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Mineral Assemblages and Ore-Forming Physicochemical Conditions of the La'erma and Qiongmo Au–Se Deposits in the Western Qinling Orogen, Central China.

Authors :
Liu, Jiajun
Weng, Guoming
Carranza, Emmanuel John M.
Zhai, Degao
Wang, Yinhong
Zhang, Fangfang
Gao, Shen
Xu, Lei
Source :
Minerals (2075-163X); May2024, Vol. 14 Issue 5, p507, 20p
Publication Year :
2024

Abstract

The La'erma and Qiongmo Au–Se deposits are characterized by a paragenetic Au–Se association hosted in the siliceous formation of the Cambrian Taiyangding Group in the western Qinling Orogen, central China. The La'erma and Qiongmo Au–Se deposits, which are considered to be the Carlin gold deposits, comprise a variety of selenides, native gold, and stibnite coexisting with baryte. Four stages have been recognized: sage I comprises pyrite and quartz with minor stibnite; stage II is composed mainly of sulfides; stage III is composed mainly of selenides; and stage IV is dominated by quartz–baryte–dickite. Stages II and III are the main metallogenic stages. Based on changes in mineral assemblages, combined with fluid inclusions and thermodynamic data, we evaluated the physicochemical conditions of the main metallogenic stages. The logfS<subscript>2</subscript> values of ore-forming fluids at stage II ranged between −10.44 and −14.60 with logfSe<subscript>2</subscript> being less than −10.70. Comparably, during stage III, which is characterized by numerous selenides, the logfS<subscript>2</subscript> and logfSe<subscript>2</subscript> ranged from −7.13 to −12.20 and −13.98 to −8.82, respectively. The occurrence of baryte during the mineralization suggests a consistently oxidizing condition, which can effectively remove Au from fluids. More importantly, this study emphasizes that the oxidizing condition was only a fundamental prerequisite for the deposition of selenides, and a high ∑Se/S ratio of the fluid ultimately controlled the precipitation of selenides. In the La'erma and Qiongmo deposits, intense water–rock reactions occurred as ore-forming fluids flowed into the Se-rich siliceous formations, resulting in an increase in the ∑Se/S ratio of the fluid and in the precipitation of selenides. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
2075163X
Volume :
14
Issue :
5
Database :
Complementary Index
Journal :
Minerals (2075-163X)
Publication Type :
Academic Journal
Accession number :
177494356
Full Text :
https://doi.org/10.3390/min14050507