SYNTHESIS OF STAUROLITE IN MELTING EXPERIMENTS OF A NATURAL METAPELITE: CONSEQUENCES FOR THE PHASE RELATIONS IN LOW-TEMPERATURE PELITIC MIGMATITES

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dc.contributor.author Garcia-casco A.
dc.contributor.author Haissen F.
dc.contributor.author Castro A.
dc.contributor.author El-hmidi H.
dc.contributor.author Torres-roldan R.L.
dc.contributor.author Millan G.
dc.date.accessioned 2021-11-19T02:29:08Z
dc.date.available 2021-11-19T02:29:08Z
dc.date.issued 2003
dc.identifier https://www.elibrary.ru/item.asp?id=10500586
dc.identifier.citation Journal of Petrology, 2003, 44, 10, 1727
dc.identifier.issn 0022-3530
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/32219
dc.description.abstract We document experiments on a natural metapelite in the range 650–775°C, 6–14 kbar, 10 wt?% of added water, and 700–850°C, 4–10 kbar, no added water. Staurolite systematically formed in the fluid-present melting experiments above 675°C, but formed only sporadically in the fluid-absent melting experiments. The analysis of textures, phase assemblages, and variation of phase composition and Fe–Mg partitioning with P and T suggests that supersolidus staurolite formed at (near-) equilibrium during fluid-present melting reactions. The experimental results are used to work out the phase relations in the system K2O–Na2O–FeO–MgO–Al2O3–SiO2–H2O appropriate for initial melting of metapelites at the upper amphibolite facies. The P–T grid developed predicts the existence of a stable P–T field for supersolidus staurolite that should be encountered by aluminous Fe-rich metapelites during fluid-present melting at relatively low temperature and intermediate pressures (675–700°C, 6–10?kbar for XH2O = 1, in the KNFMASH system), but not during fluid-absent melting. The implications of these findings for the scarcity of staurolite in migmatites are discussed.
dc.subject metapelites
dc.subject migmatites
dc.subject partial melting
dc.subject P-T grid
dc.subject staurolite
dc.title SYNTHESIS OF STAUROLITE IN MELTING EXPERIMENTS OF A NATURAL METAPELITE: CONSEQUENCES FOR THE PHASE RELATIONS IN LOW-TEMPERATURE PELITIC MIGMATITES
dc.type Статья


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