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Ashchepkov, Igor, Medvedev, Nikolay, Ivanov, Alexander, Vladykin, Nikolay, Ntaflos, Theodoros, Downes, Hilary, Saprykin, Anatoliy, Tolstov, Alxander, Vavilov, Mikhail, Shmarov, Gleb (2021) Deep mantle roots of the Zarnitsa kimberlite pipe, Siberian craton, Russia: Evidence for multistage polybaric interaction with mantle melts. Journal of Asian Earth Sciences, 213. 104756pp. doi:10.1016/j.jseaes.2021.104756

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Reference TypeJournal (article/letter/editorial)
TitleDeep mantle roots of the Zarnitsa kimberlite pipe, Siberian craton, Russia: Evidence for multistage polybaric interaction with mantle melts
JournalJournal of Asian Earth Sciences
AuthorsAshchepkov, IgorAuthor
Medvedev, NikolayAuthor
Ivanov, AlexanderAuthor
Vladykin, NikolayAuthor
Ntaflos, TheodorosAuthor
Downes, HilaryAuthor
Saprykin, AnatoliyAuthor
Tolstov, AlxanderAuthor
Vavilov, MikhailAuthor
Shmarov, GlebAuthor
Year2021 (June)Volume213
Page(s)104756
PublisherElsevier BV
DOIdoi:10.1016/j.jseaes.2021.104756Search in ResearchGate
Mindat Ref. ID13963892Long-form Identifiermindat:1:5:13963892:5
GUIDa777ade7-12fa-48f2-8cb2-f8639002169c
Full ReferenceAshchepkov, Igor, Medvedev, Nikolay, Ivanov, Alexander, Vladykin, Nikolay, Ntaflos, Theodoros, Downes, Hilary, Saprykin, Anatoliy, Tolstov, Alxander, Vavilov, Mikhail, Shmarov, Gleb (2021) Deep mantle roots of the Zarnitsa kimberlite pipe, Siberian craton, Russia: Evidence for multistage polybaric interaction with mantle melts. Journal of Asian Earth Sciences, 213. 104756pp. doi:10.1016/j.jseaes.2021.104756
Plain TextAshchepkov, Igor, Medvedev, Nikolay, Ivanov, Alexander, Vladykin, Nikolay, Ntaflos, Theodoros, Downes, Hilary, Saprykin, Anatoliy, Tolstov, Alxander, Vavilov, Mikhail, Shmarov, Gleb (2021) Deep mantle roots of the Zarnitsa kimberlite pipe, Siberian craton, Russia: Evidence for multistage polybaric interaction with mantle melts. Journal of Asian Earth Sciences, 213. 104756pp. doi:10.1016/j.jseaes.2021.104756
In(2021) Journal of Asian Earth Sciences Vol. 213. 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.

Alymova, N.V., Kostrovitsky, S.I., Yakovlev, D.A., Matsyuk, S.S., Suvorova, L.F., Solovieva, L.V., 2008. Ilmenite-bearing mantle parageneses from kimberlite pipes. In: 9th International Kimberlite Conference Long Abstract, 9IKC-A-00015, 2008.
Amshinsky (1983) Russ. Geol. Geophys. Characteristic features of picroilmenites from Zarnitsa kimberlite pipe 11, 116
Ashchepkov (2003) Minerals from the Zarnitsa pipe kimberlite: the key to enigma of the mantle composition and construction , 20
Ashchepkov (2004) Doklady of RAS ESS Mineralogy and Geochemistry of Mantle Inclusions and Mantle Column Structure of the Yubileinaya Kimberlite Pipe, Alakit Field, Yakutia 395, 517
Ashchepkov (2006) Russian Geology and Geophysics Empirical garnet thermobarometry for mantle peridotite 47, 1071
Aulbach (2020) Lithos Diamondiferous and barren eclogites and pyroxenites from the western Kaapvaal craton record subduction processes and mantle metasomatism, respectively 105588, 368
Bulanova, G.P., Griffin, W.L., Kaminsky, F.V., Davies, R.M., Spetsius, Z.V., Ryan, C.G., Andrew, A., Zakharchenko, O.D., 1999. Diamonds from Zarnitsa and Dalnaya kimberlites, Yakutia., their nature and lithospheric mantle source. In: Proc.7th Int.Kimberlite Conf. Red Roof Designs, Cape Town, 49-56.
Clarke (1990) Can. Mineral. An Ilmenite-Garnet-Clinopyroxene nodule from Matsoku: Evidence of Oxide-Rich liquid Immiscibility in Kimberlites? 28, 229
Dawson (1980) , 210
Khar’kiv, A.D., Zinchuk, N.N., Kr’ychkov, A.I., 1998. Primary deposits of the diamonds in the World. Moscow, Nedra. 545p., (in Russian).
Kopylova (2009) Lithos Crystallization of megacrysts from protokimberlitic fluids: Geochemical evidence from high-Cr megacrysts in the Jericho kimberlite 112, 2009
Lavrent'ev (1994) Zh. Anal. Khim. New version of KARAT program for quantitative X-ray spectral microanalysis 5, 462
Lindsley (1983) Amer. Mineral. Pyroxene thermometry 68, 477
McGregor (1974) Am. Miner. The system MgO- SiO2- Al2O3: solubility of Al2O3 in enstatite for spinel and garnet peridotite compositions 59, 110
Pokhilenko (2002) Exp. Geosci. Anomalous kimberlites of the Snap Lake Area, Canada, and Nakyn Field, Yakutia: evidence of abnormal character of mantle sources and lithosphere structure 10, 143
Pokhilenko (1999) Peculiarities of distribution of pyroxenite paragenesis garnets in Yakutian kimberlites and some aspects of the evolution of the Siberian craton lithospheric mantle , 690
Pokhilenko (1991) Carnegie Institute Washington. Yearbook Megacrystalline dunites: sources of Siberian diamonds 90, 11
Sablukova, L.I., Sablukov, S.M., Stegnitsky, Yu.B., Karpenko, M.A., 2012. Green garnets of the “wehrlite” mantle xenoliths from kimberlites: their composition and origin, Newlands dike South Africa; Nyurbinskaya pipe, Nakyn field, Yakutia.10th IKC, Extended Abstracts 10IKC-0142. 1-5.
Sarsadskikh (1955) Exploration and Protection of Mineral Resources New data of ultrabasic magmatism on the Siberian platform 5, 11
Not Yet Imported: - monograph : 10.1029/SP011

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
Spetsius, Z.V., Serenko V.P., 1990. Composition of the continental mantle and low crust beneath the Siberian platform. Moscow, Nauka. 271, (in Russian).
Taylor W.L., Kamperman M., Hamilton R. 1998. New thermometer and oxygen fugacity sensor calibration for ilmenite amd Cr-spinel- bearing peridotite assemblage. 7th IKC Extended abstracts., p. 891.
Not Yet Imported: Kimberlites, Diatremes, and Diamonds: Their Geology, Petrology, and Geochemistry - book-chapter : 10.1029/SP015p0016

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
Zaitsev (2010) , 105


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