Affiliation:
1. Institut de Radioprotection et de Sûreté Nucléaire, DPAM, SEMIC, LETR&LIMSI, Saint-Paul-Lez-Durance Cedex, Frankreich
Abstract
Abstract
During a hypothetical nuclear power plant accident, fission products may be released from the fuel matrix and then reach the containment building and the environment. Ruthenium is a very hazardous fission product that can be highly and rapidly released in some accident scenarios. The impact of the atmosphere redox properties, temperature, and fuel burn-up on the ruthenium release is discussed. In order to improve the evaluation of the radiological impact by accident codes, a model of the ruthenium release from fuel is proposed using thermodynamic equilibrium calculations. In addition, a model of fuel oxidation under air is described. Finally, these models have been integrated in the ASTEC accident code and validation calculations have been performed on several experimental tests.
Subject
Physical and Theoretical Chemistry
Cited by
17 articles.
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