Uranium nitride (UN)-uranium dioxide (UO2) composite fuels are being considered as an accident tolerant fuel (ATF) option for light water reactors. However, the complexity related to the chemical interactions between UN and UO(2 )during sintering is still an open problem. Moreover, there is a lack of knowledge regarding the influence of the sintering parameters on the amount and morphology of the alpha-U2N3 phase formed. In this study, a detailed investigation of the interaction between UN and UO2 is provided and a formation mechanism for the resulting alpha-U2N3 phase is proposed. Coupled with these analyses, an innovative ATF concept was investigated: UN microspheres and UO2,13 powder were mixed and subsequently sintered by spark plasma s...
To avoid detrimental environmental impacts from climate change, the world community needs to push fo...
Due to the Fukushima nuclear accident there has been a large effort by several countries to develop ...
After the nuclear accident at Fukushima-Daiichi in 2011, a search for alternatives to a current fuel...
Nuclear energy is a carbon-free energy source alternative often considered less harmful to the envir...
In this study, the process involved in the fabrication of a potential accident tolerant fuel is desc...
Uranium nitride is being investigated as a replacement for UO2 as it shows enhanced thermal properti...
Uranium nitride (UN) spheres embedded in uranium dioxide (UO2) matrix is considered an innovative ac...
Nuclear energy is a carbon-free energy source often considered less harmful to the environment than ...
The design and development of an economical, accident tolerant fuel (ATF) for use in the current lig...
The recent prioritization on development of nuclear fuels with enhanced accident tolerance has led t...
Nuclear energy continues to play a large role in the energy landscape of the world. Of particular in...
The Department of Energy’s Office of Nuclear Energy (DOE-NE) has emphasized the need for technologic...
Uranium nitride (UN) has been proposed as an accident tolerant fuel due to its enhanced thermal prop...
Uranium nitride (UN) is considered as nuclear reactor fuel because of, among other reasons, its high...
Nuclear fuel performance under normal operating conditions and extreme accident conditions have stud...
To avoid detrimental environmental impacts from climate change, the world community needs to push fo...
Due to the Fukushima nuclear accident there has been a large effort by several countries to develop ...
After the nuclear accident at Fukushima-Daiichi in 2011, a search for alternatives to a current fuel...
Nuclear energy is a carbon-free energy source alternative often considered less harmful to the envir...
In this study, the process involved in the fabrication of a potential accident tolerant fuel is desc...
Uranium nitride is being investigated as a replacement for UO2 as it shows enhanced thermal properti...
Uranium nitride (UN) spheres embedded in uranium dioxide (UO2) matrix is considered an innovative ac...
Nuclear energy is a carbon-free energy source often considered less harmful to the environment than ...
The design and development of an economical, accident tolerant fuel (ATF) for use in the current lig...
The recent prioritization on development of nuclear fuels with enhanced accident tolerance has led t...
Nuclear energy continues to play a large role in the energy landscape of the world. Of particular in...
The Department of Energy’s Office of Nuclear Energy (DOE-NE) has emphasized the need for technologic...
Uranium nitride (UN) has been proposed as an accident tolerant fuel due to its enhanced thermal prop...
Uranium nitride (UN) is considered as nuclear reactor fuel because of, among other reasons, its high...
Nuclear fuel performance under normal operating conditions and extreme accident conditions have stud...
To avoid detrimental environmental impacts from climate change, the world community needs to push fo...
Due to the Fukushima nuclear accident there has been a large effort by several countries to develop ...
After the nuclear accident at Fukushima-Daiichi in 2011, a search for alternatives to a current fuel...