An irradiation experiment on uranium–plutonium–zirconium (U–Pu–Zr) alloys containing 5 wt% or less minor actinides (MAs) and rare earths was carried out in the Ph´enix fast reactor. The isotope compositions of the fuel alloys irradiated for 120 and 360 equivalent full-power days (EFPDs) were chemically analysed by inductively coupled plasma–mass spectrometry after 3.3–5.3 years of cooling. The results of chemical analysis indicated that the discharged burnups of the fuel alloys irradiated for 120 and 360 EFPDs were 2.1–2.5 and 5.3–6.4 at%, respectively. The changes in the isotopic abundances of plutonium, americium, and curium during the irradiation experiment were assessed to discuss the transmutation performance of MA nuclides added to U–...
Advanced nuclear reactors and closed nuclear fuel cycles are developed worldwide as a key component ...
In the heterogeneous minor actinides transmutation approach, the nuclei to be transmuted are loaded ...
International audienceIn the heterogeneous minor actinides transmutation approach, the nuclei to be ...
Minor actinide (MA)-bearing metal fuels were irradiated in the fast reactor Phénix to understand the...
The METAPHIX programme is a collaboration between the Central Research Institute of Electric Power I...
AbstractThe METAPHIX programme is a collaboration between the Central Research Institute of Electric...
A worldwide objective in nuclear energy industry is the reduction of long-lived radio toxicity and h...
Fast reactor metal fuels of U-Pu-Zr alloy containing minor actinides (MAs) Np, Am and Cm and rare-ea...
Closed nuclear fuel cycles, based on separation from spent fuel and subsequent recycling of Pu, U as...
Fast reactor metal fuels containing minor actinides (MAs) Np, Am and Cm and rare earths (REs) are be...
International audienceIn Fast Reactor systems the heterogeneous minor actinides transmutation is a p...
Fast reactor metal fuels containing minor actinides (MAs) Np, Am and Cm and rare earths (REs) are be...
Advanced nuclear reactors and closed nuclear fuel cycles are important option to achieve sustainable...
International audienceIn Fast Reactor systems the heterogeneous minor actinides transmutation is a p...
The United States Department of Energy, seeks to develop and demonstrate the technologies needed to ...
Advanced nuclear reactors and closed nuclear fuel cycles are developed worldwide as a key component ...
In the heterogeneous minor actinides transmutation approach, the nuclei to be transmuted are loaded ...
International audienceIn the heterogeneous minor actinides transmutation approach, the nuclei to be ...
Minor actinide (MA)-bearing metal fuels were irradiated in the fast reactor Phénix to understand the...
The METAPHIX programme is a collaboration between the Central Research Institute of Electric Power I...
AbstractThe METAPHIX programme is a collaboration between the Central Research Institute of Electric...
A worldwide objective in nuclear energy industry is the reduction of long-lived radio toxicity and h...
Fast reactor metal fuels of U-Pu-Zr alloy containing minor actinides (MAs) Np, Am and Cm and rare-ea...
Closed nuclear fuel cycles, based on separation from spent fuel and subsequent recycling of Pu, U as...
Fast reactor metal fuels containing minor actinides (MAs) Np, Am and Cm and rare earths (REs) are be...
International audienceIn Fast Reactor systems the heterogeneous minor actinides transmutation is a p...
Fast reactor metal fuels containing minor actinides (MAs) Np, Am and Cm and rare earths (REs) are be...
Advanced nuclear reactors and closed nuclear fuel cycles are important option to achieve sustainable...
International audienceIn Fast Reactor systems the heterogeneous minor actinides transmutation is a p...
The United States Department of Energy, seeks to develop and demonstrate the technologies needed to ...
Advanced nuclear reactors and closed nuclear fuel cycles are developed worldwide as a key component ...
In the heterogeneous minor actinides transmutation approach, the nuclei to be transmuted are loaded ...
International audienceIn the heterogeneous minor actinides transmutation approach, the nuclei to be ...