Distribution and Enrichment of Au, Hg, and Tl in the Lanmuchang Deposit, Guizhou, China

Author:

Li Songtao12,Liu Jianzhong234,Xia Yong5,Wang Zepeng26,Yang Chengfu26,Xie Zhuojun5,Tan Qinping5ORCID,Zhang Bingqiang46

Affiliation:

1. School of Geography and Resources, Guizhou Education University, Guiyang 550018, China

2. Engineering Technology Innovation Center of Mineral Resources Explorations in Bedrock Zones, Ministry of Natural Resources of China, Guiyang 550081, China

3. Guizhou Bureau of Geology and Mineral Exploration and Development, Guiyang 550004, China

4. College of Resource and Environmental Engineering, Guizhou University, Guiyang 550025, China

5. State Key Laboratory of Ore Deposit Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550081, China

6. 105 Geological Team, Guizhou Bureau of Geology and Mineral Exploration and Development, Guiyang 550018, China

Abstract

Mineralization characterized by Au, Hg, and Tl enrichment is rare, and research on Au, Hg, and Tl mineralization is limited. The Lanmuchang Au–Hg–Tl deposit is located in the “Golden Triangle” of Yunnan, Guizhou, and Guangxi Provinces in China. In this study, we used scanning electron microscopy (SEM), electron microprobe analysis (EPMA), and a Tescan integrated mineral analyzer (TIMA) to analyze the mineral composition and distribution of the different types of ores and identify the occurrence state and enrichment mechanism of ore-forming elements in the Lanmuchang deposit. The results show that the primary ore minerals in the Lanmuchang deposit are pyrite, cinnabar, and lorandite. Cinnabar is the primary carrier of Hg (>90%), and pyrite is the primary carrier of Tl (>60%). Gold, Hg, and Tl primarily occur as solid solutions in hydrothermal pyrite, whereas they primarily occur as nano-scale particles in diagenetic pyrite. The substitution of As for S in hydrothermal pyrite promotes Au enrichment. The coupled substitution of 2Fe2+ ⇔ Tl+ + As3+ may be a significant Tl incorporation mechanism and promotes the occurrence of Hg in pyrite. The As and Se contents and Cu/Au and Co/Ni ratios of the hydrothermal pyrite demonstrate that the ore-forming fluid was mostly in a low-temperature, low-salinity, almost-neutral pH, and nearly reducing environment. The results show that the mineralization of the Lanmuchang deposit is associated with the cooling, oxidation, water–rock interaction, and boiling processes of the ore-forming fluid(s).

Funder

Ministry of Education of China

Guizhou Provincial Basic Research Program

Guizhou Provincial Science and Technology Innovation Talent Team

National Natural Science Foundation of China

Reward and Subsidy Fund Project of Guizhou Education University, Ministry of Science and Technology of the People’s Republic of China and National Natural Science Foundation of China

Innovation Team of Carlin-type gold deposit mineralization and prospecting in Guizhou Province

Growth Project of Young Scientifc and Technological Talents in Colleges and Universities of Guizhou Province

Publisher

MDPI AG

Reference59 articles.

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