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Bogoch, R., Bourne, J., Shirav, M., Harnois, L. (1997) Petrochemistry of a Late Precambrian garnetiferous granite, pegmatite and aplite, southern Israel. Mineralogical Magazine, 61 (404) 111-122 doi:10.1180/minmag.1997.061.404.11

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Reference TypeJournal (article/letter/editorial)
TitlePetrochemistry of a Late Precambrian garnetiferous granite, pegmatite and aplite, southern Israel
JournalMineralogical MagazineISSN0026-461X
AuthorsBogoch, R.Author
Bourne, J.Author
Shirav, M.Author
Harnois, L.Author
Year1997 (February)Volume61
Issue404
PublisherMineralogical Society
Download URLhttps://rruff.info/doclib/MinMag/Volume_61/61-404-111.pdf+
DOIdoi:10.1180/minmag.1997.061.404.11Search in ResearchGate
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Mindat Ref. ID147Long-form Identifiermindat:1:5:147:4
GUID0
Full ReferenceBogoch, R., Bourne, J., Shirav, M., Harnois, L. (1997) Petrochemistry of a Late Precambrian garnetiferous granite, pegmatite and aplite, southern Israel. Mineralogical Magazine, 61 (404) 111-122 doi:10.1180/minmag.1997.061.404.11
Plain TextBogoch, R., Bourne, J., Shirav, M., Harnois, L. (1997) Petrochemistry of a Late Precambrian garnetiferous granite, pegmatite and aplite, southern Israel. Mineralogical Magazine, 61 (404) 111-122 doi:10.1180/minmag.1997.061.404.11
In(1997, February) Mineralogical Magazine Vol. 61 (404) Mineralogical Society
Abstract/NotesAbstractGarnet is a widespread minor accessory mineral in the Late Proterozoic Elat-Quarry granite of southern Israel and is more abundant in the associated pegmatite and aplite. All garnets are dominated by almandine and spessartine end-members. Granite-hosted garnets are zoned with relative enrichment of Mn in the core and Fe in the rim. The chemistry of the garnet in the pegmatite and aplite are comparable to the rim compositions of garnets in the granite, but with a slight Fe-depletion at the rims. Geochemical parameters for the granite indicate fractional crystallization largely of an S-type source magma to a peraluminous composition.In the highly evolved granite magma, Fe is relatively diminished, and only small amounts of biotite can crystallize. Manganese becomes a compatible element forming Mn-rich garnet (cores), and reducing the Mn content in the magma, subsequently leading to Fe-enriched rims. The greater abundance of garnet in the pegmatite and aplite (and its larger crystal-size in the former) relate to the enhanced presence of a hydrous fluid within the magma. The tendency for garnet crystals to concentrate in bands is much more developed in the pegmatite than in the granite, and is associated with the effects of hydrofracturing (fracture-filling), and the crystallization of coarse-grained alkaline feldspars.


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