Genesis of sediment-hosted stratiform Cu-Co deposits of the Zambia Copperbelt: Geochemistry and S-Pb isotopes constraints from the Chambishi deposit

被引:4
|
作者
Liu, Chun-Fa [1 ,2 ]
Qing, Min [2 ]
Liu, Shu-Fei [1 ]
Ding, Gao-Ming [2 ]
Liu, Bi-Zheng [2 ]
Liu, Yan-Bing [1 ]
Yu, Ping [1 ,2 ]
机构
[1] Beijing Jinyou Geol Explorat Co Ltd, Dept Geosci & Technol, Beijing, Peoples R China
[2] China Gold Grp Resources Co Ltd, Dept Geol & Explorat, Beijing 100011, Peoples R China
关键词
sediment geochemistry; S‐ Pb isotopes; stratiform Cu– Co mineralization; sediment provenance; Chambishi Basin; Zambia Copperbelt; CENTRAL AFRICAN COPPERBELT; NEOPROTEROZOIC KATANGAN BELT; ARGILO-TALQUEUSES RAT; COBALT MINERALIZATION; SULFATE REDUCTION; ORE FORMATION; ROAN GROUP; PROVENANCE; EVOLUTION; ROCKS;
D O I
10.1002/gj.4134
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
In this study, we present new field geology, whole-rock geochemical and S-Pb isotope data for the Chambishi deposit in the Zambia Copperbelt (ZCB), in order to constrain the mineralization process and ore sulphur and metal source. The Lower Roan Subgroup clastic rocks are compositionally similar to the Post-Archean Australian Shale and have low Chemical Index of Alteration, indicating a felsic and slightly weathered source, which we proposed to be the felsic Lufubu Metamorphic Complex (LMC). The Th, Ti, and Zr elemental features suggest that the Lower Roan Subgroup was deposited in a rift basin of passive margin. The S-34 values of early-stage diagenetic Cu-Co sulphide (-6.2 to +6.6 parts per thousand, Vienna Canyon Diablo Troilite [V-CDT]) from the nodular and layered ores are lower than those of the late-stage vein-type hydrothermal Cu-Co sulphides and disseminated molybdenites (3.9-11.9 parts per thousand, V-CDT), indicating different sulphur precipitation mechanism in the two mineralization stages. Integrated with previous fluid inclusion studies, we suggest that the sulphur for the diagenetic sulphides was from bacterial reduction of sedimentary anhydrite and seawater sulphates, whereas that for the orogenic-stage sulphides was from both diagenetic sulphide remobilization and from thermochemical sulphate reduction. The mean U-238/Pb-204 ratios of the diagenetic- and orogenic-stage sulphides are 10.21 and 10.44, respectively, overlapping with those of the average Lufubu schist (10.38) and the Mufulira granodiorite (10.21), and suggest the LMC as the main ore metal source.
引用
收藏
页码:3902 / 3921
页数:20
相关论文
共 50 条
  • [41] Anatomy and genesis of the world's largest carbonate-hosted Zn-Pb deposit: New insights from ore characteristics, Zn-Pb-C-O isotopes, and trace element constraints of the Huoshaoyun deposit, Karakorum Range, Xinjiang
    Ke, Qiang
    Hong, Tao
    Santosh, M.
