The mantle of the modern Earth is relatively oxidised compared to the initially reducing conditions inferred for core formation. The timing of the oxidation of the mantle is not conclusively resolved but has important implications for the timing of the development of the hydrosphere and atmosphere. In order to examine the timing of this oxidation event, we present iron isotope data from three exceptionally well preserved komatiite localities, Belingwe (2.7 Ga), Vetreny (2.4 Ga) and Gorgona (0.089 Ga). Measurements of Fe isotope compositions of whole-rock samples are complemented by the analysis of olivine, spinel and pyroxene separates. Bulk-rock and olivine Fe isotope compositions (δ57Fe) define clear linear correlations with indicators of...
International audienceKomatiites are crystallized samples of high-temperature, high-MgO lavas that w...
Available online 16 August 2016Iron is the only polyvalent major element, and controls reduction–oxi...
The Earth's mantle is currently oxidised and out of chemical equilibrium with the core. The reasons ...
The mantle of the modern Earth is relatively oxidised compared to the initially reducing conditions ...
The mantle of the modern Earth is relatively oxidised compared to the initially reducing conditions ...
International audienceKomatiites from Alexo, Canada, are well preserved and represent high-degree pa...
Komatiites are volcanic rocks mainly of Archaean age that formed by unusually high degrees of meltin...
High-precision Fe isotopic data for 104 samples, including modern and ancient (≥ 3.7 Ga) subduction-...
Iron isotopic compositions potentially provide a powerful new tracer of planetary formation and diff...
The oxygen fugacity of the mantle exerts a fundamental influence on mantle melting, volatile speciat...
The oxygen fugacity of the mantle exerts a fundamental influence on mantle melting, volatile speciat...
The fractionation of stable isotopes at high temperatures offers a unique insight into the sources a...
© 2017 Macmillan Publishers Limited, part of Springer Nature. All rights reserved. Geodynamic proces...
Archean (>2.5 billion years) komatiites are considered expressions of mantle plumes that originate f...
Abstract The oxygen fugacities of nine mantle-derived komatiitic and picritic systems ranging in ag...
International audienceKomatiites are crystallized samples of high-temperature, high-MgO lavas that w...
Available online 16 August 2016Iron is the only polyvalent major element, and controls reduction–oxi...
The Earth's mantle is currently oxidised and out of chemical equilibrium with the core. The reasons ...
The mantle of the modern Earth is relatively oxidised compared to the initially reducing conditions ...
The mantle of the modern Earth is relatively oxidised compared to the initially reducing conditions ...
International audienceKomatiites from Alexo, Canada, are well preserved and represent high-degree pa...
Komatiites are volcanic rocks mainly of Archaean age that formed by unusually high degrees of meltin...
High-precision Fe isotopic data for 104 samples, including modern and ancient (≥ 3.7 Ga) subduction-...
Iron isotopic compositions potentially provide a powerful new tracer of planetary formation and diff...
The oxygen fugacity of the mantle exerts a fundamental influence on mantle melting, volatile speciat...
The oxygen fugacity of the mantle exerts a fundamental influence on mantle melting, volatile speciat...
The fractionation of stable isotopes at high temperatures offers a unique insight into the sources a...
© 2017 Macmillan Publishers Limited, part of Springer Nature. All rights reserved. Geodynamic proces...
Archean (>2.5 billion years) komatiites are considered expressions of mantle plumes that originate f...
Abstract The oxygen fugacities of nine mantle-derived komatiitic and picritic systems ranging in ag...
International audienceKomatiites are crystallized samples of high-temperature, high-MgO lavas that w...
Available online 16 August 2016Iron is the only polyvalent major element, and controls reduction–oxi...
The Earth's mantle is currently oxidised and out of chemical equilibrium with the core. The reasons ...