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Post-Orogenic Granites in Pingwu Region, Northwest Sichuan: Evidence for North China Block and Yangtze Block Collision during Triassic

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【作者】 裴先治李佐臣丁仨平冯建赟李瑞保孙雨张亚峰刘战庆

【Author】 Pei Xianzhi State Key Laboratory of Continental Dynamics,Northwest University,Xi’an 710069,China; Key Laboratory of Western China’s Mineral Resources and Geological Engineering of Ministry of Education,Chang’an University,Xi’an 710054,China Li Zuochen ,Ding Saping ,Feng Jianyun ,Li Ruibao,Sun Yu ,Zhang Yafeng ,Liu Zhanqing Key Laboratory of Western China’s Mineral Resources and Geological Engineering of the Ministry of Education,College of Earth Science and Land Resources,Chang’an University,Xi’an 710054,China

【机构】 State Key Laboratory of Continental Dynamics,Northwest UniversityKey Laboratory of Western China’s Mineral Resources and Geological Engineering of Ministry of Education,Chang’an UniversityKey Laboratory of Western China’s Mineral Resources and Geological Engineering of the Ministry of Education,College of Earth Science and Land Resources,Chang’an UniversityKey Laboratory of Western China’s Mineral Resources and Geological Engineering of the Ministry of Education,College of Earth Science and Land Resources,Chang’an University

【摘要】 The Nanyili (南一里), Laohegou (老河沟), and Shaiziyan (筛子岩) granitic intrusions are located in the southern margin of the Bikou (碧口) block in Pingwu (平武) area, Northwest Sichuan (四川). The petrography and geochemical characteristics of the granitic intrusions as well as their source and tectonic settings are reported and discussed in this article. The Laohegou and Shaiziyan granites are with high SiO2 (69.89 wt.%–73.05 wt.%) and Al2O3 contents, and A/CNK=1.04–1.12. They are typical strongly peraluminous granites, with supersaturation in Al and Si. The abundance of ∑REE varies in the range of (33.13–89.12)×10-6. The rocks show an LREE enrichment pattern and obvious Eu negative anomaly. The trace element geochemistry is characterized evidently by a negative anomaly of Ta, Nb, Ti, etc. and a positive anomaly of Rb, Ba, Sr, etc.. Zircons of the Nanyili granite have higher Th/U ratios, and their CL images have internal oscillatory zoning, suggesting that the zircons of the samples are igneous in origin. The LA ICP-MS zircon U-Pb isotopic concordia diagram yields an age of 223.1±2.6 Ma (MSWD=1.4), which indicates that the granodiorite intrusions formed in the early Late Triassic. The Nanyili, Laohegou, and Shaiziyan granites have the characteristics of post-collisional granites and are regarded as post-orogenic granites. Thus, the granite intrusions are interpreted as syn-collisional granites that resulted from the crustal thickening caused by the collisions between the North China plate and the Yangtze plate during the Indosinian. The granitic intrusions formed in a transitional environment from syn(compressional environment) to post-collision (extensional environment).

【Abstract】 The Nanyili (南一里), Laohegou (老河沟), and Shaiziyan (筛子岩) granitic intrusions are located in the southern margin of the Bikou (碧口) block in Pingwu (平武) area, Northwest Sichuan (四 川). The petrography and geochemical characteristics of the granitic intrusions as well as their source and tectonic settings are reported and discussed in this article. The Laohegou and Shaiziyan granites are with high SiO2 (69.89 wt.%–73.05 wt.%) and Al2O3 contents, and A/CNK=1.04–1.12. They are typical strongly peraluminous granites, with supersaturation in Al and Si. The abundance of ∑REE varies in the range of (33.13–89.12)×10-6. The rocks show an LREE enrichment pattern and obvious Eu negative anomaly. The trace element geochemistry is characterized evidently by a negative anomaly of Ta, Nb, Ti, etc. and a positive anomaly of Rb, Ba, Sr, etc.. Zircons of the Nanyili granite have higher Th/U ratios, and their CL images have internal oscillatory zoning, suggesting that the zircons of the samples are igneous in origin. The LA ICP-MS zircon U-Pb isotopic concordia diagram yields an age of 223.1±2.6 Ma (MSWD=1.4), which indicates that the granodiorite intrusions formed in the early Late Triassic. The Nanyili, Laohegou, and Shaiziyan granites have the characteristics of post-collisional granites and are regarded as post-orogenic granites. Thus, the granite intrusions are interpreted as syn-collisional granites that resulted from the crustal thickening caused by the collisions between the North China plate and the Yangtze plate during the Indosinian. The granitic intrusions formed in a transitional environment from syn(compressional environment) to post-collision (extensional environment).

【基金】 supported by the National Natural Science Foundation of China (Nos. 40572121 and 40234041);MOST Special Fund from the State Key Laboratory of Continental Dynamics, Northwest University
  • 【文献出处】 Journal of Earth Science ,地球科学学刊(英文版) , 编辑部邮箱 ,2009年02期
  • 【分类号】P541
  • 【被引频次】6
  • 【下载频次】181
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