The redox conditions of the Earth’s upper mantle are generally constrained through the use of oxy-thermobarometers, i.e. the chemical equilibrium involving iron bearing silicate/oxide end-member minerals that are representative of peridotite and eclogite mantle rocks [1,2]. The use of these oxy-thermobarometers requires the determination of the ferric/ferrous iron ratio in minerals like spinel and garnet equilibrated with minerals such as olivine, orthopyroxene and clinopyroxene. The knowledge of the iron speciation in minerals allows to model the variation of the mantle redox state, which likely control the speciation of carbon in the form of grapite (diamond) and carbonate (either solid or fluid) as function of pressure and temperature. S...
International audienceWe have investigated the partitioning of Fe3+ between orthopyroxene (Opx) and ...
Spinel peridotites from a variety of island arcs have been utilised to calculate the redox state of ...
Iron-bearing carbonates play an important role in Earth's carbon cycle. Owing to their stability at ...
International audienceThe fate of carbonates in the Earth's mantle plays a key role in the geodynami...
It is widely known that the oxidation state of the mantle strongly influence phase relations, fluids...
Redox equilibria in the Earth\u2019s mantle control many chemical and physical processes such as mag...
The oxygen fugacity of the upper mantle is 3–4 orders of magnitude higher than that of the lower man...
The subduction of carbon back into the mantle is an important natural form of carbon sequestration. ...
The distribution of volatile elements between Earth's core, mantle, and atmosphere over the last 4.5...
The oxygen fugacity (fO(2)) at which carbonate-bearing melts are reduced to either graphite or diamo...
The oxidation state of iron in Earth’s mantle is well known to depths of approximately 200 km, but h...
International audienceCarbonate minerals are important hosts of carbon in the crust and mantle with ...
In subduction environments the fluid phases released by the subducting plates are vehicles for the s...
The speciation of volatile elements within mantle rocks is strongly controlled by the local redox co...
Over recent decades, many experimental studies have focused on the effect of CO2 on phase equilibria...
International audienceWe have investigated the partitioning of Fe3+ between orthopyroxene (Opx) and ...
Spinel peridotites from a variety of island arcs have been utilised to calculate the redox state of ...
Iron-bearing carbonates play an important role in Earth's carbon cycle. Owing to their stability at ...
International audienceThe fate of carbonates in the Earth's mantle plays a key role in the geodynami...
It is widely known that the oxidation state of the mantle strongly influence phase relations, fluids...
Redox equilibria in the Earth\u2019s mantle control many chemical and physical processes such as mag...
The oxygen fugacity of the upper mantle is 3–4 orders of magnitude higher than that of the lower man...
The subduction of carbon back into the mantle is an important natural form of carbon sequestration. ...
The distribution of volatile elements between Earth's core, mantle, and atmosphere over the last 4.5...
The oxygen fugacity (fO(2)) at which carbonate-bearing melts are reduced to either graphite or diamo...
The oxidation state of iron in Earth’s mantle is well known to depths of approximately 200 km, but h...
International audienceCarbonate minerals are important hosts of carbon in the crust and mantle with ...
In subduction environments the fluid phases released by the subducting plates are vehicles for the s...
The speciation of volatile elements within mantle rocks is strongly controlled by the local redox co...
Over recent decades, many experimental studies have focused on the effect of CO2 on phase equilibria...
International audienceWe have investigated the partitioning of Fe3+ between orthopyroxene (Opx) and ...
Spinel peridotites from a variety of island arcs have been utilised to calculate the redox state of ...
Iron-bearing carbonates play an important role in Earth's carbon cycle. Owing to their stability at ...