Late Triassic U-bearing and barren granites in the Miao'ershan batholith, South China: Petrogenetic discrimination and exploration significance

The Miao'ershan uranium ore district is one of the most important granite-hosted uranium producers in South China. There are several Triassic granite plutons in the Miao'ershan batholith, but uranium ore deposits mainly occur within the Douzhashan granitic body. Precise zircon U–Pb dating...

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Published inOre geology reviews Vol. 77; pp. 260 - 278
Main Authors Zhao, Kui-Dong, Jiang, Shao-Yong, Ling, Hong-Fei, Sun, Tao, Chen, Wei-Feng, Chen, Pei-Rong, Pu, Wei
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.09.2016
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Abstract The Miao'ershan uranium ore district is one of the most important granite-hosted uranium producers in South China. There are several Triassic granite plutons in the Miao'ershan batholith, but uranium ore deposits mainly occur within the Douzhashan granitic body. Precise zircon U–Pb dating indicated that these Triassic granite plutons were emplaced during 204 to 215Ma. The Douzhashan U-bearing granite lies in the central part of the Miao'ershan batholith, and has higher U contents (8.0 to 26.1ppm, average 17.0ppm) than the nearby Xiangcaoping granite (5.0 to 9.3ppm, average 7.0ppm) and the Yangqiaoling granite (6.4 to 18.3ppm, average 11.5ppm) in the south part of the batholith. The Douzhashan granite is composed of medium-grained two-mica granite, whereas the Xiangcaoping and Yangqiaoling granites are composed of porphyritic biotite granite. Both the Xiangcaoping and Douzhashan granites have high A/CNK ratios (>1.10), high (87Sr/86Sr)i ratios (>0.720) and low εNd(t) values (−11.3 to −10.4), suggesting that they belong to strongly peraluminous S-type granites. The Douzhashan granite has low CaO/Na2O ratios, high Rb/Sr and Rb/Ba ratios, indicating a partial melting origin of clay-rich pelitic rocks. In contrast, the Xiangcaoping granite formed from clay-poor psammite-derived melt. The Yangqiaoling granite shows different geochemical characteristics with the Douzhashan and Xiangcaoping granites, indicating a different magma source. The Yangqiaoling granite has higher εNd(t) of −9.4 to −8.3 and variable A/CNK values from 0.98 to 1.19, suggesting a mixture source of meta-sedimentary rocks and meta-igneous rocks. Crystallization fractionation is not the main mechanism for U enrichment in the Douzhashan granite. We suggest that U-rich pelitic rock sources may be the key factor to generate peraluminous U-bearing granites in South China. Searching for those granites which are reduced, strongly peraluminous and were derived from U-rich pelitic rocks, is the most effective way for exploring granite-hosted U deposits. [Display omitted] •The Triassic granites in the Miao'ershan batholith host U mineralization.•The U-bearing Douzhashan granite belongs to strongly peraluminous S-type.•Douzhashan granite was derived from partial melting of clay-rich pelitic rocks.•The U-barren granites have mixture source of meta-sedimentary and meta-igneous rocks.•U-rich pelitic-rock sources were the key factor for U-mineralization.
