2017
DOI: 10.1016/j.gca.2017.01.023
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Effect of pressure on Fe3+/ΣFe ratio in a mafic magma and consequences for magma ocean redox gradients

Abstract: Experiments establishing the effect of pressure on the Fe 3+ /ΣFe ratio of andesitic silicate melts buffered by coexisting Ru and RuO 2 were performed from 100 kPa to 7 GPa and 1400-1750°C. Fe 3+ /ΣFe ratios were determined by room temperature Mössbauer spectroscopy, but corrected for the effects of recoilless fraction. Fe 3+ /ΣFe ratios in quenched glasses decrease with increasing pressure consistent with previous results between 100 kPa and 3 GPa (O'Neill et al., 2006), but show only small pressure effects a… Show more

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Cited by 63 publications
(62 citation statements)
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References 99 publications
(183 reference statements)
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“…The success of core formation and an oxidized atmosphere setting (S/N) OE , (C/N) OE , and (C/S) OE ratios given a gas-poor bulk Earth ( Figure 6) is consistent with the recent predictions of magma ocean ƒO 2 profiles with depth 40,41 , where deep magma oceans are expected to co-exist with oxidized atmospheres.…”
Section: Modeling Observable N-s-c Ratios Of Planets In Response To Psupporting
confidence: 85%
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“…The success of core formation and an oxidized atmosphere setting (S/N) OE , (C/N) OE , and (C/S) OE ratios given a gas-poor bulk Earth ( Figure 6) is consistent with the recent predictions of magma ocean ƒO 2 profiles with depth 40,41 , where deep magma oceans are expected to co-exist with oxidized atmospheres.…”
Section: Modeling Observable N-s-c Ratios Of Planets In Response To Psupporting
confidence: 85%
“…If it is, then this model is identified as successful and conditions are logged (Figure 4d-f). the pressure-dependence of Fe +3 -Fe +2 equilibria 40,41 . Satisfying (C/S) OE ratios, on the other hand, requires oxidizing atmospheric conditions.…”
Section: Modeling Observable N-s-c Ratios Of Planets In Response To Pmentioning
confidence: 99%
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“…The assumption of greenhouse gases H 2 O and CO 2 as major species is in accordance with an oxidized MO surface (Hirschmann 2012;Zhang et al 2017) and bulk silicate Earth .…”
Section: Outgassing and Atmospheric Build Upmentioning
confidence: 86%
“…Such an MO involved mechanism has yet to be fully established because relevant redox controlling reactions are still poorly constrained in realistic magma ocean scenarios. Several studies have inferred the oxygen fugacity (f O 2 ) profile of silicate melts at high pressures using the experimental data at zero or relatively low pressures and is applicable only for shallow magma oceans 13,14 . The oxygen fugacity is a function of pressure, temperature, and composition, thus likely varying greatly within MOs that could have extended very deep, even covering the entire mantle regime.…”
mentioning
confidence: 99%