
doi: 10.2172/1034527
Hydrated metal oxides or oxyhydroxides boehmite and gibbsite that can form on spent aluminum-clad nuclear fuel assemblies during in-core and post-discharge wet storage were exposed as granular powders to gamma irradiation in a {sup 60}Co irradiator in closed laboratory test vessels with air and with argon as separate cover gases. The results show that boehmite readily evolves hydrogen with exposure up to a dose of 1.8 x 10{sup 8} rad, the maximum tested, in both a full-dried and moist condition of the powder, whereas only a very small measurable quantity of hydrogen was generated from the granular powder of gibbsite. Specific information on the test setup, sample characteristics, sample preparation, irradiation, and gas analysis are described.
Wet Storage, Air, Oxides, 11 Nuclear Fuel Cycle And Fuel Materials, Nuclear Fuels, Aluminium, Irradiation, Gas Analysis, Gibbsite, Gases, Argon, Sample Preparation, Hydrogen
Wet Storage, Air, Oxides, 11 Nuclear Fuel Cycle And Fuel Materials, Nuclear Fuels, Aluminium, Irradiation, Gas Analysis, Gibbsite, Gases, Argon, Sample Preparation, Hydrogen
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