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GRÉGOIRE, M., MOINE, B. N., O’REILLY, SUZANNE Y., COTTIN, J. Y., GIRET, A. (2000) Trace Element Residence and Partitioning in Mantle Xenoliths Metasomatized by Highly Alkaline, Silicate- and Carbonate-rich Melts (Kerguelen Islands, Indian Ocean) Journal of Petrology, 41 (4) 477-509 doi:10.1093/petrology/41.4.477

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Reference TypeJournal (article/letter/editorial)
TitleTrace Element Residence and Partitioning in Mantle Xenoliths Metasomatized by Highly Alkaline, Silicate- and Carbonate-rich Melts (Kerguelen Islands, Indian Ocean)
JournalJournal of Petrology
AuthorsGRÉGOIRE, M.Author
MOINE, B. N.Author
O’REILLY, SUZANNE Y.Author
COTTIN, J. Y.Author
GIRET, A.Author
Year2000 (April 1)Volume41
Page(s)477-509Issue4
PublisherOxford University Press (OUP)
DOIdoi:10.1093/petrology/41.4.477Search in ResearchGate
Mindat Ref. ID178592Long-form Identifiermindat:1:5:178592:4
GUID745eb520-c288-48d3-8acb-65e7f8189619
Full ReferenceGRÉGOIRE, M., MOINE, B. N., O’REILLY, SUZANNE Y., COTTIN, J. Y., GIRET, A. (2000) Trace Element Residence and Partitioning in Mantle Xenoliths Metasomatized by Highly Alkaline, Silicate- and Carbonate-rich Melts (Kerguelen Islands, Indian Ocean) Journal of Petrology, 41 (4) 477-509 doi:10.1093/petrology/41.4.477
Plain TextGRÉGOIRE, M., MOINE, B. N., O’REILLY, SUZANNE Y., COTTIN, J. Y., GIRET, A. (2000) Trace Element Residence and Partitioning in Mantle Xenoliths Metasomatized by Highly Alkaline, Silicate- and Carbonate-rich Melts (Kerguelen Islands, Indian Ocean) Journal of Petrology, 41 (4) 477-509 doi:10.1093/petrology/41.4.477
In(2000, April) Journal of Petrology Vol. 41 (4) Oxford University Press (OUP)

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

Brown, G. M., Pinsent, R. H. & Coisy, P. (1980). The petrology of spinel-peridotite xenoliths from the Massif Central, France. American Journal of Science280A, 471–496.
Fabriès, J., Bodinier, J. L., Dupuy, C., Lorand, J. P. & Benkerrou, C. (1989). Evidence for modal metasomatism in the orogenic spinel lherzolite body from Caussou (Northeastern Pyrenees, France). Journal of Petrology30, 176–199.
Giret, A. (1993). Les étapes magmatiques de l’édification des îles Kerguelen. Bulletin de la Société Géologique de France, Bulletin APBG, numéro spécial, 273–282.
Giret, A., Grégoire, M., Cottin, J. Y. & Michon, G. (1997). The Kerguelen islands: the third type of oceanic islands. In: Ricci, C. A. (ed.) The Antarctic Region: Geological Evolution and Processes. Siena: Terra Antarctica Publications, pp. 735–741.
Grégoire, M. (1994). Pétrologie des enclaves ultrabasiques et basiques des îles Kerguelen (T.A.A.F.). Les contraintes minéralogiques et thermobarométriques et leurs implications géodynamiques. Thèse de doctorat, Université Saint Etienne, 253 pp.
Jagoutz, E., Palme, H., Baddenhauser, H., Blum, K., Cendales, M., Dreibus, G., Spettel, B., Lorenz, V. & Wänke, H. (1979). The abundance of major, minor and trace elements in the Earth’s mantle as derived from primitive ultramafic nodules. Proceedings of the 10th Lunar and Planetary Science Conference. Geochimica et Cosmochimica Acta Supplement2031–2050.
Leyrit, H. (1992). Kerguelen: cartographie et magmatologie des presqu’îles Jeanne d’Arc et Ronarc’h. Place des laves différenciées. Thèse d’Université, Université Paris XI–Orsay, 236 pp.
Mattielli, N. (1996). Magmatisme et métasomatismes associés au panache des Kerguelen: contribution de la géochimie des enclaves basiques et ultrabasiques. Doctorat en Sciences Géologiques et Minéralogiques, Université Libre de Bruxelles, 213 pp.
Moine, B., Sheppard, S. M. F., Cottin, J. Y., Grégoire, M., O’Reilly, S. Y. & Giret, A. (2000). Trace element and isotopic (D/H) characteristics of amphibole- and/or phlogopite-bearing ultramafic–mafic xenoliths from Kerguelen islands (TAAF, South Indian Ocean). European Journal of Mineralogy (in press).
Mysen, B. O. & Kushiro, I. (1977). Compositional variations of coexisting phases with degree of melting of peridotite in the upper mantle. American Mineralogist62, 843–845.
Nixon, P. H. (1987). Mantle Xenoliths. Chichester: John Wiley.
Pouchou, J. L. & Pichoir, F. (1984). A new model for quantitative X-ray microanalysis. Part 1: application to the analysis of homogeneous samples. Recherche Aérospatiale5, 13–38.
Sen, G. (1987). Xenoliths associated with the Hawaiian Hot Spot. In: Nixon, P. H. (ed.) Mantle Xenoliths. Chichester: John Wiley, pp. 359–375.
Siena, F., Beccaluva, L., Coltorti, M., Marchesi, S. & Morra, V. (1991). Ridge to hot-spot evolution of the Atlantic lithosphere mantle: evidence from Lanzarote peridotite xenoliths (Canary Islands). Journal of Petrology, special issue, Orogenic Lherzolites and Mantle Processes, 255–270.
Not Yet Imported: Synthesis of Results from Scientific Drilling in the Indian Ocean - book-chapter : 10.1029/GM070p0057

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Woolley, A. R. & Kempe, D. R. C. (1989). Carbonatites: nomenclatures, average chemical compositions, and element distribution. In: Bell, K. (ed.) Carbonatites: Genesis and Evolution. London: Unwin Hyman, pp. 1–14.
Yagi, K., Ishikawa, H. & Kojima, M. (1975). Petrology of a lamprophyre sheet in Tanegashima Island. Kagoshima prefecture, Japan. Journal of Japanese Association of Mineralogy, Petrology and Economic Geology70, 213–224.


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