AbstractAn in-house designed system for inductive vaporization (InVap) enables the investigation of the fission product (FP) release from irradiated fuel at temperatures up to 2300°C and under different redox conditions. Via the direct connection of the InVap device to an inductively coupled plasma mass spectrometer (ICP-MS) the on-line monitoring of the FP release is possible. Theoretically modeled and data experimentally determined on thermal treatment of irradiated fuel and release of volatile FPs (Cs, I), semi-volatile FPs (Sr, Ba, Tc, Mo, Ru) and actinides (U, Pu or Am) are discussed regarding to the nuclear fuel reprocessing technology
The behaviour and release of fission products during high-temperature annealing of irradiated UO2 sa...
AbstractThe chemistry of cesium and iodine is of main importance to quantify the radioactive release...
AbstractAerosols created by the vaporization of simulated spent nuclear fuel (simfuel) were produced...
AbstractAn in-house designed system for inductive vaporization (InVap) enables the investigation of ...
Novel reprocessing schemes and techniques are the focus of the Euratom FP7 project "Actinide Recycli...
The development of a head-end processing step for spent oxide fuel that applies to both aqueous and ...
Voloxidation is a potential head-end process used prior to aqueous or pyrochemical spent-oxide-fuel ...
In case of a severe accident in a nuclear reactor, the revaporisation of fission products (FPs) can ...
Fission product (FP) and actinide release behaviour from degraded fuel in the VERCORS RT7, HT2 and H...
AbstractChemical revaporisation or physical resuspension of fission product deposits from the primar...
Abstract –Fuel irradiation testing and post-irradiation examination are currently in progress as par...
International audienceChemical revaporisation or physical resuspension of fission product deposits f...
In this paper, a novel approach where irradiated fuel thermochemistry and gas release are coupled is...
The experiments Phébus FP FPT-0 to FPT-3 tests conducted by IRSN have produced a large quantity of d...
The identification of Fission Products (FP) release mechanism from irradiated nuclear fuels during a...
The behaviour and release of fission products during high-temperature annealing of irradiated UO2 sa...
AbstractThe chemistry of cesium and iodine is of main importance to quantify the radioactive release...
AbstractAerosols created by the vaporization of simulated spent nuclear fuel (simfuel) were produced...
AbstractAn in-house designed system for inductive vaporization (InVap) enables the investigation of ...
Novel reprocessing schemes and techniques are the focus of the Euratom FP7 project "Actinide Recycli...
The development of a head-end processing step for spent oxide fuel that applies to both aqueous and ...
Voloxidation is a potential head-end process used prior to aqueous or pyrochemical spent-oxide-fuel ...
In case of a severe accident in a nuclear reactor, the revaporisation of fission products (FPs) can ...
Fission product (FP) and actinide release behaviour from degraded fuel in the VERCORS RT7, HT2 and H...
AbstractChemical revaporisation or physical resuspension of fission product deposits from the primar...
Abstract –Fuel irradiation testing and post-irradiation examination are currently in progress as par...
International audienceChemical revaporisation or physical resuspension of fission product deposits f...
In this paper, a novel approach where irradiated fuel thermochemistry and gas release are coupled is...
The experiments Phébus FP FPT-0 to FPT-3 tests conducted by IRSN have produced a large quantity of d...
The identification of Fission Products (FP) release mechanism from irradiated nuclear fuels during a...
The behaviour and release of fission products during high-temperature annealing of irradiated UO2 sa...
AbstractThe chemistry of cesium and iodine is of main importance to quantify the radioactive release...
AbstractAerosols created by the vaporization of simulated spent nuclear fuel (simfuel) were produced...