NA-содержащий мэйджоритовый гранат
Диссертация
В дискуссии о высокобарических фазах, которые могут служить потенциальными концентраторами натрия в нижних частях верхней мантии и переходной зоне, ключевую роль следует отводить именно Na-содержащему мэйджоритовому гранату. Согласно существующим представлениям (например, пиролитовой модели) (Ringwood, 1991), доля граната в диапазоне глубин от 410 до 660 км может превышать 50 об. %. Расчеты… Читать ещё >
Список литературы
- Бобров A.B., Дымшиц A.M., Литвин Ю. А. Экспериментальное изучение системы пироп Mg3Al2Si30i2 жадеит NaAlSi206 при 7.0 и 8.5 ГПа и 1300— 1900 °C // Докл. РАН. 2009а. Т. 426. № 4. С. 1−4
- Бобров A.B., Дымшиц A.M., Литвин Ю. А. Условия магматической кристаллизации Na-содержащих мэйджоритовых гранатов в мантии Земли по экспериментальным и природным данным // Геохимия. 2009b. № 10. С. 1011−1026.
- Бобров A.B., Литвин Ю. А., Дымшиц A.M. Экспериментальные исследования карбонатно-силикатных систем мантии в связи с проблемой алмазообразования. М.: ГЕОС, 2011. 208 с.
- Бобров A.B., Литвин Ю. А. Перидотит-эклогит-карбонатитовые системы при 7.0−8.5 ГПа: концентрационный барьер нуклеации алмаза и сингенезис его силикатных и карбонатных включений // Геология и геофизика. 2009. Т. 50. С. 1571−1587.
- Бобров А. В., Сироткина Е. А., Гаранин В. К., Бовкун А. В., Корост Д. В., Шкурский Б. Б. Мэйджоритовые гранаты со структурами распада из кимберлитовой трубки Мир (Якутия) // Докл. РАН. 2012. Т. 444. № 1. С. 5660
- Боткунов А.И., Гаранин В.К, Кудрявцева Г. П. Минеральные включения в гранатах из кимберлитов Якутии. // Зап. ВМО. 1983. Вып. 3. С. 311−324.
- Виноград B.JI., Дымшиц A.M., Винклер Б., Бобров A.B. Компьютерное моделирование Na-содержащего мэйджоритового граната // Докл. РАН. 2011. Т. 441. С. 77−80
- Дымшиц A.M., Бобров A.B. Литасов К. Д., Шацкий А. Ф., Отани Е., Литвин Ю. А. // Докл. РАН. 2010. Т. 434. № 3. С. 378−381.
- Литвин Ю.А. Экспериментальные исследования физико-химических условий образования алмаза в мантийном веществе // Геология и геофизика. 2009. Т. 50. № 12. С. 1530−1546.
- Малиновский И.Ю., Дорошев A.M., Калинин A.A. Исследование устойчивости гранатов ряда пироп-гроссуляр при Р = 30 кбар // Доклады АН СССР. 1982. 268. № 1. С. 189−194
- Маракушев A.A., Митрейкина О. Б., Зиновьева Н. Г. и др. Алмазоносные метеориты и их генезис // Петрология. 1995. № 5. С. 3−21.
- Маракушев A.A., Грановский Л. Б., Зиновьева Н. Г. и др. Космическая петрология. М.: Наука. 2003. 389 с.
- Пущаровский Д.Ю. Минеальные перестройки в глубинных геосферах // Вест. МГУ Сер. 4, Геология. 2004. № 2. С. 3−10
- Пущаровский Д.Ю., Оганов А. Р. Структурные перестрйки минералов в глубинных оболочках Земли // Кристаллография. 2006. Т. 51. № 5. С. 819−829
- Соболев Н.В., Ефимова Э. С., Реймерс Л. Ф., Захарченко ОД., Махин А. И., Усова Л. В. Минеральные включения в алмазах Архангельскойкимберлитовой провинции // Геология и геофизика. 1997. Т. 38. № 2. С. 358 370.
- Сурков Н.В., Гартвич Ю. А. Экспериментальное изучение фазовых равновесий в сечении пироп-гроссуляр при давлении 3 ГПа // Петрология. 2000. Т. 8. № 1. С. 95−107.
- Фельдман В.И., Сазонова JJ.B., Козлов Е. А. Высокобарические полиморфные модификации некоторых минералов в импактитах: геологические наблюдения и экспериментальные данные // Петрология. 2007. Т. 15. № 3. С. 241−256.