    Li, Hao
    Zhang, Guoliang
    Li, Hang
    Wan, Jianling
    Fan, Tingbin
    Dong, Lianhui
    Ma, Jing
    Xu, Xing-Wang
    GEOSCIENCE FRONTIERS, 2024, 15 (06)
  • [42] Genesis of gold deposits in the Wulong orefield, Liaodong Peninsula, North China Craton: Constraints from ore deposit geology, REE, and C-H-O-S-Pb isotopes
    Chen, Cong
    Li, Dong-Tao
    Wu, Tao-Tao
    Zhao, Yan
    Zhao, Chun-Qiang
    Yang, Jia-Lin
    Gu, Yu-Chao
    GEOLOGICAL JOURNAL, 2020, 55 (08) : 5914 - 5933
  • [43] Genesis of the Neoarchean subduction-related Taoke Ni-Cu-(PGE) sulphide deposit in the North China Craton: Constraints from Os-S isotopes and PGE geochemistry
    Zhang, Ai-Ping
    Sun, Tao
    Zhao, Zhi-Fang
    Zhou, Jia-Xi
    Li, Wan-Ting
    Qi, Qun-Jia
    Wei, Xi-Zhu
    GEOLOGICAL JOURNAL, 2021, 56 (09) : 4888 - 4903
  • [44] Ore Genesis for Stratiform Ore Bodies of the Dongfengnanshan Copper Polymetallic Deposit in the Yanbian Area, NE China:Constraints from LA-ICP-MS in situ Trace Elements and Sulfide S–Pb Isotopes
    LU Siyu
    REN Yunsheng
    YANG Qun
    SUN Zhenming
    HAO Yujie
    SUN Xinhao
    Acta Geologica Sinica(English Edition), 2019, 93 (05) : 1591 - 1606
  • [45] Ore genesis of the Fancha gold deposit, Xiaoqinling goldfield, southern margin of the North China Craton: Constraints from pyrite Re-Os geochronology and He-Ar, in-situ S-Pb isotopes
    Liu, Junchen
    Wang, Yitian
    Hu, Qiaoqing
    Wei, Ran
    Huang, Shikang
    Sun, Zhenghao
    Hao, Jiaolong
    ORE GEOLOGY REVIEWS, 2020, 119 (119)
  • [46] Geology and genesis of the Qi191 granite-hosted gold deposit in the southern margin of the North China Craton: constraints from SIMS zircon U-Pb, sericite 40Ar/39Ar, in-situ trace elements, and in-situ S-Pb isotopes
    Wang, Peng
    Li, Hongying
    Mao, Jingwen
    Ye, Huishou
    He, Sheng
    Yan, Jianming
    Wu, Shaokui
    Wan, Limin
    Zhang, Zhibo
    MINERALOGY AND PETROLOGY, 2021, 115 (03) : 343 - 363
  • [47] New constraints on the genesis and geodynamic setting of the Wulong gold deposit, Liaodong Peninsula, northeast China: evidence from geology, geochemistry, fluid inclusions, and C-H-O-S-Pb isotopes
    Cheng, Xihui
    Xu, Jiuhua
    Yang, Fuquan
    Zhang, Guorui
    Zhang, Hui
    Bian, Chunjing
    Xue, Qingpo
    CANADIAN JOURNAL OF EARTH SCIENCES, 2020, 57 (03) : 307 - 330
  • [48] Ore Genesis and Geodynamic Setting of Laochang Ag-Pb-Zn-Cu Deposit, Southern Sanjiang Tethys Metallogenic Belt, China: Constraints from Whole Rock Geochemistry, Trace Elements in Sphalerite, Zircon U-Pb Dating and Pb Isotopes
    Wei, Chen
    Ye, Lin
    Huang, Zhilong
    Gao, Wei
    Hu, Yusi
    Li, Zhenli
    Zhang, Jiawei
    MINERALS, 2018, 8 (11):
  • [49] Superimposing porphyry Mo and vein-type Cu-Pb-Zn mineralization in the Panjiaduan deposit, Great Xing'an Range (NE China): Perspective from zircon U-Pb and sphalerite Rb-Sr dating, geochemistry and S-Pb isotopes
    Sun, Qing-fei
    Wang, Ke-yong
    Sun, Feng-yue
    Lai, Chun-kit
    Zhang, Miao
    Zhao, Chen-guang
    Sun, Li-xue
    ORE GEOLOGY REVIEWS, 2021, 139
  • [50] Genesis of the Weizigou Au Deposit, Heilongjiang Province, NE China: Constraints from LA-ICP-MS Trace Element Analysis of Magnetite, Pyrite and Pyrrhotite, Pyrite Re-Os Dating and S-Pb Isotopes
    Gao, Yu
    Hao, Yujie
    Lu, Siyu
    MINERALS, 2021, 11 (12)