This article is focused on the electrochemical behaviour of U ions in molten LiF–CaF2 (79–21 wt.%) eutectic. On aWelectrode, U(III) is reduced in one step to U metal and U(III) can be also oxidised to U(IV). Both systems were studied by cyclic and square wave voltammetry. Reversibility of both systems for both techniques was verified and number of exchanged electrons was determined, as well as diffusion coefficients for U(III) and U(IV). The results are in a good agreement with previous studies. On a Ni electrode,the depolarisation effect due to intermetallic compounds formation was observed. Electrorefining of U metal in a melt containing U and Gd ions was carried out using a reactive Ni electrode with promising results
The electrochemical behaviour of the Eu(III)/Eu(II) system was examined in the molten eutectic LiF-C...
U-Al alloy formation has been studied in the temperature range of 400 – 550 °C by electrochemical te...
Uranium can be recovered from uranium oxide (UO2) spent fuel through the combination of oxide reduct...
This article is focused on the electrochemical behaviour of U ions in molten LiF-CaF2 (79-21 wt.%) e...
International audienceThis work is focused on the electrochemical behaviour of uranium in molten eut...
The Institute for Transuranium Elements ITU is building up an accurate database of actinide behavior...
International audienceThe electrochemical behavior of plutonium fluoride species was investigated in...
The direct electrochemical reduction of UO2 solid pellets was carried out in LiF-CaF2 (+ 2 mass. % L...
AbstractThe electrochemical reduction of uranium dioxide to metallic uranium has been investigated i...
This dissertation provides five topics—an assessment of different monitoring and analytical techniqu...
The electrochemical reduction of UO2 to U metal has been investigated in both Fluidized Cathode (FC)...
The electrochemicalbehaviour of the Th(IV)/Th system was examined in moltenLiF–CaF2medium on inert (...
There are a large number of purification and processing operations involving actinide species that r...
The electrochemical behaviour of UCl4 (0.01 mol L-1 up to 0.05 mol L-1) in 0.1 mol L-1 TBAPF6/DMF so...
The aim of this work is to explore the electroseparation of uranium from lanthanides (La, Ce, Pr, Nd...
The electrochemical behaviour of the Eu(III)/Eu(II) system was examined in the molten eutectic LiF-C...
U-Al alloy formation has been studied in the temperature range of 400 – 550 °C by electrochemical te...
Uranium can be recovered from uranium oxide (UO2) spent fuel through the combination of oxide reduct...
This article is focused on the electrochemical behaviour of U ions in molten LiF-CaF2 (79-21 wt.%) e...
International audienceThis work is focused on the electrochemical behaviour of uranium in molten eut...
The Institute for Transuranium Elements ITU is building up an accurate database of actinide behavior...
International audienceThe electrochemical behavior of plutonium fluoride species was investigated in...
The direct electrochemical reduction of UO2 solid pellets was carried out in LiF-CaF2 (+ 2 mass. % L...
AbstractThe electrochemical reduction of uranium dioxide to metallic uranium has been investigated i...
This dissertation provides five topics—an assessment of different monitoring and analytical techniqu...
The electrochemical reduction of UO2 to U metal has been investigated in both Fluidized Cathode (FC)...
The electrochemicalbehaviour of the Th(IV)/Th system was examined in moltenLiF–CaF2medium on inert (...
There are a large number of purification and processing operations involving actinide species that r...
The electrochemical behaviour of UCl4 (0.01 mol L-1 up to 0.05 mol L-1) in 0.1 mol L-1 TBAPF6/DMF so...
The aim of this work is to explore the electroseparation of uranium from lanthanides (La, Ce, Pr, Nd...
The electrochemical behaviour of the Eu(III)/Eu(II) system was examined in the molten eutectic LiF-C...
U-Al alloy formation has been studied in the temperature range of 400 – 550 °C by electrochemical te...
Uranium can be recovered from uranium oxide (UO2) spent fuel through the combination of oxide reduct...