THE XIONGCUN COPPER-GOLD DEPOSIT IN TIBET: CHARACTERISTICS, GENESIS AND GEODYNAMIC APPLICATION

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dc.contributor.author Xu W.
dc.contributor.author Cui Y.
dc.contributor.author Chen W.
dc.contributor.author Yang D.
dc.contributor.author Lian Y.
dc.contributor.author Qu X.
dc.contributor.author Yang Z.
dc.contributor.author Hou Z.
dc.contributor.author Pan F.
dc.date.accessioned 2024-09-03T09:56:12Z
dc.date.available 2024-09-03T09:56:12Z
dc.date.issued 2006
dc.identifier https://www.elibrary.ru/item.asp?id=41837309
dc.identifier.citation Acta Geologica Sinica (English Edition), 2006, 80, 9, 1392-1406
dc.identifier.issn 1000-9515
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/44810
dc.description.abstract According to the alteration and mineraliazation assemblage, mineralizations in Xiongcun deposit can be obviously distinguished into two styles, i. e. early veinlet-disseminated Cu(Au) mineralization with associated albitization, local K-silicate alteration, andalusite alteration, extensive phyllic alteration and peripheral widespread propylitization, and late vein-style Au (Ag) -polymetallic mineralization with associated strong silicification, chloritization and kaolinization. The latter overprints the former. The H, O and S isotopic compositions and the high salinities of fluid inclusions indicate the magmatic contributions and the increasing contents of meteoric water in the mineralizing system from early to late. The early veinlet-disseminated Cu (Au) mineralization is similar to porphyry-type mineralizaiton and maybe belongs to an immature porphyry system. The late vein-style Au (Ag)-polymetallic mineralization, characterized by high salinity and high base metal contents, belongs to the transitional system between end-member high- and low-sulfidation-type epithermal systems. Xiongcun deposit is a telescoping system of above two. Sericite 40Ar/39Ar dating reveals the ore-forming age of Xiongcun deposit is 38.11±0.9Ma. K-feldspar K-Ar age of the K-feldspar-muscovite-tourmaline-pyrite pegmatoid dyke in Xiongcun is 47.62±0.7 Ma. These ages indicate that the mineralizing system in Xiongcun results from the intervallic relaxation (ca. 52~40 Ma) of the Himalayan-Tibetan orogen and the final telescoping from the proceeding rapid uplifting (40~38 Ma) of the orogen.
dc.subject 40AR/39AR DATING
dc.subject HIMALAYAN-TIBETAN OROGEN
dc.subject TELESCOPING DEPOSIT
dc.subject XIONGCUN
dc.title THE XIONGCUN COPPER-GOLD DEPOSIT IN TIBET: CHARACTERISTICS, GENESIS AND GEODYNAMIC APPLICATION
dc.type Статья


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