Phase relations in the carbon-saturated C–Mg–Fe–Si–O system and C and Si solubility in liquid Fe at high pressure and temperature: implications for planetary interiors

被引:0
|
作者
Suguru Takahashi
Eiji Ohtani
Hidenori Terasaki
Yoshinori Ito
Yuki Shibazaki
Miho Ishii
Ken-ichi Funakoshi
Yuji Higo
机构
[1] Tohoku University,Department of Earth and Planetary Material Sciences
[2] Osaka University,Department of Earth and Space Science
[3] Carnegie Institution of Washington,Geophysical Laboratory
[4] Japan Synchrotron Radiation Research Institute,undefined
来源
关键词
Carbon-enriched planet; Oxygen fugacity; Solubility; Core composition; Deep carbon cycle;
D O I
暂无
中图分类号
学科分类号
摘要
The phase and melting relations of the C-saturated C–Mg–Fe–Si–O system were investigated at high pressure and temperature to understand the role of carbon in the structure of the Earth, terrestrial planets, and carbon-enriched extraterrestrial planets. The phase relations were studied using two types of experiments at 4 GPa: analyses of recovered samples and in situ X-ray diffractions. Our experiments revealed that the composition of metallic iron melts changes from a C-rich composition with up to about 5 wt.% C under oxidizing conditions (ΔIW = −1.7 to −1.2, where ΔIW is the deviation of the oxygen fugacity (fO2) from an iron-wüstite (IW) buffer) to a C-depleted composition with 21 wt.% Si under reducing conditions (ΔIW < −3.3) at 4 GPa and 1,873 K. SiC grains also coexisted with the Fe–Si melt under the most reducing conditions. The solubility of C in liquid Fe increased with increasing fO2, whereas the solubility of Si decreased with increasing fO2. The carbon-bearing phases were graphite, Fe3C, SiC, and Fe alloy melt (Fe–C or Fe–Si–C melts) under the redox conditions applied at 4 GPa, but carbonate was not observed under our experimental conditions. The phase relations observed in this study can be applicable to the Earth and other planets. In hypothetical reducing carbon planets (ΔIW < −6.2), graphite/diamond and/or SiC exist in the mantle, whereas the core would be an Fe–Si alloy containing very small amount of C even in the carbon-enriched planets. The mutually exclusive nature of C and Si may be important also for considering the light elements of the Earth’s core.
引用
收藏
页码:647 / 657
页数:10
相关论文
共 50 条
  • [21] Experimental study of the phase relations in the Fe-Cr-Si ternary system at 700 °C
    Li, Zhi
    Zhou, Zhe
    Wang, Xinming
    Liu, Yongxiong
    Wu, Yu
    Zhao, Manxiu
    Yin, Fucheng
    INTERNATIONAL JOURNAL OF MATERIALS RESEARCH, 2014, 105 (09) : 840 - 846
  • [22] FLUID BEHAVIOR AND PHASE-RELATIONS IN THE SYSTEM FE-MG-SI-C-O-H - APPLICATION TO HIGH-GRADE METAMORPHISM OF IRON-FORMATIONS
    MIYANO, T
    KLEIN, C
    AMERICAN JOURNAL OF SCIENCE, 1986, 286 (07) : 540 - 575
  • [23] Phase relations in the Fe-Fe3C-Fe3N system at 7.8 GPa and 1150°C: implications for C and N hosts in metal-saturated mantle
    Kruk, Alexey N.
    Korablin, Alexander A.
    Sokol, Alexander G.
    Palyanov, Yury N.
    HIGH PRESSURE RESEARCH, 2021, 41 (04) : 392 - 404
  • [24] Thermodynamics of the system Fe-Si-O under high pressure and temperature and its implications for Earth's core
    Komabayashi, Tetsuya
    PHYSICS AND CHEMISTRY OF MINERALS, 2020, 47 (07)
  • [25] THE EFFECT OF C AND SI ON THE SOLUBILITY OF NITROGEN IN LIQUID CR AND FE-CR ALLOYS
    KHYAKKINEN, VI
    BEZOBRAZOV, SV
    RUSSIAN METALLURGY, 1986, (05): : 15 - 19
  • [26] Thermodynamic Analysis of the Processes in the High-Temperature Multicomponent Fe-Y-Si-O-C System
    Mikhailov, G. G.
    Makrovets, L. A.
    RUSSIAN METALLURGY, 2023, 2023 (08): : 1159 - 1164
  • [27] SOLUBILITY OF CARBON, MANGANESE AND SILICON IN α-IRON OF Fe-Mn-Si-C ALLOYS
    Filonenko, Natalia
    Babachenko, Alexander
    Kononenko, Ganna
    Domina, Ekaterina
    EAST EUROPEAN JOURNAL OF PHYSICS, 2020, (04): : 90 - 94
  • [28] Solid-liquid phase equilibria in the Al-Fe-Si system at 727 °C
    Pontevichi S.
    Bosselet F.
    Barbeau F.
    Peronnet M.
    Viala J.C.
    Journal of Phase Equilibria and Diffusion, 2004, 25 (6) : 528 - 537
  • [29] Solid-liquid phase equilibria in the Al-Fe-Si system at 727 °C
    Pontevichi, S
    Bosselet, F
    Barbeau, F
    Peronnet, M
    Viala, JC
    JOURNAL OF PHASE EQUILIBRIA AND DIFFUSION, 2004, 25 (06) : 528 - 537
  • [30] Liquid-solid phase equilibrium in systems Cr-Si-C and Cr-Fe-Si-C
    Kosyrev, KL
    Olsen, SE
    Rosenquist, T
    STEEL IN TRANSLATION, 1996, 26 (07) : 21 - 29