The lithosphere beneath the Sangilen Plateau, Siberia: evidence from peridotite, pyroxenite and gabbro xenoliths from alkaline basalts
暂无分享,去创建一个
[1] A. M. Larin,et al. Isotope provinces, mechanisms of generation and sources of the continental crust in the Central Asian mobile belt: geological and isotopic evidence , 2004 .
[2] B. Upton,et al. Geochemistry of mafic and ultramafic xenoliths from Fidra (Southern Uplands, Scotland): implications for lithospheric processes in Permo-Carboniferous times , 2001 .
[3] E. B. Sal’nikova,et al. Age of Palaeozoic granites and metamorphism in the Tuvino-Mongolian Massif of the Central Asian Mobile Belt: loss of a Precambrian microcontinent , 2001 .
[4] V. Malkovets,et al. The late Ordovician age of camptonites from the Agardag Complex of southeastern Tuva as an indicator of the plume-related magmatism during collision processes , 2001 .
[5] E. Sharkov,et al. Garnet Granulite Xenoliths from the Northern Baltic Shield—the Underplated Lower Crust of a Palaeoproterozoic Large Igneous Province? , 2001 .
[6] K. Litasov,et al. Magmatic modification and metasomatism of the subcontinental mantle beneath the Vitim volcanic field (East Siberia): evidence from trace element data on pyroxenite and peridotite xenoliths from Miocene picrobasalt. , 2000 .
[7] P. Nimis. Clinopyroxene geobarometry of magmatic rocks. Part 2. Structural geobarometers for basic to acid, tholeiitic and mildly alkaline magmatic systems , 1999 .
[8] B. Upton,et al. Lower crustal and possible shallow mantle samples from beneath the Hebrides: evidence from a xenolithic dyke at Gribun, western Mull , 1998, Journal of the Geological Society.
[9] S. Galer,et al. Lower crustal xenoliths from Mongolia and their bearing on the nature of the deep crust beneath central Asia , 1995 .
[10] D. Ionov,et al. Petrology and geochemistry of xenoliths from the Northern Baltic shield: evidence for partial melting and metasomatism in the lower crust beneath an Archaean terrane , 1995 .
[11] R. Rudnick,et al. Measured and calculated elastic wave speeds in partially equilibrated mafic granulite xenoliths: Implications for the properties of an underplated lower continental crust , 1995 .
[12] H. Downes. The nature of the lower continental crust of Europe: petrological and geochemical evidence from xenoliths , 1993 .
[13] R. Arculus,et al. Continental lower crust , 1992 .
[14] D. McKenzie,et al. Partial melt distributions from inversion of rare earth element concentrations , 1991 .
[15] S. O’Reilly,et al. Equilibration temperatures and elastic wave velocities for upper mantle rocks from eastern Australia: implications for the interpretation of seismological models , 1990 .
[16] A. Ilyin. Proterozoic supercontinent, its latest Precambrian rifting, breakup, dispersal into smaller continents, and subsidence of their margins: Evidence from Asia , 1990 .
[17] T. Köhler,et al. Geothermobarometry in Four-phase Lherzolites II. New Thermobarometers, and Practical Assessment of Existing Thermobarometers , 1990 .
[18] W. McDonough. Constraints on the composition of the continental lithospheric mantle , 1990 .
[19] H. Stosch,et al. Granulite facies lower crustal xenoliths from the Eifel, West Germany: petrological and geochemical aspects , 1990 .
[20] Y. Zorin,et al. Structure of the lithosphere of the Mongolian-Siberian mountainous province , 1990 .
[21] L. Zonenshain,et al. Geology of the USSR : a plate-tectonic synthesis , 1990 .
[22] Robert E. Jones,et al. Experimental equilibration of multicomponent pyroxenes in the spinel peridotite field: Implications for practical thermometers and a possible barometer , 1989 .
[23] V. Yarmolyuk,et al. THERMAL AND MAGMATIC EVOLUTION OF THE LITHOSPHERE OF MONGOLIA , 1989 .
[24] W. McDonough,et al. Chemical and isotopic systematics of oceanic basalts: implications for mantle composition and processes , 1989, Geological Society, London, Special Publications.
[25] Nobuo Morimoto,et al. Nomenclature of Pyroxenes , 1988, Mineralogical Magazine.
[26] L. Hollister,et al. Confirmation of the empirical correlation of Al in hornblende with pressure of solidification of calc-alkaline plutons , 1987 .
[27] C. Dupuy,et al. Textural, isotopic and REE variations in spinel peridotite xenoliths, Massif Central, France , 1987 .
[28] E. Zen,et al. Aluminum in hornblende; an empirical igneous geobarometer , 1986 .
[29] B. Wood,et al. Spinel-pyroxene-garnet relationships and their dependence on Cr/Al ratio , 1986 .
[30] Roger Powell,et al. Regression diagnostics and robust regression in geothermometer/geobarometer calibration: the garnet-clinopyroxene geothermometer revisited , 1985 .
[31] K. Nickel,et al. Empirical geothermobarometry for garnet peridotites and implications for the nature of the lithosphere, kimberlites and diamonds , 1985 .
[32] S. Harley. The Solubility of Alumina in Orthopyroxene Coexisting with Garnet in FeO-MgO—Al2O3—SiO2 and CaO—FeO—MgO—Al2O3—SiO2 , 1984 .
[33] T. Gasparik. Two-pyroxene thermobarometry with new experimental data in the system CaO-MgO-Al2O3-SiO2 , 1984 .
[34] R. C. Newton,et al. Thermodynamic calibration of geobarometers based on the assemblages garnet-plagioclase-orthopyroxene (clinopyroxene)-quartz , 1982 .
[35] J. Mercier. Single-pyroxene thermobarometry , 1980 .
[36] D. Green,et al. An experimental study of the effect of Ca upon garnet-clinopyroxene Fe-Mg exchange equilibria , 1979 .
[37] K. Aoki,et al. The major element composition of the upper mantle estimated from the composition of lherzolites , 1977 .
[38] B. Wood. The solubility of alumina in orthopyroxene coexisting with garnet , 1974 .
[39] A. Irving. Geochemical and High Pressure Experimental Studies of Garnet Pyroxenite and Pyroxene Granulite Xenoliths from the Delegate Basaltic Pipes, Australia , 1974 .
[40] B. Leake,et al. Report. Nomenclature of Amphiboles: Report of the Subcommittee on Amphiboles of the International Mineralogical Association Commission on New Minerals and Mineral Names , 1971, Mineralogical Magazine.