AbstractMolten salt electrorefining based pyrochemical reprocessing is ideally suited for treating the spent metallic fuels. Development of all aspects of the pyroprocess flow sheet is in progress at IGCAR to enable the commercialisation of the process. Following the initial laboratory scale studies, engineering scale studies have been taken up on the molten salt electrorefining process and the consolidation process for recovering the actinides from cathode deposit. Studies are also being carried out on the direct electrochemical reduction of actinide oxides, methods for the fabrication of waste forms and materials and coatings
An electrorefining process for metallic spent nuclear fuel treatment is being investigated in ITU. S...
Molten-Salt Reactor (MSR) is a design of an advanced reactor system from the GEN IV family working i...
Pyrochemical processing plays an important role in development of proliferation- resistant nuclear f...
AbstractPyrochemical methods for reprocessing of spent nuclear fuel are under development as an alte...
Reducing the cooling time of spent fast breeder reactor (FBR) fuel, thus reducing the doubling time ...
AbstractThe electrochemical reduction process has been used to reduce spent oxide fuel to a metallic...
CRIEPI and JRC-ITU have started a joint study on pyrometallurgical processing to demonstrate the cap...
International audienceIdeally a new pyro-process should not generate more waste, and should be at le...
The Partitioning & Transmutation (P&T) strategy is based on reduction of the long-term radiotoxicity...
A major element of the shutdown of the US liquid metal reactor development program is managing the s...
International audiencePyrochemical technology using high-temperature molten salts and molten metal m...
Argonne National Laboratory (ANL) has developed the electrometallurgical treatment process for condi...
Nuclear power remains the most dense and reliable primary form of energy supply worldwide. Electrici...
Molten-Salt Reactor (MSR) is a design of an advanced reactor system from the GEN IV family working i...
In support of closing the nuclear fuel cycle using non-aqueous separations technology, this project ...
An electrorefining process for metallic spent nuclear fuel treatment is being investigated in ITU. S...
Molten-Salt Reactor (MSR) is a design of an advanced reactor system from the GEN IV family working i...
Pyrochemical processing plays an important role in development of proliferation- resistant nuclear f...
AbstractPyrochemical methods for reprocessing of spent nuclear fuel are under development as an alte...
Reducing the cooling time of spent fast breeder reactor (FBR) fuel, thus reducing the doubling time ...
AbstractThe electrochemical reduction process has been used to reduce spent oxide fuel to a metallic...
CRIEPI and JRC-ITU have started a joint study on pyrometallurgical processing to demonstrate the cap...
International audienceIdeally a new pyro-process should not generate more waste, and should be at le...
The Partitioning & Transmutation (P&T) strategy is based on reduction of the long-term radiotoxicity...
A major element of the shutdown of the US liquid metal reactor development program is managing the s...
International audiencePyrochemical technology using high-temperature molten salts and molten metal m...
Argonne National Laboratory (ANL) has developed the electrometallurgical treatment process for condi...
Nuclear power remains the most dense and reliable primary form of energy supply worldwide. Electrici...
Molten-Salt Reactor (MSR) is a design of an advanced reactor system from the GEN IV family working i...
In support of closing the nuclear fuel cycle using non-aqueous separations technology, this project ...
An electrorefining process for metallic spent nuclear fuel treatment is being investigated in ITU. S...
Molten-Salt Reactor (MSR) is a design of an advanced reactor system from the GEN IV family working i...
Pyrochemical processing plays an important role in development of proliferation- resistant nuclear f...