International audienceThis study investigates the metal–silicate partitioning of Ni, Co, V, Cr, Mn and Fe during core mantle differentiation of terrestrial planets under hydrous conditions. For this, we equilibrated a molten hydrous CI chondrite model composition with various Fe-rich alloys in the system Fe–C–Ni–Co–Si–S in a multi-anvil over a range of P, T, fO2 and water content (5–20 GPa, 2073–2500 K, from 1 to 5 log units below the iron–wüstite (IW) buffer and for XH2O varying from 500 ppm to 1.5 wt%). By comparing the present experiments with the available data sets on dry systems, we observes that the effect of water on the partition coefficients of moderately siderophile elements is only moderate. For example, for iron we observed a d...
International audienceSuperliquidus metal-silicate partitioning was investigated for a number of mod...
Since approximately 1990 high pressure and temperature (PT) experiments on metal-silicate systems ha...
Co-auteur étrangerInternational audienceHydrogen has been thought to be an important light element i...
International audienceThis study investigates the metal–silicate partitioning of Ni, Co, V, Cr, Mn a...
International audienceThe accretion of planets from primordial materials and their subsequent differ...
International audienceThis study investigates the metal-silicate partitioning of Pb and U (DPb and D...
We have investigated the effects of temperature, pressure and metal composition on the metal-silicat...
Experimental metal-silicate partitioning data for Ni, Co, V, Cr, Nb, Mn, Si and W were used to inves...
We performed experiments to separate the effects of temperature, pressure and metal composition on t...
We have combined metal-silicate partitioning data from the literature with new experimental results ...
The accretion of the Earth was marked by the high-pressure segregation of most of its core, accompan...
The depletion of siderophile (i.e., “iron-loving”) elements in the Earth’s mantle relative to chondr...
The interior structure of Earth, particularly the metal core, is responsible for the core dynamo and...
We present the results of new partitioning experiments between metal and silicate melts for a series...
International audienceSuperliquidus metal-silicate partitioning was investigated for a number of mod...
Since approximately 1990 high pressure and temperature (PT) experiments on metal-silicate systems ha...
Co-auteur étrangerInternational audienceHydrogen has been thought to be an important light element i...
International audienceThis study investigates the metal–silicate partitioning of Ni, Co, V, Cr, Mn a...
International audienceThe accretion of planets from primordial materials and their subsequent differ...
International audienceThis study investigates the metal-silicate partitioning of Pb and U (DPb and D...
We have investigated the effects of temperature, pressure and metal composition on the metal-silicat...
Experimental metal-silicate partitioning data for Ni, Co, V, Cr, Nb, Mn, Si and W were used to inves...
We performed experiments to separate the effects of temperature, pressure and metal composition on t...
We have combined metal-silicate partitioning data from the literature with new experimental results ...
The accretion of the Earth was marked by the high-pressure segregation of most of its core, accompan...
The depletion of siderophile (i.e., “iron-loving”) elements in the Earth’s mantle relative to chondr...
The interior structure of Earth, particularly the metal core, is responsible for the core dynamo and...
We present the results of new partitioning experiments between metal and silicate melts for a series...
International audienceSuperliquidus metal-silicate partitioning was investigated for a number of mod...
Since approximately 1990 high pressure and temperature (PT) experiments on metal-silicate systems ha...
Co-auteur étrangerInternational audienceHydrogen has been thought to be an important light element i...