The objective of this research program is to address major nuclear fuels performance issues for the design and use of oxide-type fuels in the current and advanced nuclear reactor applications. Fuel performance is a major issue for extending fuel burn-up which has the added advantage of reducing the used fuel waste stream. It will also be a significant issue with respect to developing advanced fuel cycle processes where it may be possible to incorporate minor actinides in various fuel forms so that they can be 'burned' rather than join the used fuel waste stream. The potential to fission or transmute minor actinides and certain long-lived fission product isotopes would transform the high level waste storage strategy by removing the need to c...
This report discusses a simulation study of the burnup of mixed-oxide fuel in a Combustion Engineeri...
The amount of spent fuel and high-level waste already available, and which will be produced by the f...
The research presented here is based on the well defined Non-Destructive Analysis (NDA) of UO2 fuel ...
Oxide nuclear fuel materials and analogues are often subject to complex structural and chemical chan...
Spent nuclear fuel from commercial reactors is comprised of 95-99 percent UO{sub 2} and 1-5 percent ...
The purpose of the U.S. Advanced Fuel Cycle Initiative (AFCI), now within the broader context of the...
Improvement of the nuclear fuel exploitation has been one of the main objectives of reactor technolo...
The nuclear fuel assemblies are used in the reactor for 3 to 6 years, and then are stored underwater...
The Advanced Fuels Campaign performed a series of irradiation tests of minor actinide-bearing mixed ...
A worldwide objective in nuclear energy industry is the reduction of long-lived radio toxicity and h...
Fuels for future fast reactors will not only produce energy, but they must also actively contribute ...
A fundamental step in understanding the effects of irradiation on metallic uranium and uranium dioxi...
Nuclear fuel undergoes various changes in its properties and composition as it is irradiated in a nu...
The U.S. concept for actinide transmutation is currently envisioned as a system to destroy plutonium...
Best poster presentation award of symposium EN17 at MRS Spring Meeting in PhoenixInternational audie...
This report discusses a simulation study of the burnup of mixed-oxide fuel in a Combustion Engineeri...
The amount of spent fuel and high-level waste already available, and which will be produced by the f...
The research presented here is based on the well defined Non-Destructive Analysis (NDA) of UO2 fuel ...
Oxide nuclear fuel materials and analogues are often subject to complex structural and chemical chan...
Spent nuclear fuel from commercial reactors is comprised of 95-99 percent UO{sub 2} and 1-5 percent ...
The purpose of the U.S. Advanced Fuel Cycle Initiative (AFCI), now within the broader context of the...
Improvement of the nuclear fuel exploitation has been one of the main objectives of reactor technolo...
The nuclear fuel assemblies are used in the reactor for 3 to 6 years, and then are stored underwater...
The Advanced Fuels Campaign performed a series of irradiation tests of minor actinide-bearing mixed ...
A worldwide objective in nuclear energy industry is the reduction of long-lived radio toxicity and h...
Fuels for future fast reactors will not only produce energy, but they must also actively contribute ...
A fundamental step in understanding the effects of irradiation on metallic uranium and uranium dioxi...
Nuclear fuel undergoes various changes in its properties and composition as it is irradiated in a nu...
The U.S. concept for actinide transmutation is currently envisioned as a system to destroy plutonium...
Best poster presentation award of symposium EN17 at MRS Spring Meeting in PhoenixInternational audie...
This report discusses a simulation study of the burnup of mixed-oxide fuel in a Combustion Engineeri...
The amount of spent fuel and high-level waste already available, and which will be produced by the f...
The research presented here is based on the well defined Non-Destructive Analysis (NDA) of UO2 fuel ...