A New Discovery of Mineralization as Subseafloor Hydrothermal Replacement in the Duddar Super-Large SEDEX Lead-Zinc Deposit in Pakistan

Author:

Zhang HuishanORCID,Song YucaiORCID,Sun Jianing,Hong Jun,Khalil Yasir Shaheen,Li Yanguang,Zhang Haidi,Wang Zhihua

Publisher

Springer Science and Business Media LLC

Reference23 articles.

1. Ahsan, S. N., Mallick, K. A., 1996. A Genetic Model for Zinc-Lead Mineral Deposits, Lasbela and Khuzdar Districts, Balochistan, Pakistan. Geologica, 2: 1–22

2. Goodfellow, W. D., Lydon, J. W., 2007. Sedimentary Exhalative (SEDEX) Deposits. Geological Association of Canada, Special Publication, 5: 163–183

3. Goodfellow, W. D., Lydon, J. W., Turner, R. J., 1993. Geology and Genesis of Stratiform Sediment-Hosted (SEDEX) Zinc-Lead-Silver Sulphide Deposits. Geological Association of Canada, Special Paper, 40: 201–252

4. Hayward, N., Magnall, J. M., Taylor, M., et al., 2021. The Teena Zn-Pb Deposit (McArthur Basin, Australia). Part I: Syndiagenetic Base Metal Sulfide Mineralization Related to Dynamic Subbasin Evolution. Economic Geology, 116(8): 1743–1768. https://doi.org/10.5382/econgeo.4846

5. Huang, C. W., Du, G. F., Jiang, H. J., et al., 2019. Ore-Forming Fluids Characteristics and Metallogenesis of the Anjing Hitam Pb-Zn Deposit in Northern Sumatra, Indonesia. Journal of Earth Science, 30(1): 131–141. https://doi.org/10.1007/s12583-019-0859-z

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