During a severe accident several hazardous and radiotoxic fission products can be released and constitute a threat to the environment. Two of the most important fission products are iodine and ruthenium which will be accumulated after inhalation in the human body in the thyroid gland and in the respiratory organs, respectively. Experiments in this work have been performed to study the behaviour of gaseous iodine and ruthenium species in different conditions. The reaction between iodine and the air radiolysis product ozone has been investigated in different atmospheres, i.e. various concentrations of nitrogen and oxygen gas. The interaction of gaseous ruthenium tetroxide and surfaces of aluminium, copper and zinc has been examined in differe...
In this project the release, transport and speciation of ruthenium in conditions simulating an air i...
The chemistry of radiotoxic ruthenium in a severe nuclear power accident has actively been investiga...
During a severe nuclear power plant (NPP) accident, iodine is transported from damaged fuel rods thr...
During a severe accident several hazardous and radiotoxic fission products can be released and const...
Volatile iodine and ruthenium species are likely to be released from the fuel during a severe nuclea...
During a severe accident different fission products will be released from the nuclear fuel and some ...
The behaviour of fission products (FPs) during a severe nuclear power plant accident has been studie...
Ruthenium is a semi-volatile element existing as a fission product in nuclear reactor fuel that can ...
During a hypothetical severe accident on a nuclear Pressurized Water Reactor (PWR), the formation of...
Ruthenium is a semi-volatile element existing as a fission product in nuclear reactor fuel that can ...
During a nuclear accident the most important chemical elements are those forming volatile compounds ...
During a severe nuclear reactor accident with air ingress, ruthenium can be released from the nuclea...
In the event of a severe nuclear reactor accident, iodine will be released from the fuel and eventua...
\ua9 2016 Atomic Energy Society of Japan. All rights reserved. During a severe nuclear accident, dif...
The chemistry of radiotoxic ruthenium in a severe nuclear power accident has actively been investiga...
In this project the release, transport and speciation of ruthenium in conditions simulating an air i...
The chemistry of radiotoxic ruthenium in a severe nuclear power accident has actively been investiga...
During a severe nuclear power plant (NPP) accident, iodine is transported from damaged fuel rods thr...
During a severe accident several hazardous and radiotoxic fission products can be released and const...
Volatile iodine and ruthenium species are likely to be released from the fuel during a severe nuclea...
During a severe accident different fission products will be released from the nuclear fuel and some ...
The behaviour of fission products (FPs) during a severe nuclear power plant accident has been studie...
Ruthenium is a semi-volatile element existing as a fission product in nuclear reactor fuel that can ...
During a hypothetical severe accident on a nuclear Pressurized Water Reactor (PWR), the formation of...
Ruthenium is a semi-volatile element existing as a fission product in nuclear reactor fuel that can ...
During a nuclear accident the most important chemical elements are those forming volatile compounds ...
During a severe nuclear reactor accident with air ingress, ruthenium can be released from the nuclea...
In the event of a severe nuclear reactor accident, iodine will be released from the fuel and eventua...
\ua9 2016 Atomic Energy Society of Japan. All rights reserved. During a severe nuclear accident, dif...
The chemistry of radiotoxic ruthenium in a severe nuclear power accident has actively been investiga...
In this project the release, transport and speciation of ruthenium in conditions simulating an air i...
The chemistry of radiotoxic ruthenium in a severe nuclear power accident has actively been investiga...
During a severe nuclear power plant (NPP) accident, iodine is transported from damaged fuel rods thr...