Iron Redox Reaction in Earth's Early Magma Ocean
ID:234 View Protection:ATTENDEE Updated Time:2024-04-23 01:17:39 Hits:419 Oral Presentation

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Abstract
Earth’s mantle is far more oxidized than its building blocks. The oxidation of the mantle has a large effect on our planet’s habitability, as it sets the necessary precondition for the formation of an oxygen-rich atmosphere to support life. Mantle oxidation may have occurred during the “magma ocean” stage of Earth’s history, through iron disproportionation (3FeO  Fe + Fe2O3) in molten silicate. However, experiments at relevant pressure and temperature conditions are lacking to test this hypothesis. Here, we present new data from laser-heating diamond-anvil cell experiments in combination with X-ray Diffraction (XRD), Synchrotron Mössbauer spectroscopy (in situ and recovery), and analyses of recovered samples using the focused ion beam (FIB), scanning electron microscopy (SEM), and transition electron microscopy (TEM). Preliminary data suggest spin crossover in pyrolite glass and considerable disproportionation in pyrolite melt at moderate pressures. We will discuss the implications for the role of self-redox reaction in oxidizing the mantle and facilitating Earth’s evolution into an inhabited world.
Keywords
Earth, Planet
Speaker
Jie Li
University of Michigan

Submission Author
Jie Li University of Michigan
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Important Date
  • Conference Date

    May 13

    2024

    to

    May 17

    2024

  • Mar 31 2024

    Registration deadline

  • Apr 15 2024

    Abstract Submission Deadline

Sponsored By
National Key Laboratory of Shock wave and Detonation Physics
School of Physics, Zhejiang University
Pulsed Power Technology and Application Association of Chinese Nuclear Society
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