Journal of Jilin University(Earth Science Edition) ›› 2026, Vol. 56 ›› Issue (3): 835-851.doi: 10.13278/j.cnki.jjuese.20250069

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The Geochemical Characteristics and Geological Significance of the Rhyolite Porphyry in Shanghuofang Area of Guangxing-Zhirui Basin

  Wang Changdong, Dong Xiaoyu, Hao Xiaofei, Jiang Shan, Yu Bing, Zhou Jian, Wang Tianqi#br#

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  1. Nuclear Industry Team 243,Chifeng 024000, Inner Mongolia,China
  • Online:2026-05-26 Published:2026-06-02
  • Supported by:
    Supported by the Uranium Ore Geological Exploration Project of Central Financial Funds (202312)

Abstract: The Shanghuofang area is located at the central crater of the Guangxing-Zhirui basin in the Guyuan-Hongshanzi uranium and polymetallic metallogenic belt. Many uranium-molybdenum industrial-grade drill holes and mineralization occurrences have been identified. The molybdenum resource potential has reached the level of a medium-sized deposit, and the metallogenic conditions are favorable. The main ore-hosting country rock for uranium-molybdenum mineralization is rhyolite porphyry. In order to further investigate the geochemical characteristics and the tectonic setting of the rhyolite porphyry, this paper employed zircon U-Pb dating and whole-rock major and trace element analyses. The results show that the zircon U-Pb age of the rhyolite porphyry is 157 Ma, indicating that it formed in the Late Jurassic. Geochemical studies show that it has high SiO2 (w(SiO2)>70%), high total alkali content (w(K2O+Na2O) >8%), low MgO (w(MgO)<0.5%), and is characterized by enrichment in large-ion lithophile elements (Rb, K, Ba, Th) and Zr, relative depletion in high-field-strength elements (P, Ta, Ti). The trace element characteristics indicate that the rhyolite porphyry in the Shanghuofang area is a typical post-orogenic A-type granite. Based on the regional tectonic background, we suggest that its formation is related to the post-collision extensional tectonic action following the closure of the Mongolia-Okhotsk Ocean.


Key words: rhyolite porphyry, geochronology, geochemistry, Guangxing-Zhirui basin, uranium-molybdenum deposit

CLC Number: 

  • P59
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