Ore-Forming Fluids Characteristics and Metallogenesis of the Anjing Hitam Pb-Zn Deposit in Northern Sumatra, Indonesia

被引:0
|
作者
Chaowen Huang
Gaofeng Du
Huajun Jiang
Jianfeng Xie
Daohan Zha
Huan Li
Chun-Kit Lai
机构
[1] Central South University,Key Laboratory of Metallogenic Prediction of Nonferrous Metals and Geological Environment Monitoring, Ministry of Education, School of Geosciences and Info
[2] Geological Survey of Anhui Province,Physics
[3] University of Science and Technology of China,School of Earth and Space Sciences
[4] Research Institute of Hunan Provincial Nonfenous Metals Geological Exploration Bureau,Faculty of Science
[5] Hunan Key Laboratory of Land Resources Evaluation and Utilization,Centre of Excellence in Ore Deposits (CODES)
[6] Universiti Brunei Darussalam,undefined
[7] University of Tasmania,undefined
来源
Journal of Earth Science | 2019年 / 30卷
关键词
Anjing Hitam; SEDEX; C-O isotopes; fluid inclusion; Sumatra; Indonesia;
D O I
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中图分类号
学科分类号
摘要
The Anjing Hitam Pb-Zn deposit in northern Sumatra (Indonesia) is one of the largest Pb-Zn deposits in the region. The stratiform orebodies are mainly hosted in the middle member of the Carboniferous-Permian Kluet Formation of the Tapanuli Group. Mineral paragenesis and crosscutting relationships suggest a two-stage Pb-Zn mineralization: (I) sedimentary and (II) hydrothermal mineralization. Ore-related calcite from both stages I and II contains mainly liquid- and gas-liquid two-phase-type fluid inclusions (FI). For stage I ore-forming fluids, FI homogenization temperatures (Th) are 105 to 199 °C, and the salinities are 9.6 wt.% to 16.6 wt.% NaCleqiv, reflecting low temperature and medium-low salinity; whereas in stage II, the Th (206 to 267 °C) and salinity (19.0 wt.% to 22.5 wt.% NaCleqiv) are considerably higher. Fluid inclusion and C-O isotope characteristics suggest that the stage I ore-forming fluids were mainly derived from a mixture of seawater and magmatic fluids (probably from deep-lying plutons), whereas the stage II ore-forming fluids were likely magmatic-derived with wall rock input. We propose that the Anjing Hitam deposit was a Carboniferous exhalative sedimentary (SEDEX) deposit overprinted by the Pleistocene vein-style magmatic-hydrothermal mineralization.
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页码:131 / 141
页数:10
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