Phlogopite in mantle xenoliths and kimberlite from the Grib pipe, Arkhangelsk province, Russia: Evidence for multi-stage mantle metasomatism and origin of phlogopite in kimberlite
暂无分享,去创建一个
A. Nosova | Y. Kostitsyn | E. Kovalchuk | A. Kargin | L. Sazonova | V. V. Tretyachenko | N. Lebedeva | Yana S. Tikhomirova
[1] B. Kjarsgaard,et al. Cr-rich megacrysts of clinopyroxene and garnet from Lac de Gras kimberlites, Slave Craton, Canada – implications for the origin of clinopyroxene and garnet in cratonic lherzolites , 2018, Mineralogy and Petrology.
[2] A. Giuliani,et al. Crystallisation sequence and magma evolution of the De Beers dyke (Kimberley, South Africa) , 2018, Mineralogy and Petrology.
[3] E. Demonterova,et al. Petrographic-geochemical types of Triassic alkaline ultramafic rocks in the Northern Anabar province, Yakutia, Russia , 2017, Petrology.
[4] A. Abersteiner,et al. Cr-rich clinopyroxene megacrysts from the Grib kimberlite, Arkhangelsk province, Russia: Relation to clinopyroxene–phlogopite xenoliths and evidence for mantle metasomatism by kimberlite melts , 2017 .
[5] V. Khvostikov,et al. Sheared peridotite xenolith from the V. Grib kimberlite pipe, Arkhangelsk Diamond Province, Russia: Texture, composition, and origin , 2017 .
[6] A. Nosova,et al. Kimberlite age in the Arkhangelsk Province, Russia: Isotopic geochronologic Rb–Sr and 40Ar/39Ar and mineralogical data on phlogopite , 2016, Petrology.
[7] O. Safonov,et al. Indicator reactions of K and Na activities in the upper mantle: Natural mineral assemblages, experimental data, and thermodynamic modeling , 2016, Geochemistry International.
[8] D. Kuzmin,et al. Error sources in single-clinopyroxene thermobarometry and a mantle geotherm for the Novinka kimberlite, Yakutia , 2016 .
[9] A. Nosova,et al. Composition of garnet and clinopyroxene in peridotite xenoliths from the Grib kimberlite pipe, Arkhangelsk diamond province, Russia: Evidence for mantle metasomatism associated with kimberlite melts , 2016 .
[10] R. Luth,et al. Orthopyroxene survival in deep carbonatite melts: implications for kimberlites , 2016, Contributions to Mineralogy and Petrology.
[11] B. Kjarsgaard,et al. The evolution of calcite-bearing kimberlites by melt-rock reaction: evidence from polymineralic inclusions within clinopyroxene and garnet megacrysts from Lac de Gras kimberlites, Canada , 2016, Contributions to Mineralogy and Petrology.
[12] A. Giuliani,et al. Constraints on kimberlite ascent mechanisms revealed by phlogopite compositions in kimberlites and mantle xenoliths , 2016 .
[13] N. Dobretsov. Periodicity and driving forces of volcanism , 2015 .
[14] N. Pokhilenko,et al. Metasomatic processes in the lithospheric mantle beneath the V. Grib kimberlite pipe (Arkhangelsk diamondiferous province, Russia) , 2015 .
[15] A. Nosova,et al. Olivine from the Pionerskaya and V. Grib kimberlite pipes, Arkhangelsk diamond province, Russia: Types, composition, and origin , 2015, Petrology.
[16] Fu-Yuan Wu,et al. U-Pb geochronology and Sr-Nd isotopic systematics of minerals from the ultrabasic-alkaline massifs of the Kola province , 2014, Petrology.
[17] A. Giuliani,et al. Petrogenesis of Mantle Polymict Breccias: Insights into Mantle Processes Coeval with Kimberlite Magmatism , 2014 .
[18] Yue-heng Yang,et al. Emplacement age and Sr–Nd isotopic compositions of the Afrikanda alkaline ultramafic complex, Kola Peninsula, Russia , 2013 .
[19] A. Nosova,et al. Mg-ilmenite megacrysts from the Arkhangelsk kimberlites, Russia: Genesis and interaction with kimberlite melt and postkimberlite fluid , 2013, Geochemistry International.
[20] L. F. Suvorova,et al. Kimberlites and megacrystic suite: Isotope-geochemical studies , 2013, Petrology.
[21] J. Russell,et al. Kimberlite Terminology and Classification , 2013 .
[22] O. Bogatikov,et al. Polygenetic sources of kimberlites, magma composition, and diamond potential exemplified by the East European and Siberian cratons , 2009 .
[23] N. Halden,et al. Major- and trace-element compositional variation of phlogopite from kimberlites and carbonatites as a petrogenetic indicator , 2009 .
[24] D. Pearson,et al. Crystallization of megacrysts from protokimberlitic fluids: Geochemical evidence from high-Cr megacrysts in the Jericho kimberlite , 2009 .
[25] O. Bogatikov,et al. Diamond resource potential of kimberlites from the Zimny Bereg field, Arkhangel’sk oblast , 2007 .
[26] O. Bogatikov,et al. Kimberlites and lamproites of the East European Platform: Petrology and geochemistry , 2007 .
