PHYSICOCHEMICAL CONDITIONS OF IRON-TITANIUM OXIDE FORMATION IN ROCKS OF THE KONDER ALKALIC ULTRAMAFIC PLUTON

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dc.contributor.author Malich K.N.
dc.contributor.author Avdontsev S.N.
dc.date.accessioned 2020-04-08T08:53:51Z
dc.date.available 2020-04-08T08:53:51Z
dc.date.issued 1987
dc.identifier https://elibrary.ru/item.asp?id=30951006
dc.identifier.citation TRANSACTIONS (DOKLADY) OF THE USSR ACADEMY OF SCIENCES. EARTH SCIENCE SECTIONS, 1987, 296, 5, 225-227
dc.identifier.issn 0891-5571
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/16430
dc.description.abstract Olivinite was developed in the emplacement front of clinopyroxenite and gabbro, and its thickness is directly proportional to the combined thickness of these clinopyroxene-bearing rocks. Oxidation of dunite olivine and the resulting formation of olvinite could have occurred within a narrow fO2 range (10-2 to 10-5) upon cooling below temperatures of 550° to 530°C. The variation in fluid regime of dunite-oxidizing clinopyroxenite and gabbro upon such cooling, as reflected in the evolution of iron-titanium oxide compositions, is described by the curve derived from an equation given in the paper. Consequently, these clinopyroxene-bearing rocks would have oxidized dunite only if their temperature has been no lower than 800°C, and that of the dunite no higher than 550°C. The process that produced olivinite should be classified as one of high-temperature metasomatic alteration at the contact between two physico-chemically contrasting rock media. Overall, the data seem to support the restite model of emplacement of the Kondyor pluton, even if they are regarded as semiquantitative.
dc.title PHYSICOCHEMICAL CONDITIONS OF IRON-TITANIUM OXIDE FORMATION IN ROCKS OF THE KONDER ALKALIC ULTRAMAFIC PLUTON
dc.type Статья


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