Dihydrogen production is a critical issue for the current management of nuclear wastes. One potential source of hydrogen generation is the radiolysis of hydrated mineral phases encountered in the nuclear waste transportation and storage casks. We chose to study aluminum hydroxide (Al(OH)3) (Bayerite) and oxyhydroxides (AlOOH) (Boehmite) as model compounds. The determination of molecular hydrogen production was evaluated with respect to structure and particle size at room temperature and after annealing. In order to have a better understanding of the mechanisms and to identify the precursors of molecular hydrogen, we studied the irradiation defects and their stabilities using Electron Paramagnetic Resonance (EPR). The effect of adsorbed wate...
International audienceThe radiolysis of nanosized Al(OH) 3 and AlOOH has been examined. Irradiations...
International audienceThe radiolysis of nanosized Al(OH) 3 and AlOOH has been examined. Irradiations...
International audienceThe radiolysis of nanosized Al(OH) 3 and AlOOH has been examined. Irradiations...
Dihydrogen production is a critical issue for the current management of nuclear wastes. One potentia...
Dihydrogen production is a critical issue for the current management of nuclear wastes. One potentia...
Dihydrogen production is a critical issue for the current management of nuclear wastes. One potentia...
Dihydrogen production is a critical issue for the current management of nuclear wastes. One potentia...
Dihydrogen production is a critical issue for the current management of nuclear wastes. One potentia...
Dans le cadre de l’entreposage et du stockage des colis de déchets nucléaires et du transport de com...
Hydrogen generation from materials in nuclear materials storage is of critical interest due to the p...
International audienceRadiation-catalysis is a well-known process leading to H2 production through r...
International audienceRadiation-catalysis is a well-known process leading to H2 production through r...
International audienceRadiation-catalysis is a well-known process leading to H2 production through r...
Dihydrogen (H2) production via irradiation of zeolite–water mixtures was studied to investigate the ...
Hydrated metal oxides or oxyhydroxides boehmite and gibbsite that can form on spent aluminum-clad nu...
International audienceThe radiolysis of nanosized Al(OH) 3 and AlOOH has been examined. Irradiations...
International audienceThe radiolysis of nanosized Al(OH) 3 and AlOOH has been examined. Irradiations...
International audienceThe radiolysis of nanosized Al(OH) 3 and AlOOH has been examined. Irradiations...
Dihydrogen production is a critical issue for the current management of nuclear wastes. One potentia...
Dihydrogen production is a critical issue for the current management of nuclear wastes. One potentia...
Dihydrogen production is a critical issue for the current management of nuclear wastes. One potentia...
Dihydrogen production is a critical issue for the current management of nuclear wastes. One potentia...
Dihydrogen production is a critical issue for the current management of nuclear wastes. One potentia...
Dans le cadre de l’entreposage et du stockage des colis de déchets nucléaires et du transport de com...
Hydrogen generation from materials in nuclear materials storage is of critical interest due to the p...
International audienceRadiation-catalysis is a well-known process leading to H2 production through r...
International audienceRadiation-catalysis is a well-known process leading to H2 production through r...
International audienceRadiation-catalysis is a well-known process leading to H2 production through r...
Dihydrogen (H2) production via irradiation of zeolite–water mixtures was studied to investigate the ...
Hydrated metal oxides or oxyhydroxides boehmite and gibbsite that can form on spent aluminum-clad nu...
International audienceThe radiolysis of nanosized Al(OH) 3 and AlOOH has been examined. Irradiations...
International audienceThe radiolysis of nanosized Al(OH) 3 and AlOOH has been examined. Irradiations...
International audienceThe radiolysis of nanosized Al(OH) 3 and AlOOH has been examined. Irradiations...