Characterisation and heat treatment of chloride-contaminated and humidified PuO2 samples
Autor: | Jeff Hobbs, Ian A. Vatter, Robin J. Taylor, Carolyn I. Pearce, Howard E. Sims, Catherine Campbell, Kevin J. Webb, Hannah Colledge, Colin Gregson, Helen Steele, Francis R. Livens, Nikolas Kaltsoyannis, Sophie Sutherland-Harper, Mark Sarsfield, Robin Orr, M. J. Carrott, Louise Walton |
---|---|
Rok vydání: | 2018 |
Předmět: |
Nuclear and High Energy Physics
Chemistry Inorganic chemistry 02 engineering and technology Thermal treatment 021001 nanoscience & nanotechnology 01 natural sciences Chloride 010305 fluids & plasmas chemistry.chemical_compound Polyvinyl chloride Adsorption Nuclear Energy and Engineering Desorption Specific surface area 0103 physical sciences medicine General Materials Science Relative humidity 0210 nano-technology Hydrogen chloride medicine.drug |
Zdroj: | Journal of Nuclear Materials. 509:654-666 |
ISSN: | 0022-3115 |
DOI: | 10.1016/j.jnucmat.2018.07.031 |
Popis: | To mimic the reactions that have occurred between plutonium dioxide (PuO2) and degraded polyvinyl chloride during prolonged storage, batches of PuO2 powders with varying specific surface area (4–38 m2 g−1) were exposed to dry hydrogen chloride gas forming a surface-sorbed exchangeable chloride species that was readily leached by dilute caustic solution. One batch was also humidified under a 95% relative humidity atmosphere. Heat treatment at temperatures between 100 and 950 °C steadily reduced the leachable chloride content at least when the initial leachable chloride surface coverage was calculated to be > 0.5 monolayer (ML). Variations between samples are attributed to differences in surface area as well as production route and period of interim storage in air or humidified atmospheres. The data are consistent with surface species and reactions proposed in the literature for HCl adsorption on to TiO2. This indicates that it is interactions between hydrogen chloride/chloride and water/hydroxyl species on the PuO2 surface that are key to understanding the behaviour of these materials when heated in a furnace. These data will inform the design of a future thermal stabilisation process for chloride-contaminated PuO2. |
Databáze: | OpenAIRE |
Externí odkaz: |