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Rajamani, V. (1990) Petrogenesis of Metabasites from the Schist Belts of the Dharwar Craton: Implications to Archaean Mafic Magmatism. Journal Geological Society of India, 36 (6). 565-587 doi:10.17491/jgsi/1990/360604

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Reference TypeJournal (article/letter/editorial)
TitlePetrogenesis of Metabasites from the Schist Belts of the Dharwar Craton: Implications to Archaean Mafic Magmatism
JournalJournal Geological Society of India
AuthorsRajamani, V.Author
Year1990 (December 1)Volume36
Page(s)565-587Issue6
PublisherGeological Society of IndiaPlaceBangaluru, India
URL
DOIdoi:10.17491/jgsi/1990/360604Search in ResearchGate
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Mindat Ref. ID18200288Long-form Identifiermindat:1:5:18200288:9
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Full ReferenceRajamani, V. (1990) Petrogenesis of Metabasites from the Schist Belts of the Dharwar Craton: Implications to Archaean Mafic Magmatism. Journal Geological Society of India, 36 (6). 565-587 doi:10.17491/jgsi/1990/360604
Plain TextRajamani, V. (1990) Petrogenesis of Metabasites from the Schist Belts of the Dharwar Craton: Implications to Archaean Mafic Magmatism. Journal Geological Society of India, 36 (6). 565-587 doi:10.17491/jgsi/1990/360604
In(1990, December) Journal of the Geological Society of India Vol. 36 (6). Geological Society of India
Abstract/NotesAbstract
The supracrustal belts of the Dharwar Supergroup in the Dharwar Craton include variably metamorphosed komatiitic and tholeiitic volcanics. Komatiites in general occur only in minor amounts. Available geochemical data of these rocks from the Holenarasipur ? Kudremukh, Bababudan and the Kolar schist belts were quantitatively modelled to infer that (1) Komatiitic magmas originated from deeper mantle sources at depths > 100 km., (2) tholeiitic magmas formed at depths < 50 km from sources different from those of komatiites and with much higher Fe/Mg ratios compared to normal mantle, (3) the two magma types are not genetically related either to one common parental magma or to one common source, (4) Dharwar magmatism could be related to rift related volcanism perhaps associated with one or more mantle plumes. High quality geochemical, including isotopic, data on a large number of samples is required to test this model of Dharwar magmatism.


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