AbstractThe electrochemical reduction of uranium dioxide to metallic uranium has been investigated in lithium chloride–potassium chloride eutectic molten salt. Laboratory based electrochemical studies have been coupled with in situ energy dispersive X-ray diffraction, for the first time, to deduce the reduction pathway. No intermediate phases were identified using the X-ray diffraction before, during or after electroreduction to form α-uranium. This suggests that the electrochemical reduction occurs via a single, 4-electron-step, process. The rate of formation of α-uranium is seen to decrease during electrolysis and could be a result of a build-up of oxygen anions in the molten salt. Slow transport of O2− ions away from the UO2 working elec...
International audienceThe direct electrochemical reduction of UO2 solid pellets was carried out in L...
International audienceThe direct electrochemical reduction of UO2 solid pellets was carried out in L...
The electrochemical reduction of UO2-PuO2 mixed oxides (MOX) was performed in molten LiCl at 923K an...
AbstractThe electrochemical reduction of uranium dioxide to metallic uranium has been investigated i...
The electrochemical reduction of UO2 to U metal has been investigated in both Fluidized Cathode (FC)...
A novel electrochemical cell has been designed and built to allow for in situ energy-dispersive X-ra...
Uranium can be recovered from uranium oxide (UO2) spent fuel through the combination of the oxide re...
Reprocessing of spent nuclear fuels using molten salt media is an attractive alternative to liquid-l...
The direct electrochemical reduction of UO2 solid pellets was carried out in LiF-CaF2 (+ 2 mass. % L...
International audienceThis work is focused on the electrochemical behaviour of uranium in molten eut...
International audienceThis work is focused on the electrochemical behaviour of uranium in molten eut...
Uranium can be recovered from uranium oxide (UO2) spent fuel through the combination of oxide reduct...
The Institute for Transuranium Elements ITU is building up an accurate database of actinide behavior...
Parametric studies were performed on a lithium-based electrolytic reduction process at bench-scale t...
International audienceThe direct electrochemical reduction of UO2 solid pellets was carried out in L...
International audienceThe direct electrochemical reduction of UO2 solid pellets was carried out in L...
International audienceThe direct electrochemical reduction of UO2 solid pellets was carried out in L...
The electrochemical reduction of UO2-PuO2 mixed oxides (MOX) was performed in molten LiCl at 923K an...
AbstractThe electrochemical reduction of uranium dioxide to metallic uranium has been investigated i...
The electrochemical reduction of UO2 to U metal has been investigated in both Fluidized Cathode (FC)...
A novel electrochemical cell has been designed and built to allow for in situ energy-dispersive X-ra...
Uranium can be recovered from uranium oxide (UO2) spent fuel through the combination of the oxide re...
Reprocessing of spent nuclear fuels using molten salt media is an attractive alternative to liquid-l...
The direct electrochemical reduction of UO2 solid pellets was carried out in LiF-CaF2 (+ 2 mass. % L...
International audienceThis work is focused on the electrochemical behaviour of uranium in molten eut...
International audienceThis work is focused on the electrochemical behaviour of uranium in molten eut...
Uranium can be recovered from uranium oxide (UO2) spent fuel through the combination of oxide reduct...
The Institute for Transuranium Elements ITU is building up an accurate database of actinide behavior...
Parametric studies were performed on a lithium-based electrolytic reduction process at bench-scale t...
International audienceThe direct electrochemical reduction of UO2 solid pellets was carried out in L...
International audienceThe direct electrochemical reduction of UO2 solid pellets was carried out in L...
International audienceThe direct electrochemical reduction of UO2 solid pellets was carried out in L...
The electrochemical reduction of UO2-PuO2 mixed oxides (MOX) was performed in molten LiCl at 923K an...