Towards composition of carbonatite melts in peridotitic mantle

被引:11
|
作者
Shatskiy, Anton [1 ,2 ,3 ]
Bekhtenova, Altyna [1 ,2 ,3 ]
Podborodnikov, Ivan, V [1 ,2 ,3 ]
Areflev, Anton V. [1 ,2 ,3 ]
Litasov, Konstantin D. [3 ]
机构
[1] Russian Acad Sci, Sobolev Inst Geol & Mineral, Siberian Branch, Novosibirsk 630090, Russia
[2] Novosibirsk State Univ, Novosibirsk 630090, Russia
[3] Russian Acad Sci, Vereshchagin Inst High Pressure Phys, Troitsk 108840, Moscow, Russia
基金
俄罗斯科学基金会;
关键词
mantle metasomatism; carbonatite melt; Earth's mantle; high-pressure experiment; lherzolite; wehrlitization; UDACHNAYA-EAST KIMBERLITE; PHASE-RELATIONS; SYSTEM K2CO3-MGCO3; GPA IMPLICATIONS; DIAMOND; FLUID; METASOMATISM; ECLOGITE; EQUILIBRIUM; CONSTRAINTS;
D O I
10.1016/j.epsl.2022.117395
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
It is generally accepted that carbonatite metasomatism in the subcontinental lithospheric mantle (SCLM) inevitably causes wehrlitization of the primary lherzolite substrate. However, the K-rich carbonatite inclusions in kimberlitic diamonds containing orthopyroxene indicate that this is not always the case. In the present study, we equilibrated natural garnet lherzolite with carbonate melts containing 33-38 wt% K2O with various Ca# = 10, 20, 30, and 40 at 6 GPa and 1200-1500 degrees C, where Ca# = 100.Ca/(Ca+Mg+Fe). The original ratio of peridotite to carbonate was 58 to 42 by weight. In the studied temperature range, the melt retains essentially carbonate composition with silica content increasing from 1 to 11-12 wt%. The melt with Ca# 10 alters lherzolite to harzburgite, replacing clinopyroxene by orthopyroxene and decreasing CaO content in garnet below 4 wt%. The melts with Ca# 20-30 also consume clinopyroxene; although CaO content in garnet remains in the range of lherzolitic compositions. The melt with Ca# 40 yields wehrlitization, consuming orthopyroxene, increasing clinopyroxene fraction, and increasing CaO content in garnet above 6 wt%. After the interaction, the Ca# of the melt changes as follows 10 -> 16-28, 20 -> 20-33, 30 -> 27-34, and 40 -> 30-34. The olivine + orthopyroxene + clinopyroxene + garnet assemblage was found in equilibrium with carbonatite melt with Ca# 34 at 1200 degrees C and Ca# 30 at 1400 degrees C. Thus, K-rich (26-35 wt% K2O) carbonatite melts with Ca# = 30-34 can appear in equilibrium with garnet lherzolite, while the melts with Ca# < 30 and > 34 can be in equilibrium with harzburgite and wehrlite, respectively, at 6 GPa and 1200-1400 degrees C. Considering that Ca-Mg-Fe carbonates do not melt at the geothermal conditions of the SCLM, while sodic, dolomitic melt causes wehrlitization, high-Mg (Ca# < 35) K-rich dolomitic melt is the only possible carbonatite fluids that are thermodynamically stable in equilibrium with garnet harzburgites and lherzolites in the SCLM at a depth of about 200 km. At higher temperatures corresponding to the underlying asthenosphere, the high alkalinity ceases to be a requirement for the stability of the carbonate melt. Nevertheless, the regularities established here for the K-rich melts remain valid for less alkaline (4-15 wt% Na2O+K2O) primary kimberlite (i.e., mantle carbonatite) melts in the sublithospheric mantle. (C) 2022 Elsevier B.V. All rights reserved.
引用
收藏
页数:11
相关论文
共 50 条
  • [1] MANTLE METASOMATISM BY EPHEMERAL CARBONATITE MELTS
    GREEN, DH
    WALLACE, ME
    NATURE, 1988, 336 (6198) : 459 - 462
  • [2] Ultrafast mantle impregnation by carbonatite melts
    Hammouda, T
    Laporte, D
    GEOLOGY, 2000, 28 (03) : 283 - 285
  • [3] Fate of Pyroxenite-derived Melts in the Peridotitic Mantle: Thermodynamic and Experimental Constraints
    Lambart, S.
    Laporte, D.
    Provost, A.
    Schiano, P.
    JOURNAL OF PETROLOGY, 2012, 53 (03) : 451 - 476
  • [4] Monazite saturation in carbonatite melts at crustal and upper mantle conditions
    Ray, Srijita
    Yaxley, Gregory M.
    Miller, Laura A.
    Berry, Andrew J.
    GEOCHIMICA ET COSMOCHIMICA ACTA, 2025, 393 : 1 - 17
  • [5] Derivation of Peridotitic Upper Mantle Composition from a Chondritic Primordial Earth
    Gupta, A. K.
    National Academy of Sciences, India. Science Letters, 1995, 18 (3-4):
  • [6] Metasomatized Lithospheric Mantle beneath the Western Qinling, Central China: Insight into Carbonatite Melts in the Mantle
    Su, Ben-Xun
    Zhang, Hong-Fu
    Ying, Ji-Feng
    Tang, Yan-Jie
    Hu, Yan
    Santosh, M.
    JOURNAL OF GEOLOGY, 2012, 120 (06): : 671 - 681
  • [7] The equation of state of orthorhombic perovskite in a peridotitic mantle composition to 80 GPa: implications for chemical composition of the lower mantle
    Ono, S
    Kikegawa, T
    Iizuka, T
    PHYSICS OF THE EARTH AND PLANETARY INTERIORS, 2004, 145 (1-4) : 9 - 17
  • [8] Peridotitic diamonds from Namibia:: constraints on the composition and evolution of their mantle source
    Harris, JW
    Stachel, T
    Léost, I
    Brey, GP
    LITHOS, 2004, 77 (1-4) : 209 - 223
  • [9] Deep carbon cycle and geodynamics: the role of the core and carbonatite melts in the lower mantle
    Dobretsov, N. L.
    Shatskiy, A. F.
    RUSSIAN GEOLOGY AND GEOPHYSICS, 2012, 53 (11) : 1117 - 1132
  • [10] DERIVATION OF PERIDOTITIC UPPER-MANTLE COMPOSITION FROM A CHONDRITIC PRIMORDIAL EARTH
    GUPTA, AK
    NATIONAL ACADEMY SCIENCE LETTERS-INDIA, 1995, 18 (3-4): : 85 - 87