- Шацкий B.C., Зедгенизов Д. А., Рагозин A.JI. Природа образования алмазов из россыпей северо-восточной части Якутской алмазоносной провинции / В сб. «Фундаментальные проблемы геологии месторождений полезных и металлогении». Москва. 2010. С. 108−109.
- Akaogi M., Akimoto A. Pyroxene-garnet solid-solution equilibria in the systems Mg4Si4012-Mg3Al2Si30i2 and Fe4Si40i2-Fe3Al2Si3012 at high pressures and temperatures // Phys. Earth. Planet. Inter. 1977. V. 15. P. 90−106.
- Akaogi M., Akimoto A. High pressure phase equilibria in a garnet lherzolite, with special reference" to Mg -Fe partitioning among constituent minerals // Phys. Earth. Planet. Inter. 1979. V. 19. P. 31−51.
- Akaogi M., Yano M., Tejima X, Iijima M., Kojitani H. High-pressure transitions of diopside and wollastonite: phase equilibria and thermochemistry of
- CaMgSi206, CaSi03 and CaSi205-CaTiSi05 system // Phys. Earth Planet. Inter. 2004. V. 143−144. P. 145−156.
- Anderson D.L. Chemical stratification of the mantle. // J. Geophys. Res. 1979. V. 84. P. 6297−6298.
- Aoki I., Takahashi E. Density of MORB eclogite in the upper mantle // Phys. Earth Planet. Interiors. 2004. V. 143. P. 129−143.
- Badyukov D.D. High-pressure phases in impactites of the Zhamanshin crater (USSR) / XVI Lunar and Planetary Science Conference, Houston. Abstracts. 1985. P. 21−22.
- Bell P.M., Davis B.T.C. Temperature-composition section for jadeite-diopside // Carnegie Inst. Washington Yearb. 1965. V. 64. P. 120.
- Bindi L., Dymshits A. M., Bobrov A. V, Litasov K.D., Shatsky A.F., Ohtani E., Litvin Yu.A. Crystal chemistry of sodium in the Earth’s interior: The structure of Na2MgSi50i2 synthesized at 17.5 GPa and 1700 °C // Amer.Mineral. 2011. V. 96. P. 44750
- Bishop F.C., Smith J. V, Dawson J.B. Na, K, P and Ti in garnet, pyroxene and olivine from peridotite and eclogite xenoliths from African kimberlites // Lithos. 1978. V. 11. P. 155−173.
- Bobrov A. V., Litvin Yu.A., Bindi L., Dymshits A.M. Phase relations and formation of sodium-rich majoritic garnet in the system Mg3Al2Si30i2-Na2MgSi5Oi2 at 7.0 and 8.5 GPa // Contrib. Mineral. Petrol. 2008a. V. 156. P. 243 257.
- Bobrov A.V., Kojitani H., Akaogi M., Litvin Yu.A. Phase relations on the diopside-hedenbergite-jadeite join up to 24 GPa and stability of Na-bearing majoritic garnet// Geochim. Cosmochim. Acta. 2008b. V. 72. P. 2392−2408.
- Chen M, Sharp T.G., El Goresy A., Wopenka B., Xie X.D. The majorite-pyrope plus magnesiowustite assemblage: Constraints on the history of shock veins in chondrites. // Science. 1996. V. 271 (5255). P. 1570−1573
- Clark S., Segal M., Pickard C., Hasnip P., Probert M., Refson K., Payne M. First principles methods using CASTEP // Krystallographie. 2005. V. 220. N. 5−6. P. 567−570.
- Coleman L.C. Ringwoodite and majorite in the Catherwood meteorite // Can. Mineral. 1977. V. 15. P. 97−101.
- Davies R.M., Griffin W.L., O’Reilly S.Y., McCandless T.E. Inclusions in diamonds from the K14 and K10 kimberlites, Buffalo Hills, Alberta, Canada: diamond growth in a plume? // Lithos. 2004. V.77. P. 99−111.
- Draper D., Xirouchakis D., Agee C.A. Trace element partitioning between garnet and chondritic melt from 5 to 9 GPa: implications for the onset of the majorite transition in the martian mantle // Phys. Earth Plan. Inter. 2003. V. 139. P. 149−169.
