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Nimis, Paolo, Zanetti, Alberto, Dencker, Isabel, Sobolev, Nikolay V. (2009) Major and trace element composition of chromian diopsides from the Zagadochnaya kimberlite (Yakutia, Russia): Metasomatic processes, thermobarometry and diamond potential. Lithos, 112 (3) 397-412 doi:10.1016/j.lithos.2009.03.038

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Reference TypeJournal (article/letter/editorial)
TitleMajor and trace element composition of chromian diopsides from the Zagadochnaya kimberlite (Yakutia, Russia): Metasomatic processes, thermobarometry and diamond potential
JournalLithos
AuthorsNimis, PaoloAuthor
Zanetti, AlbertoAuthor
Dencker, IsabelAuthor
Sobolev, Nikolay V.Author
Year2009 (October)Volume112
Page(s)397-412Issue3
PublisherElsevier BV
DOIdoi:10.1016/j.lithos.2009.03.038Search in ResearchGate
Mindat Ref. ID271947Long-form Identifiermindat:1:5:271947:8
GUID867327d4-a573-4ad0-b2b9-38502245220f
Full ReferenceNimis, Paolo, Zanetti, Alberto, Dencker, Isabel, Sobolev, Nikolay V. (2009) Major and trace element composition of chromian diopsides from the Zagadochnaya kimberlite (Yakutia, Russia): Metasomatic processes, thermobarometry and diamond potential. Lithos, 112 (3) 397-412 doi:10.1016/j.lithos.2009.03.038
Plain TextNimis, Paolo, Zanetti, Alberto, Dencker, Isabel, Sobolev, Nikolay V. (2009) Major and trace element composition of chromian diopsides from the Zagadochnaya kimberlite (Yakutia, Russia): Metasomatic processes, thermobarometry and diamond potential. Lithos, 112 (3) 397-412 doi:10.1016/j.lithos.2009.03.038
In(2009, October) Lithos Vol. 112 (3) Elsevier BV

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.

Bobrievich (1960) Geologiya i Geofizika Mineralogy of xenoliths of grossular-pyroxene–disthene rock (grospydite) from Yakutian kimberlites 1, 18
Bodinier (2003) Orogenic, ophiolitic, and abyssal peridotites vol. 2, 103
Boyd (1976) Carnegie Institute Washington Yearbook A noninflected geotherm for the Udachnaya Kimberlite Pipe, USSR 75, 523
Carswell (1979) The petrology and geochemistry of ultramafic nodules from Pipe 200, northern Lesotho , 127
Chatterjee (1991)
Eggler (1979) Megacryst assemblages in kimberlite from northern Colorado and southern Wyoming: petrology, geothermometry–barometry, and areal distribution , 213
Egorov (1992) Zapiski Vserossijskogo Mineralogicheskogo Obshchestva Chemical evolution of clinopyroxene from the Zagadochnaya kimberlite pipe and their specific genesis 121, 88
Erlank (1987) Evidence for mantle metasomatism in peridotite nodules from the Kimberley pipes, South Africa , 221
Fipke (1995) Geological Survey of Canada Bulletin Diamond exploration techniques emphasising indicator mineral geochemistry and Canadian examples 423, 86
Griffin (1996) The Canadian Mineralogist Trace-element zoning in mantle minerals: metasomatism and thermal events in the upper mantle 34, 1179
Gurney, J.J., Moore, R.O., 1990. The development of advanced technology to distinguish between productive diamondiferous and barren diatremes. Geological Survey of Canada, Open File Report 2124.
Gurney (1984) Minerals associated with diamonds from the Roberts Victor Mine. Kimberlites II: The mantle and crust–mantle relationships , 25
Haggerty (1999) Diamond formation and kimberlite-clan magmatism in cratonic settings vol. 6, 105
Hearn (1984) Garnet peridotites from Williams kimberlites, north-central Montana, U.S.A. , 57
Jones (1987) Strontium and neodymium isotopic and rare earth element evidence for the genesis of megacrysts in kimberlites of Southern Africa , 711
Kostrovitsky (2004) Russian Geology and Geophysics Chromium assemblage of minerals in micaceous kimberlites of Yakutian province 45, 565
Mitchell (1986)
Navon, O., 1999. Diamond formation in the Earth's mantle. In: Gurney, J.J., Gurney, J.L., Pascoe, M.D., Richardson, S.H. (Eds.), Proceedings of the 7th International Kimberlite Conference, The P.H. Nixon Volume 584–604. Red Roof Design cc Cape Town, South Africa, pp. 584–604.
Pokhilenko (1991) Carnegie Institute of Washington Yearbook Megacrystalline dunites and peridotites: hosts for Siberian diamonds 91, 11
Pokhilenko (1999) Peculiarities of distribution of pyroxenite paragenesis garnets in Yakutian kimberlites and some aspects of the evolution of the Siberian craton lithospheric mantle , 689
Rickard (1989) Mineral inclusions in diamonds from Koffiefontein Mine vol. 14, 1054
Roden (1999) The role of garnet pyroxenites in the Siberian lithosphere: evidence from the Mir kimberlite , 714
Salters (2002) G3 Near mantle solidus trace element partitioning at pressures up to 3.4 GPa 3, 1
Schulze (1987) Megacrysts from alkalic volcanic rocks , 433
Shimizu (1997) Russian Geology and Geophysics Geochemical characteristics of mantle xenoliths from Udachnaya kimberlite pipe 38, 205
Sobolev (1977)
Sobolev (1971) Zapiski Vsesoyuznogo Mineralogicheskogo Obshchestva Compositional features of the minerals associated with the diamonds from the 'Mir' pipe, Yakutia 100, 558
Sobolev (1975) Neues Jahrbuch fĂŒr Mineralogie Abhandlungen Chrome-rich clinopyroxenes from the kimberlites of Yakutia 123, 213
Sobolev (1976) Geologiya i Geofizika New data on the minerals associated with the diamonds in the “Mir” kimberlite pipe in Yakutia 17, 3
Sobolev (1997) Geologiya i Geofizika A unique metasomatized peridotite xenolith from the Mir kimberlite, Siberian Platform 38, 206
Solovjeva (1997) Geologiya i Geofizika Mantle metasomatism and melting in mantle-derived xenoliths from the Udachnaya kimberlite; their possible relationship with diamond and kimberlite formation 38, 172
Walter (1998) Journal of Petrology Melting of garnet peridotite and the origin of komatiite and depleted lithosphere 39, 29

Map of Localities

Locality Pages

LocalityCitation Details
Zagadochnaya Kimberlite pipe, Daldyn, Mirninsky District, Sakha, Russia

Mineral Occurrences

LocalityMineral(s)
Zagadochnaya Kimberlite pipe, Daldyn, Mirninsky District, Sakha, Russiaⓘ Calcite, ⓘ Chrome-Spinel (of Dana), ⓘ Chromite, ⓘ Coesite, ⓘ Diopside, ⓘ Eclogite, ⓘ Enstatite, ⓘ Grossular-Pyrope Series, ⓘ Gypsum, ⓘ Phlogopite, ⓘ Serpentine Subgroup


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