[27] B. Griffin,et al. Magmatic Evolution and Ascent History of the Aries Micaceous Kimberlite, Central Kimberley Basin, Western Australia: Evidence from Zoned Phlogopite Phenocrysts, and UV Laser 40Ar/39Ar Analysis of Phlogopite–Biotite , 2006 .
[28] B. Kjarsgaard,et al. Genesis of Ultramafic Lamprophyres and Carbonatites at Aillik Bay, Labrador: a Consequence of Incipient Lithospheric Thinning beneath the North Atlantic Craton , 2006 .
[29] A. Nosova,et al. Compositional variations in kimberlites of the east European platform as a manifestation of sublithospheric geodynamic processes , 2006 .
[30] R. Creaser,et al. Multi-Stage Modification of the Northern Slave Mantle Lithosphere: Evidence from Zircon- and Diamond-Bearing Eclogite Xenoliths Entrained in Jericho Kimberlite, Canada , 2006 .
[31] B. Kjarsgaard,et al. Integrating Ultramafic Lamprophyres into the IUGS Classification of Igneous Rocks: Rationale and Implications , 2005 .
[32] E. Belousova,et al. Crystallization of Cr-poor and Cr-rich megacryst suites from the host kimberlite magma: implications for mantle structure and the generation of kimberlite magmas , 2005 .
[33] R. Garetsky,et al. EUROPE | East European Craton , 2005 .
[34] R. Creaser,et al. Macrocrystal phlogopite Rb–Sr dates for the Ekati property kimberlites, Slave Province, Canada: evidence for multiple intrusive episodes in the Paleocene and Eocene , 2004 .
[35] M. Baumgartner,et al. Compositional classification of “kimberlitic” and “non-kimberlitic” ilmenite , 2004 .
[36] V. Malkovets,et al. Megacrysts from the Grib kimberlite pipe (Arkhangelsk Province, Russia) , 2004 .
[37] L. Taylor,et al. Multi-stage metasomatism of diamondiferous eclogite xenoliths from the Udachnaya kimberlite pipe, Yakutia, Siberia , 2004 .
[38] S. S. Schmidberger,et al. Small-scale Sr isotope investigation of clinopyroxenes from peridotite xenoliths by laser ablation MC-ICP-MS—implications for mantle metasomatism , 2003 .
[39] M. Grégoire,et al. Garnet Lherzolites from the Kaapvaal Craton (South Africa): Trace Element Evidence for a Metasomatic History , 2003 .
[40] K. Ludwig. User's Manual for Isoplot 3.00 - A Geochronological Toolkit for Microsoft Excel , 2003 .
[41] L. Taylor,et al. Partial Melting in Mantle Eclogite Xenoliths: Connections with Diamond Paragenesis , 2002 .
[42] P. Ulmer,et al. Generation and differentiation of group II kimberlites: constraints from a high-pressure experimental study to 10 GPa , 2002 .
[43] M. Grégoire,et al. Trace element geochemistry of phlogopite-rich mafic mantle xenoliths: their classification and their relationship to phlogopite-bearing peridotites and kimberlites revisited , 2002 .
[44] W. Griffin,et al. Metasomatism in mantle xenoliths from the Letlhakane kimberlites: estimation of element fluxes , 2001 .
[45] P. Nimis,et al. Single clinopyroxene thermobarometry for garnet peridotites. Part I. Calibration and testing of a Cr-in-Cpx barometer and an enstatite-in-Cpx thermometer , 2000 .
[46] D. Canil,et al. Garnet dissolution and the emplacement of kimberlites , 1999 .
[47] W. Griffin,et al. Harzburgite to lherzolite and back again: metasomatic processes in ultramafic xenoliths from the Wesselton kimberlite, Kimberley, South Africa , 1999 .
[48] O. Bogatikov,et al. Sources of heterogenous magmatism of Arkhangelsk diamondiferous province , 1996 .
[49] R. Mitchell. Kimberlites, orangeites, and related rocks , 1995 .
[50] S. Foley. Vein-plus-wall-rock melting mechanisms in the lithosphere and the origin of potassic alkaline magmas , 1992 .
[51] R. Mitchell. Kimberlites: Mineralogy, Geochemistry, and Petrology , 1986 .
[52] J. Kramers,et al. Trace element and isotope studies on veined, metasomatic and “MARID” xenoliths from Bultfontein, South Africa. , 1983 .
[53] L. Taylor,et al. Instability of garnet from the mantle: Glass as evidence of metasomatic melting , 1982 .
[54] C. R. Clement. A comparative geological study of some major kimberlite pipes in the Northern Cape and Orange Free State , 1982 .
[55] JOSEPH V. Smith,et al. The MARID (mica-amphibole-rutile-ilmenite-diopside) suite of xenoliths in kimberlite , 1977 .
[56] P. Wyllie,et al. Peridotite, kimberlite, and carbonatite explained in the system CaO-MgO-SiO2-CO2 , 1975 .
[57] K. Aoki. Origin of phlogopite and potassic richterite bearing peridotite xenoliths from South Africa , 1975 .
[58] D. A. Carswell. Primary and secondary phlogopites and clinopyroxenes in garnet lherzolite xenoliths , 1975 .
[59] J. Dawson,et al. Olivine-garnet reaction in peridotites from Tanzania , 1972 .
[60] I. Kushiro,et al. Origin of some eclogite inclusions in kimberlite , 1968 .
[61] Derek York,et al. Least squares fitting of a straight line with correlated errors , 1968 .