Earth Science Frontiers ›› 2022, Vol. 29 ›› Issue (1): 65-80.DOI: 10.13745/j.esf.sf.2021.8.4

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The Xiwukou Rb deposit in the Jiangnan uplift belt, Ningguo City, Anhui Province: Rb occurrence and ore-forming mechanisms

CHEN Xuefeng1,2,3(), FAN Yu1,2,3,*(), ZHOU Taofa1,2,3, YU Jianghua4, QIAN Shilong4, LU Zhongqiu4, YANG Zhangyi4, HONG Jianmin4   

  1. 1. School of Resources and Environmental Engineering, Hefei University of Technology, Hefei 230009, China
    2. Ore Deposit and Exploration Center (ODEC), Hefei University of Technology, Hefei 230009, China
    3. Anhui Province Engineering Research Center for Mineral Resources and Mine Environments, Hefei 230009, China
    4. No.322 Geological Party, Bureau of Geology and Mineral Resources Exploration of Anhui Province, Ma’anshan 243000, China
  • Received:2021-05-10 Revised:2021-08-01 Online:2022-01-25 Published:2022-02-22
  • Contact: FAN Yu

Abstract:

The Xiwukou rubidium (Rb) deposit—a granite-related ore deposit—is the first discovered Rb deposit in the Jiangnan uplift belt, Ningguo City, Anhui Province. Two spatially distinct orebodies, type-Ⅰ and type-Ⅱ, developed in the Xiwukou deposit. The type-Ⅰ orebody is hosted in granite porphyry, and the type-Ⅱ is at the top of the granite porphyry. The mineral combinations are all phengite + quartz, but ore grade is higher in type-I (0.25%) than in type-Ⅱ (0.21%) orebody. Previous researches had focused on the mineralization characteristics, chronology, petrogenesis, and magmatic source, but the mineral occurrence status of Rb and the metallogenic mechanism in the Xiwukou deposit are still unclear. In this study, we used electron probe analysis and LA-ICP-MS to characterize the granite porphyry-hosted plagioclase, K-feldspar and biotite and phengite in the type-Ⅰ, Ⅱ orebodies. We found that the average Rb contents in plagioclase, K-feldspar and biotite, formed in the early stage, were 3.10 × 10-6, 872 × 10-6 and 1 328 × 10-6, respectively; while in phengite, formed in the late stage, the Rb contents were 2544 × 10-6 and 2686 × 10-6 in type-I and type-II orebodies, respectively. The stoichiometric calculation results show that Rb+ is incorporated into phengite through isomorphism replacing K+ and Na+. Combining the geological characteristics of the deposit with comparative analysis of regional igneous rocks, we propose the following ore-forming mechanism for the Xiwukou Rb deposit: The Rb background value and fluorine content in the ore-forming magmatic fluids was fairly high, and mineral crystallization led to further Rb enrichment in the residual magma. During the transition stage from magma to hydrothermal fluid, the high fluorine condition caused a structural change in silicate, from a framework to layered structure, which facilitated large-scale crystallization of Rb-rich phengnite to form Rb-rich orebody.

Key words: Jiangnan uplift belt, Xiwukou deposit, rubidium, occurrence status, metallogenic mechanism

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