Search results for "severe accident"

showing 2 items of 2 documents

Analytical measurements of fission products during a severe nuclear accident

2018

The Fukushima accident emphasized the fact that ways to monitor in real time the evolution of a nuclear reactor during a severe accident remain to be developed. No fission products were monitored during twelve days; only dose rates were measured, which is not sufficient to carry out an online diagnosis of the event. The first measurements were announced with little reliability for low volatile fission products. In order to improve the safety of nuclear plants and minimize the industrial, ecological and health consequences of a severe accident, it is necessary to develop new reliable measurement systems, operating at the earliest and closest to the emission source of fission products. Throug…

Xenon010504 meteorology & atmospheric sciencesQC1-999Nuclear engineeringFission productsNuclear plant01 natural sciences7. Clean energyRutheniumsevere accidentlaw.inventionlaw0103 physical sciencesfission productsrutheniumSevere accidentkrypton0105 earth and related environmental sciencesFission products010304 chemical physicsHealth consequencesiodinePhysicsKryptonGénéralitésNuclear reactorMolecular spectroscopyxenonAccident managementNuclear reactor coreContainment13. Climate actionmolecular spectroscopyEnvironmental scienceDose rateIodineEPJ Web of Conferences
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On-line measurements of RuO$_4$ during a PWR severe accident

2015

International audience; After the Fukushima accident, it became essential to have a way to monitor in real time the evolution of a nuclear reactor during a severe accident, in order to react efficiently and minimize the industrial, ecological and health consequences of the accident. Among gaseous fission products, the tetroxide of ruthenium RuO$_4$ is of prime importance since it has a significant radiological impact. Ruthenium is a low volatile fission product but in case of the rupture of the lower head by the molten corium, the air entering into the vessel oxidizes Ru into gaseous RuO$_4$, which is not trapped by the Filtered Containment Venting Systems. To monitor the presence of RuO$_4…

[PHYS.NUCL] Physics [physics]/Nuclear Theory [nucl-th][PHYS.NUCL]Physics [physics]/Nuclear Theory [nucl-th][PHYS.NEXP] Physics [physics]/Nuclear Experiment [nucl-ex]TetroxideHigh resolution FTIR spectroscopyFission product[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]Severe accidentRuthenium
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