A review of the demonstration of innovative solvent extraction processes for the recovery of trivalent minor actinides from PUREX raffinate
Обзор демонстрации инновационных процессов экстракции растворителем для восстановления трёхвалентных минорных актинидов из раффината PUREX
2012-08-01
SCID: 54.1/rwajrduv
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DIAMEX processSANEX processamericium and curium recoveryminor actinide partitioningsolvent extraction processes
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Abstract (AI)
Abstract The selective partitioning (P) of long-lived minor actinides fromhighly active waste solutions and their transmutation (T) to short-lived or stable isotopes by nuclear reactions will reduce the long-term hazard of the high-level waste and significantly shorten the time needed to ensure their safe confinement in a repository. The present paper summarizes the on-going research activities at Forschungszentrum Jülich (FZJ), Karlsruher Institut für Technologie (KIT) and Institute for Transuranium Elements (ITU) in the field of actinide partitioning using innovative solvent extraction processes. European research over the last few decades, i.e. in the NEWPART, PARTNEW and EUROPART programmes, has resulted in the development of multi-cycle processes for minor actinide partitioning. These multi-cycle processes are based on the co-separation of trivalent actinides and lanthanides (e.g. by the DIAMEX process), followed by the subsequent actinide(III)/lanthanide(III) group separation in the SANEX process. The current direction of research for the development of innovative processes within the recent European ACSEPT project is discussed additionally. This paper is focused on the development of flow-sheets for recovery of americium and curium from highly active waste solutions. The flow-sheets are verified by demonstration processes, in centrifugal contactors, using synthetic or genuine fuel solutions. The feasibility of the processes is also discussed.
Key Findings
1
European programs (NEWPART, PARTNEW, EUROPART) developed multi-cycle solvent extraction processes for minor actinide partitioning.
2
Flow-sheets for americium and curium recovery have been verified by demonstration processes in centrifugal contactors using synthetic and genuine fuel solutions.
3
Multi-cycle processes use co-separation of trivalent actinides and lanthanides (e.g., DIAMEX) followed by actinide(III)/lanthanide(III) group separation (SANEX).
4
Partitioning and transmutation (P/T) of minor actinides can reduce long-term hazard and shorten repository confinement time for high-level waste.
5
Recent ACSEPT project research focuses on developing innovative solvent extraction processes and flow-sheets for americium and curium recovery.
6
The paper discusses the feasibility of the demonstrated solvent extraction processes for recovery of trivalent minor actinides from PUREX raffinate.
Research Object
Innovative solvent extraction processes and their demonstration flow-sheets for recovery of trivalent minor actinides (americium and curium) from PUREX raffinate/highly active waste solutions
Research Subject
Development, demonstration and verification (including centrifugal-contactor demonstrations and feasibility assessment) of multi-cycle solvent-extraction flow-sheets for selective partitioning and group separation of trivalent actinides (Am(III), Cm(III)) from lanthanides in PUREX raffinate
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2012-08-01
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