- Dymshits A., Vinograd V, Paulsen N., Winkler B., Perchuk L., Bobrov A. Simulation study of Na-majorite / Geophysical Research Abstracts, 2009. V. 11, EGU2009−0
- Gale J.D. Gulp: A computer program for the symmetry-adapted simulation of solids. // J. Chem. Soc., Faraday Trans. 1997. V. 1. P. 629−637
- Gale J.D. Rohl A.L. Gulp: A computer program for the symmetry-adapted simulation of solids. // Molec. Simulations. 2003. V. 29. P. 291−341
- Gasparik T. Transformation of enstatite-diopside-jadeite pyroxenes to garnet // Contrib. Mineral. Petrol. 1989. V. 102. P. 389105.
- Gasparik T. Phase relations in the transition zone // J. Geophys. Res. 1990. V. 95. P. 15 751−15 769.
- Gasparik T. Enstatite-jadeite join and its role in the Earth’s mantle // Contrib. Mineral. Petrol. 1992. V. 111. P. 283−298.
- Gasparik T. Diopside-jadeite join at 16−22 GPa // Phys. Chem. Minerals. 1996a. V. 23. P. 476−486.
- Gasparik T. Melting experiments on the enstatite-diopside join at 70−224 kbar, including the melting of diopside // Contrib. Mineral. Petrol. 1996b. V. 124. P. 139−153.
- Gasparik T. Experimental investigations of the origin of majoritic garnet inclusions in diamonds. // Phys. Chem. Minerals. 2002. V. 29. P. 170−180.
- Gasparik T., Litvin Yu.A. Stability of Na2Mg2Si207 and melting relations in the forsterite-jadeite join at pressures up to 22 GPa // Eur. J. Mineral. 1997. V. 9. P. 311−326.
- Harte B., Cayzer N. Decompression and unimixing of crystals included in diamonds from the mantle transition zone // Phys. Chem. Minerals. 2007. V. 34. P. 647−656.
- Hirose K., Fei Y., Ma Y., Mao H.K. The fate of subducted basaltic crust in the Earth’s lower mantle // Nature. 1999. V. 397. P. 53−56.
- Hirose K., Fei Y. Subsolidus and melting phase relations of basaltic composition in the uppermost lower mantle // Geochim. Cosmochim. Acta. 2002. V. 66. P. 2099−2108.
- Irifune T. An experimental investigation of the pyroxene-garnet transformation in a pyrolite composition and its bearing on the constitution of the mantle. // Phys. Earth Planet. Inter. 1987. V. 45. P. 324−336.
- Irifune T., Sekine T., RingwoodA.E., Hibberson W.O. The eclogite-garnetite transformation at high pressure and some geophysical implications // Earth. Planet. Sci. Lett. 1986. V. 77. P 245−256.
- Irifune T., Ringwood A.E. Phase transformations in subducted oceanic crust and buoyancy relationships at depths of 600−800 km in the mantle // Earth Planet. Sci. Lett. 1993. V. 117. P. 101−110.
- Irifune T., Miyashita M, Inoue T., Ando J., Funakoshi K., Utsumi W. High-pressure phase transformation in CaMgSi206 and implications for origin of ultra-deep diamond inclusions // Geophys. Res. Lett. 2000. V. 27. P. 3541−3544.
- Joswig W., Stachel T., Harris J.W., Baur W.H., Brey G. New Ca-silicate inclusions in diamonds tracers from the lower mantle // Earth Planet. Sei. Lett. 1999. V. 173. P. 1−6.
- Haggerty S.E., Sautter V. Ultra-deep (>300 km) ultramafic, upper mantle xenoliths. // Science. 1990. V. 248, P. 993−996.
- Hemley R.J., Mao H.-K. (Ed). Ultrahigh-Pressure Mineralogy // Rev. Miner. 1988. V. 37.671 p.
- Hohenberg P., Kohn W. Inhomogenios electron gas // Phys. Rev. 1964. V. 136. P. B864-B871
- Kaminsky F.V., Zakharchenko O.D., Davies R., Griffin W.L., Khachatryan-Blinova G.K., Shiryaev A.A. Superdeep diamonds from the Juina area, Mato Grosso State, Brazil // Contrib. Mineral. Petrol. 2001. V. 140. P. 734−753.
