This review focuses on consolidating solvent extraction performed in the process intensification equipment known as Centrifugal Contactors (CCs), implemented in Spent Nuclear Fuel (SNF) reprocessing and radioactive waste processing. Recovery of valuable actinides is important from sustainability perspectives as it is a source of metals of technological interest from SNF, specifically the recovery of fissile and fertile material, and can also be employed in the processing of Waste Electrical and Electronic Equipment (WEEE). Solvent extraction (also referred to as liquid–liquid extraction, or aqueous separation), is employed in the separation of f-block elements and fission products in SNF. The sequential isolation using different flowsheets ...
It is clear that closed nuclear fuel cycles with the recycling of spent nuclear fuels can enhance th...
The recycling of irradiated nuclear fuels contributes significantly to the sustainability of nuclear...
This review summarises the methods currently available to extract radioactive actinide elements from...
Recycling of actinides from spent nuclear fuel by their selective separation followed by transmutati...
The hydrometallurgical separation concepts for the recycling of irradiated nuclear fuels developed i...
Solvent extraction processing has demonstrated the ability to achieve high decontamination factors f...
As part of the Advanced Fuel Cycle Initiative, two solvent extraction technologies are being develop...
As part of the Advanced Fuel Cycle Initiative, two solvent extraction technologies are being develop...
Graduation date: 2011Industrial reprocessing of irradiated nuclear fuel (INF) is one of the most com...
The Fission Product Extraction (FPEX) Process is being developed as part of the United States Depart...
The initial motivation for the development of reprocessing technologies was to obtain pure fissile m...
Novel reprocessing schemes and techniques are the focus of the Euratom FP7 project "Actinide Recycli...
As part of the Advanced Fuel Cycle Initiative (AFCI), the reduction in volume and heat generation of...
The initial motivation for the development of reprocessing technologies was to obtain pure fissile m...
In order to recycle potentially valuable uranium and plutonium, the Purex process has been successfu...
It is clear that closed nuclear fuel cycles with the recycling of spent nuclear fuels can enhance th...
The recycling of irradiated nuclear fuels contributes significantly to the sustainability of nuclear...
This review summarises the methods currently available to extract radioactive actinide elements from...
Recycling of actinides from spent nuclear fuel by their selective separation followed by transmutati...
The hydrometallurgical separation concepts for the recycling of irradiated nuclear fuels developed i...
Solvent extraction processing has demonstrated the ability to achieve high decontamination factors f...
As part of the Advanced Fuel Cycle Initiative, two solvent extraction technologies are being develop...
As part of the Advanced Fuel Cycle Initiative, two solvent extraction technologies are being develop...
Graduation date: 2011Industrial reprocessing of irradiated nuclear fuel (INF) is one of the most com...
The Fission Product Extraction (FPEX) Process is being developed as part of the United States Depart...
The initial motivation for the development of reprocessing technologies was to obtain pure fissile m...
Novel reprocessing schemes and techniques are the focus of the Euratom FP7 project "Actinide Recycli...
As part of the Advanced Fuel Cycle Initiative (AFCI), the reduction in volume and heat generation of...
The initial motivation for the development of reprocessing technologies was to obtain pure fissile m...
In order to recycle potentially valuable uranium and plutonium, the Purex process has been successfu...
It is clear that closed nuclear fuel cycles with the recycling of spent nuclear fuels can enhance th...
The recycling of irradiated nuclear fuels contributes significantly to the sustainability of nuclear...
This review summarises the methods currently available to extract radioactive actinide elements from...