and acicular apatite, and are coeval with the host biotite adamellite, suggesting they were produced by magma mixing. All samples from the SGH pluton show high Sr and low Y contents, and positive Eu anomalies, similar to adakitic rocks. The high K2O contents and low Mg#, Cr, and Ni contents, and enriched Hf isotopic characteristics of the zircons indicate that- these magmas were derived from the partial melting of thickened crust. However, the whole-rock geochemical data and zircon Hf isotopic compositions also reveal heterogeneity at the source. The combined magmatic and metamorphic records suggest that Triassic magmatic activity in central Qiangtang was closely related to the collision of the northern and southern Qiangtang terranes. The large-scale Late Triassic (225-200 Ma) magmatic event in central Qiangtang may have resulted from the breakoff of the Longmu Co-Shuanghu Tethys Ocean lithospheric slab in the early Late Triassic (236-230 Ma). The Late Triassic magmatic rocks, including adakitic rocks, are coeval with retrograde high-pressure (HP).to ultrahigh-pressure (UHP) metamorphic rocks in central Qiangtang, and show characteristics of syn-exhumation magmatism. The early adaldtic rocks (>220 Ma) were generated by melting of the edge of the slab, which was heated by upwelling asthenospheric mantle after subduction slab breakoff, and the late adakitic rocks (<220 Ma) were generated by partial Melting of the thickened crust. (C) 2016 Elsevier Ltd. All rights reserved.
引用
收藏
页码:9 / 24
页数:16
相关论文
共 132 条
[61]   Evidence for palaeo-Tethyan oceanic subduction within central Qiangtang, northern Tibet [J].
Liu, Yan ;
Santosh, M. ;
Zhao, Zhong Bao ;
Niu, Wen Chao ;
Wang, Gen Hou .
LITHOS, 2011, 127 (1-2) :39-53
[62]   Continental and Oceanic Crust Recycling-induced Melt-Peridotite Interactions in the Trans-North China Orogen: U-Pb Dating, Hf Isotopes and Trace Elements in Zircons from Mantle Xenoliths [J].
Liu, Yongsheng ;
Gao, Shan ;
Hu, Zhaochu ;
Gao, Changgui ;
Zong, Keqing ;
Wang, Dongbing .
JOURNAL OF PETROLOGY, 2010, 51 (1-2) :537-571
[63]  
[娄昊 Lou Hao], 2014, [地质通报, Geological Bulletin of China], V33, P1391
[64]  
Ludwig K.R, 2003, ISOPLOT 3 00 GEOCHRO, P77
[65]  
Ma L, 2016, GEOSCIENCE, V30, P1
[66]   Adakites without slab melting: High pressure differentiation of island arc magma, Mindanao, the Philippines [J].
Macpherson, CG ;
Dreher, ST ;
Thirlwall, MF .
EARTH AND PLANETARY SCIENCE LETTERS, 2006, 243 (3-4) :581-593
[67]   Adakitic magmas: modern analogues of Archaean granitoids [J].
Martin, H .
LITHOS, 1999, 46 (03) :411-429
[68]  
Matchant R. H., 1997, TECTONOPHYSICS, V269, P217
[69]   Role of oceanic plateaus in the initiation of subduction and origin of continental crust [J].
Nair, Rajeev ;
Chacko, Thomas .
GEOLOGY, 2008, 36 (07) :583-586
[70]  
Niu Y.L., 2018, Global tectonics and metallogeny, V10, P23, DOI [10.1127/gtm/2014/0009, DOI 10.1127/GTM/2014/0009]