AbstractAn electrorefining process for metallic spent nuclear fuel treatment is being investigated in ITU. Solid aluminium cathodes are used for homogeneous recovery of all actinides within the process carried out in molten LiCl–KCl eutectic salt at a temperature of 500°C. As the selectivity, efficiency and performance of solid Al has been already shown using un-irradiated An–Zr alloy based test fuels, the present work was focused on laboratory-scale demonstration of the process using irradiated METAPHIX-1 fuel composed of U67–Pu19–Zr10–MA2–RE2 (wt.%, MA=Np, Am, Cm, RE=Nd, Ce, Gd, Y). Different electrorefining techniques, conditions and cathode geometries were used during the experiment yielding evaluation of separation factors, kinetic par...
This work presents a study on Ibe electrochemical behavior of actinides (An = Am and Pu) and lanthan...
Pyrochemical processes in molten LiCl–KCl are being developed in ITU for recovery of actinides from ...
CRIEPI and JRC-ITU have started a joint study on pyrometallurgical processing to demonstrate the cap...
An electrorefining process for metallic spent nuclear fuel treatment is being investigated in ITU. S...
AbstractAn electrorefining process for metallic spent nuclear fuel treatment is being investigated i...
AbstractPyrochemical methods for reprocessing of spent nuclear fuel are under development as an alte...
An electrorefining process in molten chloride salts is being developed at ITU to reprocess the spent...
An electrorefining process in molten chloride salts using solid aluminium cathodes is being develope...
An electrorefining process in molten chloride salts using solid aluminium cathodes is being develope...
AbstractA pyrochemical electrorefining process for the recovery of actinides from metallic nuclear f...
This work concerned the electrorefining of UZr and UPuZr alloys on a solid aluminium cathode, in the...
A pyrochemical electrorefining process for the recovery of actinides from metallic nuclear fuel base...
The Partitioning & Transmutation (P&T) strategy is based on reduction of the long-term radiotoxicity...
Electrorefining process in molten chloride salts using solid aluminium cathodes to recover actinides...
Electrorefining of irradiated metallic fuels (burn-up ~ 7 at%) in a LiCl-KCl melt at 773 K was succe...
This work presents a study on Ibe electrochemical behavior of actinides (An = Am and Pu) and lanthan...
Pyrochemical processes in molten LiCl–KCl are being developed in ITU for recovery of actinides from ...
CRIEPI and JRC-ITU have started a joint study on pyrometallurgical processing to demonstrate the cap...
An electrorefining process for metallic spent nuclear fuel treatment is being investigated in ITU. S...
AbstractAn electrorefining process for metallic spent nuclear fuel treatment is being investigated i...
AbstractPyrochemical methods for reprocessing of spent nuclear fuel are under development as an alte...
An electrorefining process in molten chloride salts is being developed at ITU to reprocess the spent...
An electrorefining process in molten chloride salts using solid aluminium cathodes is being develope...
An electrorefining process in molten chloride salts using solid aluminium cathodes is being develope...
AbstractA pyrochemical electrorefining process for the recovery of actinides from metallic nuclear f...
This work concerned the electrorefining of UZr and UPuZr alloys on a solid aluminium cathode, in the...
A pyrochemical electrorefining process for the recovery of actinides from metallic nuclear fuel base...
The Partitioning & Transmutation (P&T) strategy is based on reduction of the long-term radiotoxicity...
Electrorefining process in molten chloride salts using solid aluminium cathodes to recover actinides...
Electrorefining of irradiated metallic fuels (burn-up ~ 7 at%) in a LiCl-KCl melt at 773 K was succe...
This work presents a study on Ibe electrochemical behavior of actinides (An = Am and Pu) and lanthan...
Pyrochemical processes in molten LiCl–KCl are being developed in ITU for recovery of actinides from ...
CRIEPI and JRC-ITU have started a joint study on pyrometallurgical processing to demonstrate the cap...