AbstractList The Miao'ershan uranium ore district is one of the most important granite-hosted uranium producers in South China. There are several Triassic granite plutons in the Miao'ershan batholith, but uranium ore deposits mainly occur within the Douzhashan granitic body. Precise zircon U–Pb dating indicated that these Triassic granite plutons were emplaced during 204 to 215Ma. The Douzhashan U-bearing granite lies in the central part of the Miao'ershan batholith, and has higher U contents (8.0 to 26.1ppm, average 17.0ppm) than the nearby Xiangcaoping granite (5.0 to 9.3ppm, average 7.0ppm) and the Yangqiaoling granite (6.4 to 18.3ppm, average 11.5ppm) in the south part of the batholith. The Douzhashan granite is composed of medium-grained two-mica granite, whereas the Xiangcaoping and Yangqiaoling granites are composed of porphyritic biotite granite. Both the Xiangcaoping and Douzhashan granites have high A/CNK ratios (>1.10), high (87Sr/86Sr)i ratios (>0.720) and low εNd(t) values (−11.3 to −10.4), suggesting that they belong to strongly peraluminous S-type granites. The Douzhashan granite has low CaO/Na2O ratios, high Rb/Sr and Rb/Ba ratios, indicating a partial melting origin of clay-rich pelitic rocks. In contrast, the Xiangcaoping granite formed from clay-poor psammite-derived melt. The Yangqiaoling granite shows different geochemical characteristics with the Douzhashan and Xiangcaoping granites, indicating a different magma source. The Yangqiaoling granite has higher εNd(t) of −9.4 to −8.3 and variable A/CNK values from 0.98 to 1.19, suggesting a mixture source of meta-sedimentary rocks and meta-igneous rocks. Crystallization fractionation is not the main mechanism for U enrichment in the Douzhashan granite. We suggest that U-rich pelitic rock sources may be the key factor to generate peraluminous U-bearing granites in South China. Searching for those granites which are reduced, strongly peraluminous and were derived from U-rich pelitic rocks, is the most effective way for exploring granite-hosted U deposits. [Display omitted] •The Triassic granites in the Miao'ershan batholith host U mineralization.•The U-bearing Douzhashan granite belongs to strongly peraluminous S-type.•Douzhashan granite was derived from partial melting of clay-rich pelitic rocks.•The U-barren granites have mixture source of meta-sedimentary and meta-igneous rocks.•U-rich pelitic-rock sources were the key factor for U-mineralization.
Author Zhao, Kui-Dong
Jiang, Shao-Yong
Chen, Pei-Rong
Pu, Wei
Sun, Tao
Ling, Hong-Fei
Chen, Wei-Feng
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  surname: Zhao
  fullname: Zhao, Kui-Dong
  email: zhaokd@cug.edu.cn
  organization: State Key Laboratory for Geological Processes and Mineral Resources, Faculty of Earth Resource, Collaborative Innovation Center for Exploration of Strategic Mineral Resources, China University of Geosciences, Wuhan 430074, PR China
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  givenname: Shao-Yong
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  surname: Jiang
  fullname: Jiang, Shao-Yong
  email: shyjiang@cug.edu.cn
  organization: State Key Laboratory for Geological Processes and Mineral Resources, Faculty of Earth Resource, Collaborative Innovation Center for Exploration of Strategic Mineral Resources, China University of Geosciences, Wuhan 430074, PR China
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  givenname: Hong-Fei
  surname: Ling
  fullname: Ling, Hong-Fei
  organization: State Key Laboratory for Mineral Deposits Research, School of Earth Sciences and Engineering, Nanjing University, Jiangsu 210093, PR China
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  givenname: Tao
  surname: Sun
  fullname: Sun, Tao
  organization: State Key Laboratory for Mineral Deposits Research, School of Earth Sciences and Engineering, Nanjing University, Jiangsu 210093, PR China
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  givenname: Wei-Feng
  surname: Chen
  fullname: Chen, Wei-Feng
  organization: State Key Laboratory for Mineral Deposits Research, School of Earth Sciences and Engineering, Nanjing University, Jiangsu 210093, PR China
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  givenname: Pei-Rong
  surname: Chen
  fullname: Chen, Pei-Rong
  organization: State Key Laboratory for Mineral Deposits Research, School of Earth Sciences and Engineering, Nanjing University, Jiangsu 210093, PR China
– sequence: 7
  givenname: Wei
  surname: Pu
  fullname: Pu, Wei
  organization: State Key Laboratory for Mineral Deposits Research, School of Earth Sciences and Engineering, Nanjing University, Jiangsu 210093, PR China
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Keywords Douzhashan granite
Geochemistry
U-bearing granite
Miao'ershan batholith
South China
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Snippet The Miao'ershan uranium ore district is one of the most important granite-hosted uranium producers in South China. There are several Triassic granite plutons...
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SubjectTerms Douzhashan granite
Geochemistry
Miao'ershan batholith
South China
U-bearing granite
Title Late Triassic U-bearing and barren granites in the Miao'ershan batholith, South China: Petrogenetic discrimination and exploration significance
URI https://dx.doi.org/10.1016/j.oregeorev.2016.02.016
Volume 77
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