The Fission Product Extraction (FPEX) Process is being developed as part of the United States Department of Energy Advanced Fuel Cycle Initiative for the simultaneous separation of cesium (Cs) and strontium (Sr) from spent light water reactor (LWR) fuel. Separation of the Cs and Sr will reduce the short-term heat load in a geological repository, and when combined with the separation of americium (Am) and curium (Cm), could increase the capacity of the geological repository by a factor of approximately 100. The FPEX process is based on two highly specific extractants: 4,4',(5')-Di-(t-butyldicyclo-hexano)-18-crown-6 (DtBuCH18C6) and Calix[4]arene-bis-(tert-octylbenzo-crown-6) (BOBCalixC6). The DtBuCH18C6 extractant is selective for strontium ...
Increasing industrial, military, and space requirements for certain fission products place emphasis ...
A universal solvent extraction process is being evaluated for the simultaneous separation of Cs, Sr,...
This fundamental research on combined cesium, strontium, and actinide separation from alkaline media...
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...
As part of the Advanced Fuel Cycle Initiative (AFCI), the reduction in volume and heat generation of...
Integral to the Advanced Fuel Cycle Initiative (AFCI) Program’s proposed closed nuclear fuel cycle, ...
The recovery of Cs and Sr from acidic solutions by solvent extraction has been investigated. The goa...
This review focuses on consolidating solvent extraction performed in the process intensification equ...
Two main objectives concerning removal of fission products from high-level tank wastes will be accom...
The Universal Solvent Extraction (UNEX) process is being developed for the simultaneous separation o...
In order to recycle potentially valuable uranium and plutonium, the Purex process has been successfu...
Processes are described for the recovery of cesium137 from Purex type, first cycle waste solutions w...
The development of a head-end processing step for spent oxide fuel that applies to both aqueous and ...
In a previous publication, the authors described a chromatographic process for the selective separat...
Increasing industrial, military, and space requirements for certain fission products place emphasis ...
A universal solvent extraction process is being evaluated for the simultaneous separation of Cs, Sr,...
This fundamental research on combined cesium, strontium, and actinide separation from alkaline media...
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...
As part of the Advanced Fuel Cycle Initiative (AFCI), the reduction in volume and heat generation of...
Integral to the Advanced Fuel Cycle Initiative (AFCI) Program’s proposed closed nuclear fuel cycle, ...
The recovery of Cs and Sr from acidic solutions by solvent extraction has been investigated. The goa...
This review focuses on consolidating solvent extraction performed in the process intensification equ...
Two main objectives concerning removal of fission products from high-level tank wastes will be accom...
The Universal Solvent Extraction (UNEX) process is being developed for the simultaneous separation o...
In order to recycle potentially valuable uranium and plutonium, the Purex process has been successfu...
Processes are described for the recovery of cesium137 from Purex type, first cycle waste solutions w...
The development of a head-end processing step for spent oxide fuel that applies to both aqueous and ...
In a previous publication, the authors described a chromatographic process for the selective separat...
Increasing industrial, military, and space requirements for certain fission products place emphasis ...
A universal solvent extraction process is being evaluated for the simultaneous separation of Cs, Sr,...
This fundamental research on combined cesium, strontium, and actinide separation from alkaline media...