In case of a severe accident on a Light Water Reactor (LWR), iodine may be released into the environment, impacting significantly the source term. The understanding of the iodine release from the damaged reactor core and its transport in the different parts of the reactor up to the reactor containment, is thus a major issue. The analysis of the Phébus-FP tests brought the hypothesis that iodine keeps a gaseous form up to the containment due to some processes that limit the formation of caesium iodide in the reactor coolant system (RCS). The formation of caesium iodide, which is assumed to be the dominant form of iodine in the RCS, would be notably limited due to the presence of other elements reacting with caesium. An experimental study has...
In case of severe accident in a water-cooled nuclear reactor, the amount of gaseous iodine released ...
The behaviour of fission products (FPs) during a severe nuclear power plant accident has been studie...
The aim of this work was to investigate the transport of fission products inside the primary circuit...
In case of a severe accident on a Light Water Reactor (LWR), iodine may be released into the environ...
In case of a severe accident in Light Water Reactor (LWR), radioactive iodine may be released into t...
The effect of molybdenum on iodine transport in the reactor coolant system (RCS) under PWR severe ac...
The objective of this work was to examine the chemical reactions taking place on primary circuit sur...
This experimental study was a continuation of the study conducted at VTT to investigate the effects ...
In case of a severe accident in a light water reactor, iodine is one of the most important fission p...
In case of a severe accident in a nuclear reactor, radioactive iodine may be released into the envir...
In the case of a severe accident in a Light Water Reactor, the issue of late release of fission prod...
In case of a severe accident on a nuclear reactor, radioactive iodine may be released into the envir...
In case of a severe accident on a nuclear reactor, radioactive iodine may be released into the envir...
In case of a severe accident in a pressurized water reactor (PWR), iodine is one of the most importa...
In case of severe accident in a water-cooled nuclear reactor, the amount of gaseous iodine released ...
The behaviour of fission products (FPs) during a severe nuclear power plant accident has been studie...
The aim of this work was to investigate the transport of fission products inside the primary circuit...
In case of a severe accident on a Light Water Reactor (LWR), iodine may be released into the environ...
In case of a severe accident in Light Water Reactor (LWR), radioactive iodine may be released into t...
The effect of molybdenum on iodine transport in the reactor coolant system (RCS) under PWR severe ac...
The objective of this work was to examine the chemical reactions taking place on primary circuit sur...
This experimental study was a continuation of the study conducted at VTT to investigate the effects ...
In case of a severe accident in a light water reactor, iodine is one of the most important fission p...
In case of a severe accident in a nuclear reactor, radioactive iodine may be released into the envir...
In the case of a severe accident in a Light Water Reactor, the issue of late release of fission prod...
In case of a severe accident on a nuclear reactor, radioactive iodine may be released into the envir...
In case of a severe accident on a nuclear reactor, radioactive iodine may be released into the envir...
In case of a severe accident in a pressurized water reactor (PWR), iodine is one of the most importa...
In case of severe accident in a water-cooled nuclear reactor, the amount of gaseous iodine released ...
The behaviour of fission products (FPs) during a severe nuclear power plant accident has been studie...
The aim of this work was to investigate the transport of fission products inside the primary circuit...