AbstractThis study presents an effective method for additional recovery of residual actinides in liquid electrodes after the electrowinning process of pyroprocessing. The major distinctive feature of this method is a reactor with multiple reaction cells separated by partition walls in order to improve the recovery yield, thereby using the interelement difference in diffusion coefficients within the liquid electrode and controlling the selectivity and purity of element recovery. Through an example of numerical simulation of the diffusion scenarios of individual elements, we verified that the proposed method could effectively separate the actinides (U and Pu) and rare-earth elements contained in liquid cadmium. We performed a five-step consec...
An electrorefining process in molten chloride salts is being developed at ITU to reprocess the spent...
International audiencePyrochemical technology using high-temperature molten salts and molten metal m...
International audiencePyrochemical technology using high-temperature molten salts and molten metal m...
AbstractThis study presents an effective method for additional recovery of residual actinides in liq...
This study presents an effective method for additional recovery of residual actinides in liquid elec...
AbstractA metal fuel cycle combined with pyropartitioning and transmutation of minor actinide elemen...
The Partitioning & Transmutation (P&T) strategy is based on reduction of the long-term radiotoxicity...
AbstractLiquid Cd is used as a reaction medium in the pyrometallurgical reprocessing for spent nucle...
AbstractTo comply with the sustainability goals defined for innovative reactor systems mainly the wa...
AbstractMinor actinide recycling in a fuel cycle is a potential technology to minimize the environme...
Recovery of transuranic actinides (TRU) using electrorefining is a process being investigated as par...
This study is part of a research program concerning the assessment of pyrochemical methods for the n...
AbstractA brief status of the development of actinide separation in china is presented. The activiti...
AbstractPyrochemical methods for reprocessing of spent nuclear fuel are under development as an alte...
AbstractA metal fuel cycle combined with pyropartitioning and transmutation of minor actinide elemen...
An electrorefining process in molten chloride salts is being developed at ITU to reprocess the spent...
International audiencePyrochemical technology using high-temperature molten salts and molten metal m...
International audiencePyrochemical technology using high-temperature molten salts and molten metal m...
AbstractThis study presents an effective method for additional recovery of residual actinides in liq...
This study presents an effective method for additional recovery of residual actinides in liquid elec...
AbstractA metal fuel cycle combined with pyropartitioning and transmutation of minor actinide elemen...
The Partitioning & Transmutation (P&T) strategy is based on reduction of the long-term radiotoxicity...
AbstractLiquid Cd is used as a reaction medium in the pyrometallurgical reprocessing for spent nucle...
AbstractTo comply with the sustainability goals defined for innovative reactor systems mainly the wa...
AbstractMinor actinide recycling in a fuel cycle is a potential technology to minimize the environme...
Recovery of transuranic actinides (TRU) using electrorefining is a process being investigated as par...
This study is part of a research program concerning the assessment of pyrochemical methods for the n...
AbstractA brief status of the development of actinide separation in china is presented. The activiti...
AbstractPyrochemical methods for reprocessing of spent nuclear fuel are under development as an alte...
AbstractA metal fuel cycle combined with pyropartitioning and transmutation of minor actinide elemen...
An electrorefining process in molten chloride salts is being developed at ITU to reprocess the spent...
International audiencePyrochemical technology using high-temperature molten salts and molten metal m...
International audiencePyrochemical technology using high-temperature molten salts and molten metal m...