PHASE RELATIONS IN PERIDOTITIC AND PYROXENITIC ROCKS IN THE MODEL SYSTEMS CMASH AND NCMASH

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dc.contributor.author Schmädicke E.
dc.date.accessioned 2021-02-01T11:18:02Z
dc.date.available 2021-02-01T11:18:02Z
dc.date.issued 2000
dc.identifier https://elibrary.ru/item.asp?id=31301015
dc.identifier.citation Journal of Petrology, 2000, 41, 1, 69-86
dc.identifier.issn 0022-3530
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/24338
dc.description.abstract Alpine-type peridotites and associated pyroxenites are found as lenses in the continental crust in many different orogens. The reconstruction of the pressure–temperature ( P – T ) evolution of these rocks is, however, difficult or even impossible. With geothermobarometry, usually one point on the overall P – T path can be obtained. To use the different mineral assemblages observed in ultramafic rocks as P – T indicators, quantitative P – T phase diagrams are required. This study presents new calculated phase diagrams for peridotitic and pyroxenitic rocks in the model systems CaO–MgO–Al 2 O 3 –SiO 2 –H 2 O (CMASH) and Na 2 O–CaO–MgO–Al 2 O 3 –SiO 2 –H 2 O (NCMASH), which include the respective solid solutions as continuous exchange vectors. These phase diagrams represent applicable petrogenetic grids for peridotite and pyroxenite. On the basis of these general petrogenetic grids, phase diagrams for particular peridotite and pyroxenite bulk compositions are constructed. In an example of pyroxenite from the Shackleton Range, Antarctica, the different observed mineral assemblages are reflected by the phase diagrams. For these rocks, a high-pressure metamorphic stage around 18 kbar and an anticlockwise P – T evolution, not recognized previously, can be inferred.
dc.title PHASE RELATIONS IN PERIDOTITIC AND PYROXENITIC ROCKS IN THE MODEL SYSTEMS CMASH AND NCMASH
dc.type Статья


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