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Chen, Gang, Chen, Maohong, Ke, Changhui, Tang, Yanwen (2023) Paleozoic VMS-type stratiform mineralization overprinted by Mesozoic vein-type mineralization in the Yushui copper deposit, eastern Guangdong, South China. Ore Geology Reviews, 158. 105498 doi:10.1016/j.oregeorev.2023.105498

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Reference TypeJournal (article/letter/editorial)
TitlePaleozoic VMS-type stratiform mineralization overprinted by Mesozoic vein-type mineralization in the Yushui copper deposit, eastern Guangdong, South China
JournalOre Geology Reviews
AuthorsChen, GangAuthor
Chen, MaohongAuthor
Ke, ChanghuiAuthor
Tang, YanwenAuthor
Year2023 (July)Volume158
Page(s)105498
PublisherElsevier BV
DOIdoi:10.1016/j.oregeorev.2023.105498Search in ResearchGate
Mindat Ref. ID15863092Long-form Identifiermindat:1:5:15863092:4
GUID16e13a4b-5589-467a-91e0-c6920a8b3390
Full ReferenceChen, Gang, Chen, Maohong, Ke, Changhui, Tang, Yanwen (2023) Paleozoic VMS-type stratiform mineralization overprinted by Mesozoic vein-type mineralization in the Yushui copper deposit, eastern Guangdong, South China. Ore Geology Reviews, 158. 105498 doi:10.1016/j.oregeorev.2023.105498
Plain TextChen, Gang, Chen, Maohong, Ke, Changhui, Tang, Yanwen (2023) Paleozoic VMS-type stratiform mineralization overprinted by Mesozoic vein-type mineralization in the Yushui copper deposit, eastern Guangdong, South China. Ore Geology Reviews, 158. 105498 doi:10.1016/j.oregeorev.2023.105498
In(2023) Ore Geology Reviews Vol. 158. Elsevier BV

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

Bureau of Geology and Mineral Resource of Guangdong, 1988. Regional Geologu of Guangdong Province. Beijing: Geological Publishing House, 795–825 (in Chinese).
Chang (2012) Acta Petrologica Sinica Polygenetic compound mineralization and tectonic evolution: Study in the MiddleLower Yangtze River Valley metallogenic belt 28, 3067
Chen (1994) Guangdong. Geology and Exploration Metallogenic features and genesis of Cu-polymetallic deposit of Yushui field 23, 20
Chen (2021) Acta Geologica Sinica Sedimentary-exhalative massive sulfide deposits in shallow marine environment: a case study from Yushui copper deposit, Guangdong Province 95, 1774
Chen (2021) Mineral Deposits Research progress on genesis of stratabound sulfide deposits in Tongling ore concentration area of Middle and Lower Yangtze River metallogenic belt 40, 128
Chen (2006) Acta Petrologica Sinica Late Cenozoic episodic uplifting in southeastern part of the Tibetan plateau evidence from Ar-Ar thermochronology 22, 867
Cheng (2014) Mineral Deposits Genesis of Yushui Copper polymetallic deposit in Meizhou, Guangdong Province 33, 373
Fan (2018) Geological Review SHRIMP Zircon U-Pb Dating, Lu-Hf Isotopic Composition of Rhyolitic Porphyry in Honggoushan Gold Deposit, Eastern Guangdong, and Their Geological Significance 64, 213
Gao (2018) Mineral Exploration Geological characteristics and metallogenic regularity of gold silver polymetallic deposit in Honggoushan, Guangdong 9, 374
Gu (2003) Geological Journal of China Universities New Discussion on the South China-type massive sulphide deposits formed on continental crust 9, 592
Guo, W.M., 2010. Metallogenic mechanism, petrogeochemistry and mineralogy of Dongguashan deposit in Tongling, Anhui Province (doctoral dissertation). Supervisor: Lu J J. Nanjing: Nanjing University (in Chinese).
Han (1983) Sci. China (Series B) The Makeng iron deposit: a marine volcano-sedimentary deposit , 438
Not Yet Imported: Encyclopedia of Geology - book-chapter : 10.1016/B978-0-08-102908-4.00075-8

