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DOI10.1016/j.oregeorev.2023.105334
Geochemistry of magnetite from the Mamupu Cu polymetallic deposit, Yulong belt, Tibet: Implications for magnetite genesis, stages and mechanism of formation
Zhang, Xiaoxu; Tang, Juxing; Lin, Bin; Wang, Qin; He, Liang; Yan, Gang; Shao, Rui; Wu, Qiang; Du, Qiu; Zhaxi, Pingcuo
发表日期2023
ISSN0169-1368
EISSN1872-7360
卷号154
英文摘要The Mamupu copper polymetallic deposit is characterized by multistage magnetite, but the genesis and fluid evolution process of this deposit are still obscure. Three types of magnetite were identified in Mamupu based on comprehensive textural observations and paragenesis. Mag1 occurs as subhedral to euhedral crystals, and smooth Mag1a and porous Mag1b can be distinguished under Backscattered Electron (BSE). Mag2 is characterized by 120 degrees triple junction textures and has been replaced by hematite. Mag3 is commonly replaced by hydrothermal fluids and exhibits well-developed oscillatory zoning and core (Mag3a)-rim (Mag3b) textures. The geochemistry of Mamupu magnetite suggests that they are of hydrothermal origin. Mag1 has undergone extensive fluid-rock interactions, whereas the sharp contacts with Mag1a and Mag1b and the microporosity of Mag1b imply that the Mag1b was generated by the coupled dissolution reprecipitation of the Mag1a grains. This process may be triggered by low-temperature and high-salinity fluid produced by intensive water-rock interaction between ore-bearing magmatic-hydrothermal fluid and carbonate surrounding rock of the Jiaoga Formation. The 120 degrees triple junction textures of Mag2 indicate that it was formed during a fluid-assisted recrystallization process, and Mag2 replaced by hematite represents the increase in oxygen fugacity. From Mag3a to Mag3b, the contents of V and Mn increased while the contents of chalcophile elements decreased, suggesting a decrease of oxygen fugacity and the precipitation of sulfide, which represents the beginning of the sulfide stage. Moreover, petrography and geochemistry data of magnetite represented that the breccia ore of Mamupu belongs to skarn mineralization. The geochemical characteristics of magnetite show that Cu-Au and W-Mo in Mamupu precipitated in different stages, representing the transformation from a relatively oxidized environment in the early stage to a relatively reduced environment in the late stage. These results reveal that trace elements in magnetite can be utilized to define the genesis and evolution of the skarn deposit. In addition, it can also restrict the precipitation mechanism of ore-forming elements in the deposits. However, detailed textural observations should be carried out before experimental research.
关键词MagnetiteMamupu Cu polymetallic depositYulong porphyry copper beltBrecciated ore-body
英文关键词LA-ICP-MS; TRACE-ELEMENT GEOCHEMISTRY; HYDROTHERMAL MAGNETITE; FLUID INCLUSION; YUNNAN PROVINCE; ORE-DEPOSITS; MO DEPOSIT; FE DEPOSIT; SKARN; AU
WOS研究方向Geology ; Mineralogy ; Mining & Mineral Processing
WOS记录号WOS:000943221800001
来源期刊ORE GEOLOGY REVIEWS
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/283371
作者单位China University of Geosciences - Beijing; China Geological Survey; Chinese Academy of Geological Sciences; Chengdu University of Technology
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GB/T 7714
Zhang, Xiaoxu,Tang, Juxing,Lin, Bin,et al. Geochemistry of magnetite from the Mamupu Cu polymetallic deposit, Yulong belt, Tibet: Implications for magnetite genesis, stages and mechanism of formation[J],2023,154.
APA Zhang, Xiaoxu.,Tang, Juxing.,Lin, Bin.,Wang, Qin.,He, Liang.,...&Zhaxi, Pingcuo.(2023).Geochemistry of magnetite from the Mamupu Cu polymetallic deposit, Yulong belt, Tibet: Implications for magnetite genesis, stages and mechanism of formation.ORE GEOLOGY REVIEWS,154.
MLA Zhang, Xiaoxu,et al."Geochemistry of magnetite from the Mamupu Cu polymetallic deposit, Yulong belt, Tibet: Implications for magnetite genesis, stages and mechanism of formation".ORE GEOLOGY REVIEWS 154(2023).
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