For the current project to demonstrate that isotope ratio measurements can be extended to zirconium alloys used in LWR fuel assemblies we report new analyses on irradiated samples obtained from a reactor. Zirconium alloys are used for structural elements of fuel assemblies and for the fuel element cladding. This report covers new measurements done on irradiated and unirradiated zirconium alloys, Unirradiated zircaloy samples serve as reference samples and indicate starting values or natural values for the Ti isotope ratio measured. New measurements of irradiated samples include results for 3 samples provided by AREVA. New results indicate: 1. Titanium isotope ratios were measured again in unirradiated samples to obtain reference or starting...
Analysis of lanthanoid isotopic composition of pre and post-nuclear detonation materials provides in...
In support of our ongoing signatures project we present information on 3 isotopes selected for possi...
Cobalt-60 and iridium-192 sources are both generated in nuclear reactors through the irradiation of ...
The ability to determine fuel assembly burnup has important non-proliferation implications since pro...
The Isotope Ratio Method (IRM) is a technique for estimating the energy production in a fission reac...
Methods for determining the heavy element isotopic compositions and atom percent fission for reactor...
The Isotope Ratio Method (IRM) is a technique for estimating the energy or plutonium production in a...
AbstractThe correlation of the isotopic composition of uranium, plutonium, neodymium, and cesium wit...
The radionuclide inventory of materials irradiated in a reactor depends on the initial material comp...
Six uranium isotopes and fourteen fission product isotopes were calculated on a mass basis at end-of...
The isotopes of Zr with A = [90, 91, 92, 94] make up more than 97% of naturally occurring Zr and are...
International audienceA new Thermal Ionization Mass Spectrometer (TIMS) analytical procedure was dev...
The estimation of local irradiation conditions is a complex and crucial task with significant implic...
Closed nuclear fuel cycles, based on separation from spent fuel and subsequent recycling of Pu, U as...
The METAPHIX project is a collaboration between CRIEPI and JRC-ITU investigating safety and performa...
Analysis of lanthanoid isotopic composition of pre and post-nuclear detonation materials provides in...
In support of our ongoing signatures project we present information on 3 isotopes selected for possi...
Cobalt-60 and iridium-192 sources are both generated in nuclear reactors through the irradiation of ...
The ability to determine fuel assembly burnup has important non-proliferation implications since pro...
The Isotope Ratio Method (IRM) is a technique for estimating the energy production in a fission reac...
Methods for determining the heavy element isotopic compositions and atom percent fission for reactor...
The Isotope Ratio Method (IRM) is a technique for estimating the energy or plutonium production in a...
AbstractThe correlation of the isotopic composition of uranium, plutonium, neodymium, and cesium wit...
The radionuclide inventory of materials irradiated in a reactor depends on the initial material comp...
Six uranium isotopes and fourteen fission product isotopes were calculated on a mass basis at end-of...
The isotopes of Zr with A = [90, 91, 92, 94] make up more than 97% of naturally occurring Zr and are...
International audienceA new Thermal Ionization Mass Spectrometer (TIMS) analytical procedure was dev...
The estimation of local irradiation conditions is a complex and crucial task with significant implic...
Closed nuclear fuel cycles, based on separation from spent fuel and subsequent recycling of Pu, U as...
The METAPHIX project is a collaboration between CRIEPI and JRC-ITU investigating safety and performa...
Analysis of lanthanoid isotopic composition of pre and post-nuclear detonation materials provides in...
In support of our ongoing signatures project we present information on 3 isotopes selected for possi...
Cobalt-60 and iridium-192 sources are both generated in nuclear reactors through the irradiation of ...