Coupled mixed-potential and thermal-hydraulics model for long-term corrosion of copper canisters in deep geological repository

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Abstract

Canister performance is a major issue for constructing reliable deep geological repositories for storing spent nuclear fuels, and corrosion resistance is main the factor determining canister durability. We developed a 2-D multiphysics model, which can predict both the corrosion rate and potential, for simulating copper canister corrosion in deep geological repositories. We found that canisters corroded through the long-cell action in a deep geological repository, the corrosion was quite limited, and the overall canister durability was around 1.7 million years. Our results demonstrated that copper exhibits sufficient corrosion resistance and that long-cell action-based corrosion cannot severely damage copper canisters.

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Chae, N., Park, S., Seo, S., Foster, R. I., Ju, H., & Choi, S. (2023). Coupled mixed-potential and thermal-hydraulics model for long-term corrosion of copper canisters in deep geological repository. Npj Materials Degradation, 7(1). https://doi.org/10.1038/s41529-023-00345-6

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