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Article

Geology and Geochronology of Magmatic–Hydrothermal Breccia Pipes in the Yixingzhai Gold Deposit: Implications for Ore Genesis and Regional Exploration

1
State Key Laboratory of Geological Processes and Mineral Resources, China University of Geosciences, Wuhan 430074, China
2
School of Earth Resources, China University of Geosciences, Wuhan 430074, China
3
Mineral Exploration Institute, Zijin Mining Group Co., Xiamen 361006, China
*
Author to whom correspondence should be addressed.
Minerals 2024, 14(5), 496; https://doi.org/10.3390/min14050496
Submission received: 2 February 2024 / Revised: 29 April 2024 / Accepted: 2 May 2024 / Published: 8 May 2024
(This article belongs to the Special Issue Using Mineral Chemistry to Characterize Ore-Forming Processes)

Abstract

Magmatic–hydrothermal breccia pipes are widespread in numerous major porphyry and epithermal gold deposits globally, representing significant repositories of metal resources and serving as potential indicators for exploration targeting. More than ten breccia pipes occur in the Central Taihangshan District (CTD) of the North China Craton. Some of these breccia pipes host gold mineralization and are proposed to be related to the adjacent lode gold mineralization. However, the lack of detailed geological constraints make this hypothesis ambiguous. To address this, the present study conducted comprehensive field observations, drill core logging, an in situ sulfur isotope analysis of pyrite, and the 40Ar/39Ar dating of adularia along a 1400 m section of the Tietangdong breccia pipe at Yixingzhai. Three distinct breccia facies were identified at Tietangdong, exhibiting variable proportions across the entire section, including a massive skarn breccia; polymictic, skarn matrix-supported breccia; and polymictic, intrusive rock cement chaotic breccia. Furthermore, adularia 40Ar/39Ar dating indicates a syn-/post-gold mineralization age of 136 ± 1.5 Ma, coinciding with the age of post-breccia felsite dike. The deepest sampled pyrite displays δ34S values of ~2.7‰, strongly indicating a magmatic–hydrothermal signature. These results, when combined with the geological, geochronological, and isotopic studies on the adjacent lode gold mineralization, further suggest a close genetic relationship between the breccia pipes and the lode Au mineralization, paving the way for their utilization as effective indicators for gold targeting within the CTD.
Keywords: North China Craton; Central Taihangshan District; breccia pipes; gold mineralizations; sulfur isotope; adularia dating North China Craton; Central Taihangshan District; breccia pipes; gold mineralizations; sulfur isotope; adularia dating

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MDPI and ACS Style

Zhang, L.-Z.; Gao, W.-S.; Deng, X.-D. Geology and Geochronology of Magmatic–Hydrothermal Breccia Pipes in the Yixingzhai Gold Deposit: Implications for Ore Genesis and Regional Exploration. Minerals 2024, 14, 496. https://doi.org/10.3390/min14050496

AMA Style

Zhang L-Z, Gao W-S, Deng X-D. Geology and Geochronology of Magmatic–Hydrothermal Breccia Pipes in the Yixingzhai Gold Deposit: Implications for Ore Genesis and Regional Exploration. Minerals. 2024; 14(5):496. https://doi.org/10.3390/min14050496

Chicago/Turabian Style

Zhang, Li-Zhong, Wen-Sheng Gao, and Xiao-Dong Deng. 2024. "Geology and Geochronology of Magmatic–Hydrothermal Breccia Pipes in the Yixingzhai Gold Deposit: Implications for Ore Genesis and Regional Exploration" Minerals 14, no. 5: 496. https://doi.org/10.3390/min14050496

APA Style

Zhang, L.-Z., Gao, W.-S., & Deng, X.-D. (2024). Geology and Geochronology of Magmatic–Hydrothermal Breccia Pipes in the Yixingzhai Gold Deposit: Implications for Ore Genesis and Regional Exploration. Minerals, 14(5), 496. https://doi.org/10.3390/min14050496

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