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Tian, Yongfei, Jian, Wei, Ke, Changhui, Wang, Xiaoxia, Wang, Peng, Ye, Huishou, Mao, Jingwen (2023) The role of magma chamber depth on porphyry mineralization: Insights from the late Jurassic Gutian porphyry Cu-Mo deposit in coastal SE China. Ore Geology Reviews, 158. 105521 doi:10.1016/j.oregeorev.2023.105521

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Reference TypeJournal (article/letter/editorial)
TitleThe role of magma chamber depth on porphyry mineralization: Insights from the late Jurassic Gutian porphyry Cu-Mo deposit in coastal SE China
JournalOre Geology Reviews
AuthorsTian, YongfeiAuthor
Jian, WeiAuthor
Ke, ChanghuiAuthor
Wang, XiaoxiaAuthor
Wang, PengAuthor
Ye, HuishouAuthor
Mao, JingwenAuthor
Year2023 (July)Volume158
Page(s)105521
PublisherElsevier BV
DOIdoi:10.1016/j.oregeorev.2023.105521Search in ResearchGate
Mindat Ref. ID15898817Long-form Identifiermindat:1:5:15898817:9
GUID70e94ff0-9117-420d-8204-e2999c820382
Full ReferenceTian, Yongfei, Jian, Wei, Ke, Changhui, Wang, Xiaoxia, Wang, Peng, Ye, Huishou, Mao, Jingwen (2023) The role of magma chamber depth on porphyry mineralization: Insights from the late Jurassic Gutian porphyry Cu-Mo deposit in coastal SE China. Ore Geology Reviews, 158. 105521 doi:10.1016/j.oregeorev.2023.105521
Plain TextTian, Yongfei, Jian, Wei, Ke, Changhui, Wang, Xiaoxia, Wang, Peng, Ye, Huishou, Mao, Jingwen (2023) The role of magma chamber depth on porphyry mineralization: Insights from the late Jurassic Gutian porphyry Cu-Mo deposit in coastal SE China. Ore Geology Reviews, 158. 105521 doi:10.1016/j.oregeorev.2023.105521
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.

Audétat (2012) Soc. Econ. Geol. Magmatic controls on porphyry copper genesis 16, 553
Bucher (2010) Geofluids Fluids in the upper continental crust 10, 241
Cao (2021) Soc. Econ. Geol. Contrasting porphyry cu fertilities in the Yidun Arc, eastern tibet: insights from zircon and apatite compositions and implications for exploration 24, 231
Dilles (2000) Soc. Econ. Geol. Overview of the yerington porphyry copper district: magmatic to nonmagmatic sources of hydrothermal fluids, their flow paths, alteration affects on rocks, and Cu-Mo-Fe-Au Ores 32, 55
Konecke (2017) Geology Cryptic metasomatism during late-stage lunar magmatism implicated by sulfur in apatite 45, 739
Liang (2012) Acta Geol. Sin. Re–Os dating of molybdentie from the Luoboling porphyry Cu–Mo deposit in the Zijinshan ore field of Fujian Province and its geological significance 86, 1113
Lu (2016) Soc. Econ. Geol. Zircon compositions as a pathfinder for porphyry Cu ± Mo ± Au deposits, tectonics and metallogeny of the tethyan orogenic belt , 319
Ludwig (2003) 4, 1
Nachit (1985) Comtes Rendus Hebdomadaires de l’Académie des Sciences Composition chimique des biotites et typologie magmatique des granitoïdes 301, 813
Seedorff (2005) Soc. Econ. Geol. One Hundredth Anniv. Porphyry deposits: characteristics and origin of hypogene features , 251
Song (2002) Geological Review Mounting and analytical procedure of SHRIMPzircon dating 48, 26
Stock (2018) J. Petrol. Tracking volatile behaviour in sub-volcanic plumbing systems using apatite and glass: insights into pre-eruptive processes at Campi Flegrei, Italy 27, 1

Map of Localities

Locality Pages

LocalityCitation Details
Gutian porphyry Cu-Mo deposit, Taining County, Sanming, Fujian, China

Mineral Occurrences

LocalityMineral(s)
Gutian porphyry Cu-Mo deposit, Taining County, Sanming, Fujian, China Albite, Amphibole Supergroup, Andesine, Anorthite, Apatite, Biotite, Breccia, Calcium Amphibole Subgroup, Diorite, Fluorapatite, Gabbro, Granite, Granodiorite, Hornblende, K Feldspar, Magnetite, Monzodiorite, Monzogabbro, Monzogranite, Oligoclase, Plagioclase, Porphyry, Pyrite, Pyroxene Group, Quartz, Rutile, Titanite, Tschermakite, Zircon


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