- Kellogg E.H., Hager B.H., van der Hilst R.D. Compositional stratification in the deep mantle // Science. 1999. V. 283. № 5409. P. 1881−1884
- Kesson S., Fitz Gerald J.D., Shelley J.M.G. Mineral chemistry and density of subducted basaltic crust at lower-mantle pressures // Nature. 1994. V. 372. P. 767 769.
- Kresse G., Hafner J. Norm-conserving and ultrasoft pseudopotentials for first-row and transition elements // J. Phys. Condensed Matter. 1994. V. 6. P. 8245−8257
- Kubo A., Akaogi M. Post-garnet transitions in the system Mg4Si40i2-Mg3Al2Si30i2 up to 28 GPa. phase relations of garnet, ilmenite and perovskite. // Phys. Earth Planet. Inter. 2000. V. 121. P. 85−102.
- Langenhorst F., Joreau P., Doukhan J.C. Thermal and shock metamorphism of the Tenham chondrite: A TEM examination // Geochim. Cosmochim. Acta. 1995. V 59. P. 1835−1845
- Litasov K.D., Ohtani E. Phase relations in hydrous MORB at 18−28 GPa: implications for heterogeneity of the lower mantle // Phys. Earth Planet. Inter. 2005. V. 150. P. 239−263.
- Litvin Yu.A. (2007). High-pressure mineralogy of diamond genesis. In: Advances in High-Pressure Mineralogy (edited by EijiOhtani), Geological Society of America Special paper 421, 83−103.
- Litvin Yu. A., Gasparik T. Melting of jadeite to 16.5 GPa and melting relations on the enstatite-jadeite join // Geochim. Cosmochim. Acta. 1993. V. 57. P. 2033−2040.
- Liu L.G. The high-pressure phases of MgSi03 // Earth Planet. Sci. Lett. 1976. V. 31. P. 200−208.
- Liu L. The system enstatite-pyrope at high pressures and temperatures and the mineralogy of the earth’s mantle // Earth Planet. Sci. Lett. 1977. V. 36. P. 237 245.
- Liu L. Phase relations in the system diopside-jadeite at high pressures and high temperatures // Earth Planet. Sci. Lett. 1980. V. 47. P. 398−402.
- Mc Kenna N.M., Gurney J.J., Klump J., Davidson J.M. Aspects of diamond mineralisation and distribution at the Helam Mine, South Africa // Lithos. 2004. V. 77. P. 193−208.
- Metropolis, N.I., Rosenbluth, A.W., Rosenbluth, M.N., Teller, A.N. Teller, E. Equation of state calculations by fast computing machines // Journal of Chem. Physics. 1953. V. 21, P. 1087−1092.
- Moore R.O., Gurney J.J. Pyroxene solid solution in garnets included in diamonds. //Nature. 1985. V. 318. P. 553−555.
- Oganov A.R., Brodholt J.P., Price G.D. Ab initio theory of thermoelasticity and phase transitions in minerals // EMU Notes in Mineralogy. V. 4: Energy modeling in minerals / Ed. C.M. Gramaccioli. Budapest, 2002. P. 83−170
- Oguri K., Funamori N., Sakai F., Kondo T., Uchida T., Yagi T. High-pressure and high-temperature phase relations in diopside CaMgSi206 // Phys. Earth Planet. Inter. 1997. V. 104. P. 363−370.
- Okamoto K., Maruyama S. The eclogite-garnetite transformation in the MORB + H20 system // Phys. Earth Planet. Inter. 2004. V. 146. P. 283−296.
- Ono S., Yasuda A. Compositional change of majoritic garnet in a MORB composition from 7 to 17 GPa and 1400 to 1600 degrees C // Phys. Earth. Planet. Inter. 1996. V. 96. P. 171−179.
- Ono S., Ito E., Katsura T. Mineralogy of subducted basaltic crust (MORB) from 25 to 37 GPa, and chemical heterogeneity of the lower mantle // Earth Planet. Sci. Lett. 2001. V. 190. P. 57−63.
- Ohtani E., Kimura Y., KimuraM., Takata T, Kondo T. and Kubo T. Formation of high-pressure minerals in shocked L6 chondrite Yamato 791 384: constraints onshock conditions and parent body size. // Earth Planet. Sci. Lett. 2004. V. 227(3−4). P. 505−515.
- Pacolo R.E.G., Gasparik T. Reversals of the orthoebstatite-clinoenstitite transition at high pressures and high temperatures // J. Geophys. Res. 1990. V. 95. P. 15 853−15 858
- Poli S., Schmidt M.W. H20 transport and release in subduction zones: experimental constraints on basaltic and andesitic systems. // J. Geophys. Res. 1995. V. 100. P. 22 999−23 014.
