CRUSTAL CONTROL ON THE REDOX STATE OF GRANITOID MAGMAS: TECTONIC IMPLICATIONS FROM THE GRANITOID AND METALLOGENIC PROVINCES IN THE CIRCUM-JAPAN SEA REGION

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dc.contributor.author Sato K.
dc.contributor.author Ishihara T.
dc.contributor.author Kovalenko S.V.
dc.contributor.author Romanovsky N.P.
dc.contributor.author Berdnikov N.V.
dc.contributor.author Nedachi M.
dc.date.accessioned 2022-11-12T08:29:15Z
dc.date.available 2022-11-12T08:29:15Z
dc.date.issued 2004
dc.identifier https://www.elibrary.ru/item.asp?id=22157447
dc.identifier.citation Special Paper of the Geological Society of America, 2004, 389, С. 3, 319-337
dc.identifier.issn 0072-1077
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/39646
dc.description.abstract Felsic magmatism has occurred over a large region of East Asia since Jurassic times and has provided important mineral resources such as tin, tungsten, base metals and gold. The circum-Japan Sea region preserves various geological records of active continental margins, including Jurassic to Early Tertiary magmatic arcs and subduction zones and pre-Jurassic continental basements, which were separated by the opening of the Japan Sea during the Miocene. The felsic magmatism in this region shows a wide variation in terms of redox state and related mineralisation, encompassing east–west contrasts around the Pacific Ocean. A review of granitoids and associated ore deposits in this region indicates that the character of the crust, sedimentary versus igneous, is an essential factor to control the redox state, and a tectonic setting may be an additional factor in some cases. The reduced-type granitoids, characterised by tin mineralisation, were generated in carbonbearing sedimentary crust which was composed mainly of accretionary complex material and not influenced by previous magmatism. Involvement of sedimentary materials is corroborated by oxygen, sulphur and strontium isotope data. The oxidised-type granitoids, characterised by gold or molybdenum mineralisation, were generated in igneous crust which was depleted in reducing agents as a result of previous magmatism. Granitoid magmatism in a given area tends to become more oxidised with time. Jurassic accretionary complexes in East Asia are thought to have been largely displaced from the original place of accretion and stacked up against the northeastern margin in the Khingan and Sikhote–Alin Mountains. This region, dominated by sedimentary crust, was subsequently subjected to Cretaceous felsic magmatism and converted to a large province of reduced-type granitoids and tin–tungsten mineralisation. Diverse geodynamic processes, including the change of the arc-trench system, the creation and collapse of the back-arc basin and the collision of continents, may have prepared many favourable sites for the generation of reduced-type granitoids in northeast Asia. These processes may have resulted in a remarkable contrast with the Pacific margin of North America, where repeated arc magmatism during the Mesozoic formed granitoid batholiths of the oxidised-type. The granitoid types may also be controlled by the tectonic setting and mode of magma emplacement. In the northern Kitakami area of Northeast Japan, Early Cretaceous episodic magmatism occurred in a Jurassic accretionary complex, and formed the oxidised-type granitoids accompanied by submarine bimodal volcanism associated with kuroko mineralisation. Granitoids of fissure-filling type emplaced under extensional environments may be oxidised, irrespective of basement geology, because of insignificant crustal input.
dc.subject Accretionary complex
dc.subject Cretaceous
dc.subject granitoid type
dc.subject Jurassic
dc.subject Khingan
dc.subject Korea
dc.subject metallogeny
dc.subject sedimentary crust
dc.subject Sikhote-Alin
dc.subject tin
dc.title CRUSTAL CONTROL ON THE REDOX STATE OF GRANITOID MAGMAS: TECTONIC IMPLICATIONS FROM THE GRANITOID AND METALLOGENIC PROVINCES IN THE CIRCUM-JAPAN SEA REGION
dc.type Статья
dc.subject.age Mesozoic::Cretaceous
dc.subject.age Mesozoic::Jurassic
dc.subject.age Мезозой::Меловая ru
dc.subject.age Мезозой::Юрская ru


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