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Ordovician Granitoids and Silurian Mafic Dikes in the Western Kunlun Orogen, Northwest China: Implications for Evolution of the Proto-Tethys
作者姓名:ZHANG Qichao  WU Zhenhan  LI Shan  LI Kan  LIU Zhiwei  ZHOU Qing
作者单位:1 Chinese Academy of Geological Sciences, Beijing 100037, China;2 Key Laboratory of Deep-Earth Dynamics, Ministry of Natural Resources, Institute of Geology, Chinese Academy of Geological Sciences, Beijing 100037, China;3 Xi’an Institute of Geology and Mineral Resources, Chinese Geological Survey, Xi’an 710054, China; 4 Chengdu Institute of Geology and Mineral Resources, Chinese Geological Survey, Chengdu 610081, China
基金项目:funded by the Strategic Priority Research Program of Chinese Academy of Sciences,Grant No.XDA20070304;the Fundamental Research Funds for the Chinese Academy of Geological Sciences(YYWF201601);projects of China Geological Survey(DD20160004,20160083-1,12120115000801,121201101000150014);the National Natural Science Foundation of China(grant 41772232)
摘    要:The western Kunlun orogen in the northwest Tibet Plateau is related to subduction and collision of Proto-and Paleo-Tethys from early Paleozoic to early Mesozoic. This paper presents new LA-ICPMS zircon U-Pb ages and Lu-Hf isotopes, whole-rock major and trace elements, and Sr–Nd isotopes of two Ordovician granitoid plutons(466–455 Ma) and their Silurian mafic dikes(~436 Ma) in the western Kunlun orogen. These granitoids show peraluminous high-K calcalkaline characteristics, with(87Sr/86Sr)_i value of 0.7129–0.7224, εNd(t) values of -9.3 to -7.0 and zircon εHf(t) values of -17.3 to -0.2, indicating that they were formed by partial melting of ancient lower-crust(metaigneous rocks mixed with metasedimentary rocks) with some mantle materials in response to subduction of the Proto-Tethyan Ocean and following collision. The Silurian mafic dikes were considered to have been derived from a low degree of partial melting of primary mafic magma. These mafic dikes show initial 87Sr/86Sr ratios of 0.7101–0.7152 and εNd(t) values of -3.8 to -3.4 and zircon εHf(t) values of -8.8 to -4.9, indicating that they were derived from enriched mantle in response to post-collisional slab break-off. Combined with regional geology, our new data provide valuable insight into late evolution of the Proto-Tethys.

关 键 词:High-K  CALC-ALKALINE  GRANITOIDS  mafic  DIKES  Western  KUNLUN  OROGEN  Proto-Tethys
收稿时间:2018-08-16
修稿时间:2018-10-25
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