Dissolution of high burn-up spent nuclear fuel at high-pH

Author:

Iglesias Luis1,Kokinda Jakub1,Serrano-Purroy Daniel2,Martínez-Torrents Albert1,Casas Ignasi3,de Pablo Joan13,Clarens Frederic1,Giménez Javier3ORCID

Affiliation:

1. Eurecat, Centre Tecnològic de Catalunya – Manresa , Plaça de la Ciència *2, 08243 , Manresa , Spain

2. European Commission, Joint Research Centre (JRC) , Karlsruhe , Germany

3. Department of Chemical Engineering , Universitat Politècnica de Catalunya – Barcelona Tech , Eduard Maristany 14, 08019 , Barcelona , Catalonia , Spain

Abstract

Abstract The release of radionuclides from high-burnup spent nuclear fuel (SNF) segments was studied at pH = 13.2 as well as the effect of the presence of calcium and silicon. The aim was to ascertain the dissolution of SNF in solutions corresponding to a high-level nuclear waste repository including concrete in different structural parts. The release of uranium at pH = 13.2 was higher than at pH = 8.4 in bicarbonate medium, while the presence of calcium resulted in a decrease of the uranium concentrations in solutions, assumed to be the consequence of the formation of a secondary solid phase such as Ca2U2O7. Caesium release was found higher at pH = 13.2 as well, but it was not influenced by the presence of Ca and Si at long term. On the other hand, actinide elements (plutonium, neptunium and americium) dissolution decreased at pH = 13.2, probably because of the formation of secondary solid phases. On the contrary, ruthenium and technetium release at pH = 13.2 was found to be much higher than the measured at lower pH, perhaps due to the higher dissolution kinetics of the metallic inclusions at such pH.

Publisher

Walter de Gruyter GmbH

Subject

Physical and Theoretical Chemistry

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