During a severe nuclear reactor accident with air ingress, ruthenium can be released from the nuclear fuel in the form of ruthenium tetroxide. Hence, it is important to investigate how the reactor containment is able to reduce the source term of ruthenium. The aim of this work was to investigate the deposition of gaseous ruthenium tetroxide on aluminium, copper and zinc, which all appear in relatively large amounts in reactor containment. The experiments show that ruthenium tetroxide is deposited on all the metal surfaces, especially on the copper and zinc surfaces. A large deposition of ruthenium tetroxide also appeared on the relatively inert glass surfaces in the experimental set-ups. The analyses of the different surfaces, with several ...
During a severe accident several hazardous and radiotoxic fission products can be released and const...
In this project the release, transport and speciation of ruthenium in conditions simulating an air i...
In a hypothetical severe accident in a Pressurised Water Reactor (PWR), Fission Products (FPs) can b...
During a severe accident different fission products will be released from the nuclear fuel and some ...
\ua9 2016 Atomic Energy Society of Japan. All rights reserved. During a severe nuclear accident, dif...
International audienceIn the case of a hypothetical severe accident in a nuclear power plant, intera...
Volatile iodine and ruthenium species are likely to be released from the fuel during a severe nuclea...
In the case of a hypothetical severe accident in a nuclear power plant, interactions of gaseous RuO4...
During an hypothetical severe accident on a Pressurized Water Reactor (PWR), Fission-Products (FPs) ...
During a hypothetical severe accident on a nuclear Pressurized Water Reactor (PWR), the formation of...
During routine nuclear reactor operations, ruthenium will accumulate in the fuel in relatively high ...
During a severe accident several hazardous and radiotoxic fission products can be released and const...
In this project the release, transport and speciation of ruthenium in conditions simulating an air i...
In a hypothetical severe accident in a Pressurised Water Reactor (PWR), Fission Products (FPs) can b...
During a severe accident different fission products will be released from the nuclear fuel and some ...
\ua9 2016 Atomic Energy Society of Japan. All rights reserved. During a severe nuclear accident, dif...
International audienceIn the case of a hypothetical severe accident in a nuclear power plant, intera...
Volatile iodine and ruthenium species are likely to be released from the fuel during a severe nuclea...
In the case of a hypothetical severe accident in a nuclear power plant, interactions of gaseous RuO4...
During an hypothetical severe accident on a Pressurized Water Reactor (PWR), Fission-Products (FPs) ...
During a hypothetical severe accident on a nuclear Pressurized Water Reactor (PWR), the formation of...
During routine nuclear reactor operations, ruthenium will accumulate in the fuel in relatively high ...
During a severe accident several hazardous and radiotoxic fission products can be released and const...
In this project the release, transport and speciation of ruthenium in conditions simulating an air i...
In a hypothetical severe accident in a Pressurised Water Reactor (PWR), Fission Products (FPs) can b...