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Grevel, C., Maresch, W. V., Stanek, K.-P., Grafe, F., Hoernes, S. (2006) Petrology and geodynamic significance of deerite-bearing metaquartzites from the Escambray Massif, Cuba. Mineralogical Magazine, 70 (5) 545-564 doi:10.1180/0026461067050349

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Reference TypeJournal (article/letter/editorial)
TitlePetrology and geodynamic significance of deerite-bearing metaquartzites from the Escambray Massif, Cuba
JournalMineralogical Magazine
AuthorsGrevel, C.Author
Maresch, W. V.Author
Stanek, K.-P.Author
Grafe, F.Author
Hoernes, S.Author
Year2006 (October)Volume70
Page(s)545-564Issue5
PublisherMineralogical Society
DOIdoi:10.1180/0026461067050349Search in ResearchGate
Mindat Ref. ID243720Long-form Identifiermindat:1:5:243720:4
GUID8c2831a7-1054-4f55-a545-1fbb55c9f6a0
Full ReferenceGrevel, C., Maresch, W. V., Stanek, K.-P., Grafe, F., Hoernes, S. (2006) Petrology and geodynamic significance of deerite-bearing metaquartzites from the Escambray Massif, Cuba. Mineralogical Magazine, 70 (5) 545-564 doi:10.1180/0026461067050349
Plain TextGrevel, C., Maresch, W. V., Stanek, K.-P., Grafe, F., Hoernes, S. (2006) Petrology and geodynamic significance of deerite-bearing metaquartzites from the Escambray Massif, Cuba. Mineralogical Magazine, 70 (5) 545-564 doi:10.1180/0026461067050349
Abstract/NotesAbstractDeerite, a typical mineral of Fe-rich metacherts metamorphosed under blueschist conditions, is not rare, but known occurrences have up to now been restricted mainly to the Tethyan collisional zone and the Western Cordillera of North America. We describe a first occurrence in the high-pressure nappes of the Escambray Massif, Cuba, in the assemblage deerite + Mg-Al-poor riebeckite + magnetite + quartz ± garnet ± phengite ± aegirine. This assemblage typically forms during exhumation and accompanies late, stress-free annealing of the quartz matrix. Mg-Al-poor riebeckite overgrows older, large, oriented crystals of glaucophane, ferroglaucophane and Mg-Al-rich riebeckite (‘crossite’) during deerite formation. Early-formed hematite was largely replaced by magnetite. Deerite is very close to ideal composition, attaining >99% Si12O40(OH)5, allowing direct application of the experimentally determined P-T-fO2 stability field (Lattard and Le Breton, 1994). In combination with oxygen-isotope thermometry on magnetite-quartz, the crystallization conditions of the deerite-bearing assemblage can be constrained to ∼470°C, >15 kbar, and an oxygen fugacity restricted closely to the quartz-fayalite-magnetite buffer (fO2 ≈ 10−23 bar). Thus, the late-stage P-T path ofthe metacherts mirrors a steep P-T gradient of 10°C/km or less, requiring subduction ofthis part ofthe Antillean Island Arc to be still active during exhumation of the Escambray nappes.


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