- Price G.D., Putnis A., Agrell S.O. Electron petrography of shock-produced veins in the Tenham chondrite // Contrib. Mineral. Petrol. 1979. V. 71. P. 211−218.
- Ringwood A.E. The olivine-spinel transition in the Earth’s mantle // Nature. 1956. V. 178. P. 1303−1304.
- Ringwood A.E. The pyroxene-garnet transformation in the Earth’s mantle // Earth Planet. Sci. Lett. 1967. V. 2. P. 255−263.
- Ringwood A.E. Composition and petrology of the Earth’s mantle. New York, McGraw-Hill. 1975. 618 p.
- Ringwood A.E. Phase transformations and their bearing on the constitution and dynamics of the mantle // Geochim. Cosmochim. Acta. 1991. V. 55. P. 2083−2110.
- Ringwood A.E., Major A. Synthesis of Mg2Si04-Fe2Si04 spinel solid solutions // Earth Planet. Sci. Lett. 1966. V. 1. P. 241−245.
- Ringwood A.E., Irifune T. Nature of the 650-km seismic discontinuity: implications for mantle dynamics and differentiation // Nature. 1988. V. 331. P. 131−136.
- Semenenko V, Golovko N. Shock-induced black veins and organic componds in ordinary chondrites. // Geochim Cosmochim Acta. 1994. V. 58. P. 1525−1535.
- Smith J., Mason B. Pyroxene garnet transformation in Coorara meteorite // Science. 1970. V. 168. P. 832−833.
- Sobolev N.V., Lavrent’ev Ju.G. Isomorphic sodium admixture in garnets formed at high pressures // Contib. Mineral. Petrol. 1971. V. 31. P. 1−12.
- Stachel T., Brey G.P., Harris J.W. Kankan diamonds (Guinea) I: from the lithosphere down to the transition zone // Contib. Mineral. Petrol. 2000a. V. 140. P. 1−15.
- Stachel T., Harris J.W., Brey G.P., Joswig W. Kankan diamonds (Guinea) II: lower mantle inclusion parageneses // Contib. Mineral. Petrol. 2000b. V. 140. P. 16−27.
- Stachel T. Diamonds from the asthenosphere and the transition zone. // Eur. J. Mineral. 2001. V. 13. P. 883−892.
- Stachel T., Brey G.P., Harris J.W. Inclusions in sublithospheric diamonds: glimpses of deep Earth // Elements. 2005. V. 1. P. 73−78.
- Taylor L.A., AnandM. Diamonds: time capsules from the Siberian Mantle // Chemie der Erde. 2004. V. 64. P. 1−74.
- Tomio’ka N. and Kimura M. The breakdown of diopside to Ca-rich majorite and glass in a shocked H chondrite. // Earth Planet. Sei. Lett. 2003. V. 208. P. 271−278.
- Vinograd V.L., Sluiter M.H.F. Thermodynamics of mixing in pyrope-grossular, Mg-^LSijO^-CasALSisO^, solid solution from lattice dynamicscalculations and Monte Carlo simulations //American. Mineral. 2006. V. 91. P. 713−725
- Vinograd V.L., Gale J. D., Winkler B., Thermodynamics of mixing in diopside-jadeite, CaMgSi206-NaAlSi206, solid solution from static lattice energy calculations, Physics and Chemistry of Minerals. 2007. V. 34. 713−725
- Wilding M.C. A study of diamonds with syngenetic inclusions / Unpublished PhD Thesis, University of Edinburgh, UK. 1990. 281 p.
- Wood B.J. Phase transformations and partitioning relations in peridotite under lower mantle conditions // Earth Planet. Sci. Lett. 2000. V. 174. P. 341−354.
- Woodland A.B. The orthorhombic to high-P monoclinic phase transition in Mg-Fe pyroxenes: can it produce seismic discontinuity? // Geophys. Res. Lett. 1998. V. 25. P. 1241−1244.
- Yasuda A., Fujii T., Kurita K. Melting phase relations of an anhydrous mid-ocean ridge basalt from 3 to 20 GPa: implications for the behavior of subducted oceanic crust in the mantle // J. Geophys. Res. 1994. V. 99 (B5). P. 9401−9414.