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
He (1990) Guangdong Province. Guangdong Geology Metallogenic-geologic characteristics of Yushui Hydrothermal-sedimentary polymetallic deposit in Meixian county 5, 1
Hou (2011) Acta Geologica Sinica The Large-Scale Dongguashan deposit-Shizishan district in East China: Carboniferous Sedex-type Massive Sulfides Overprinted by Late Jurassic Skarn Cu Mineralization 85, 659
Huang (2015)
Jia, L., 2018. Petrogenesis of Late Mesozoic granitoids and evalution of metallogenic potential in Eastern Guangdong, coastal area of SE China. China University of Geosciences (Beijing) (in Chinese).
Jiang, B., 2016. Research on geological and geochemical characteristics of YuShui Cu polymetallic deposit in Guangdong. China University of Geosciences (Beijing) (in Chinese).
Jiang (2011) Acta Geologica Sinica Discovery and Significance of Carbonate Mud Mounds from Cu-polymetallic Deposits in the Middle and Lower Yangtze Metallogenic Belt: Examples from the Wushan and Dongguashan Deposits 85, 744
Jiang (2010) China. Acta Petrologica Sinica Reiterative fault systems and superimposed mineralization in the Jiurui metallogenic cluster district, Middle and Lower Yangtze River mineralization belt 26, 2751
Jiang (2014) Mineral Deposits Fluid inclusion characteristics and geological significance of Yushui copper deposit in Guangdong Province 33, 513
Ke (2021) Chinese Academy of Geological Sciences (in Chinese) Spatial-temporal evolution, isotope characteristics of Yanshanian magmatism and their significance in Southeastern Coast of China
Liu (2018)
Ludwig (2003) , 1
Mao (2009) Mineral Deposits Mineral deposit model for porphyry-skarn polymetallic copper deposits in Tongling ore dense district of Middle-Lower Yangtze Valley metallogenic belt 28, 109
Ni (2005) Acta Petrologica Sinica Fluid inclusion studies on footwall stringer system mineralization of Yongping massive copper deposit, Jiangxi province, China 21, 1339
Tian, Y., 2020. Jurassic porphyry deposits and crust-mantle interaction along the southeast coast of China: A case study of Gutian porphyry Cu-Mo deposit. Chinese Academy of Geological Sciences (in Chinese).
Wang (2015)
Wang (2016) Geological Bulletin of China Zircon U-Pb age, geochemistry and Hf isotopic compositions of quartzdiorite from the Xinliaodong Cu polymetallic deposit in eastern Guangdong Province 35, 1357
Wang (1999) Geotectonica et Metallogenia On the genesis of the Yushui polumetallic deposit in the Meixian county, Guangdong Province 04, 345
Xie (2016) Society of Economic Geologists Rare Earth Element Deposits in China, Rare Earth and Critical Elements in Ore Deposits
Xu (1993) Journal of Hefei University of Technology(Natural Science) Rare earth element geochemical studies on the Mesozoic volcanic-intrusive complexes in Eastern Guangdong district 16, 121
Xu (2000) Journal of Hefei University of Technology(Natural Science) Metallogenetic mechanism of Mesozoic metallic ore deposits in eastern Guangdong area 23, 99
Xu (1978) Fujian Geology Origin of the sedimentary-(or volcanosedimentary-) iron–copper deposits in some fault depression belts in Southeast China 4, 1
Yue (2022) Geological Journal of China Universities Petrogenesis of the Jurassic Representative Volcanic Rocks in Eastern Guangdong: Response to the Early Stage of the Paleo-Pacific Subduction 28, 199
Zhai (2009) Earth Science Frontiers Research on superimposed metallogenic systems and polygenetic mineral deposits 16, 282
Zhang (2006) Zhejiang Province. Geological Review Study on the Ar-Ar age spectrum of diagenetic I/S and the mechanism of 39Ar recoil loss Examples from the clay minerals of P-T boundary in Changxing 52, 556
Zhang (2013) Geology and Exploration Re-Os dating of molybdenite from the Tongcun porphyry molybdenum deposit in western Zhejiang Province and its geological implications 49, 50
Li (2019) Geochimica Tectonic evolution of the Yongmei depression constrained by zircon LA-ICP-MS U-Pb ages of granite porphyry and diabase from the Yushui Cu-Pb-Zn polymetallic deposit 48, 313

Map of Localities

Locality Pages

LocalityCitation Details
Yushui Mine, Mei Co., Meizhou, Guangdong, China

Mineral Occurrences

LocalityMineral(s)
Yushui Mine, Mei Co., Meizhou, Guangdong, Chinaⓘ Anhydrite, ⓘ BastnĂ€site, ⓘ Bornite, ⓘ Calcite, ⓘ Chalcopyrite, ⓘ Covellite, ⓘ Dolerite, ⓘ Dolomite, ⓘ Furutobeite, ⓘ Galena, ⓘ Granite, ⓘ Hematite, ⓘ Limestone, ⓘ Marble, ⓘ Muscovite, ⓘ Porphyry, ⓘ Pyrite, ⓘ Quartz, ⓘ Quartz porphyry, ⓘ Sandstone, ⓘ Sericite, ⓘ Siegenite, ⓘ Sphalerite, ⓘ Tetrahedrite Subgroup, ⓘ Xenotime, ⓘ Zircon


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