The stable isotope character of the Earth's mantle - A review

被引:2
|
作者
Ionov, Dmitri A. [1 ]
Hoefs, Jochen [2 ]
Harmon, Russell [3 ]
机构
[1] Univ Montpellier, Geosci Montpellier, F-34095 Montpellier, France
[2] Univ Gottingen, Geosci Ctr, D-37077 Gottingen, Germany
[3] North Carolina State Univ, Dept Marine Earth & Atmospher Sci, Raleigh, NC 27695 USA
关键词
Stable isotopes; Mantle; Traditional stable isotopes; Non-traditional Stable Isotopes; ALTERED OCEANIC-CRUST; MIDOCEAN RIDGE BASALTS; ROBERTS-VICTOR ECLOGITES; MELT-ROCK INTERACTION; ULTRA-DEEP DIAMONDS; NORTH CHINA CRATON; OXYGEN-ISOTOPE; PERIDOTITE XENOLITHS; LITHOSPHERIC MANTLE; HIGH-TEMPERATURE;
D O I
10.1016/j.chemgeo.2024.122444
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
This review describes the stable isotope character of the Earth's mantle, the 2900 km thick silicate layer between the core and crust that comprises 67 % of the Earth's mass and 84% of the Earth's total volume, and summarizes the stable isotope evidence for its heterogeneity. The introduction and first section describe the petrological and geochemical character of the mantle, the geochemical processes operating therein, types and significance available mantle samples (lithospheric mantle fragments and mantle-derived volcanic rocks). The second section discusses insights about the geochemical character of the mantle provided by variations in the isotopic composition of the five traditional volatile elements (H, C, O, N and S) which is measured by IR-MS techniques. As a consequence of significant relative mass differences, the isotopes of H, C, O, N and S may experience larger fractionations than for heavier elements. Kinetic fractionations and gas/solid exchange reactions may play an important role in determining the isotope composition of solids in the presence of gaseous species (H2, CO2, CH4, N2, SO2, H2S), thereby enlarging isotope fractionations and causing heterogeneity in the mantle, documented for instance in the variable C and N isotope composition of diamonds. The next section discusses stable isotopes another 22 elements (Li, B, Mg, Si, Cl, K, Ca, Ti, V, Cr, Fe, Ni, Cu, Zn, Se, Zr, Mo, Ba, W, Hg, Tl and U). It was not until the introduction of the MC-ICP-MS technique that the very small variations for these non-traditional isotope systems in mantle materials could be precisely determined for most of these elements. The existing database acquired largely over the past 20 years clearly demonstrates that that mantle isotope heterogeneity is a product of the partial melting, metasomatism, magmatic differentiation and crustal recycling processes operating individually or in tandem. Respective contributions from the different fractionation and mixing processes vary from element to element, for instance, non-equilibrium diffusion-driven isotope fractionation may play an important role for elements like Li and K. Of special importance for discerning mantle heterogeneity are the fluid-mobile trace elements B, Cl, K, Ba, Mo and Tl which trace surface materials subducted from the Earth's surface into the mantle. Mantle metasomatism including the formation of new minerals (silicates, sulfides, carbonates) contributes to isotopic heterogeneity for mobile elements. For well-studied elements, stable isotope compositions of the Bulk Silicate Earth (BSE) and major mantle components (reservoirs) are constrained.
引用
收藏
页数:40
相关论文
共 50 条
  • [1] Stable Mg isotope composition of Earth's mantle
    Handler, M. R.
    Baker, J. A.
    Schiller, A.
    Bennett, V. C.
    Yaxley, G. M.
    GEOCHIMICA ET COSMOCHIMICA ACTA, 2008, 72 (12) : A348 - A348
  • [2] Magnesium stable isotope composition of Earth's upper mantle
    Handler, Monica R.
    Baker, Joel A.
    Schiller, Martin
    Bennett, Vickie C.
    Yaxley, Gregory M.
    EARTH AND PLANETARY SCIENCE LETTERS, 2009, 282 (1-4) : 306 - 313
  • [3] The Earth's atmosphere - A stable isotope perspective and review
    Hoefs, Jochen
    Harmon, Russell
    APPLIED GEOCHEMISTRY, 2022, 143
  • [4] Mg isotope thermometry in Earth's mantle
    Tonui, E.
    Young, E. D.
    Schauble, E. A.
    Manning, C. E.
    GEOCHIMICA ET COSMOCHIMICA ACTA, 2007, 71 (15) : A1030 - A1030
  • [5] The chlorine isotope composition of Earth's mantle
    Bonifacie, M.
    Jendrzejewski, N.
    Agrinier, P.
    Humler, E.
    Coleman, M.
    Javoy, M.
    SCIENCE, 2008, 319 (5869) : 1518 - 1520
  • [6] A review of the W isotope research for the Earth's core-mantle interaction
    Yang Zhen
    Wang GuiQin
    Xu YuMing
    Zeng YuLing
    ACTA PETROLOGICA SINICA, 2022, 38 (06) : 1655 - 1666
  • [7] STABLE ISOTOPE CONSTRAINTS ON A MODEL EARTH FROM A STUDY OF MANTLE NITROGEN
    JAVOY, M
    PINEAU, F
    METEORITICS, 1983, 18 (04): : 320 - 321
  • [8] Iron isotope fractionation in the Earth’s lower mantle
    James R. Rustad
    Qing-Zhu Yin
    Nature Geoscience, 2009, 2 : 514 - 518
  • [9] Iron isotope fractionation in the Earth's lower mantle
    Rustad, James R.
    Yin, Qing-Zhu
    NATURE GEOSCIENCE, 2009, 2 (07) : 514 - 518
  • [10] STABLE ISOTOPE VARIATIONS IN THE MANTLE
    KYSER, TK
    REVIEWS IN MINERALOGY, 1986, 16 : 141 - 164