Key natural analogue input required to build a safety case for direct disposal of spent nuclear fuel in Japan

Author:

McKinley Ian G.,Kawamura Hideki,Hardie Susie M. L.,Klein Elizaveta,Beattie Tara M.

Publisher

Springer Science and Business Media LLC

Subject

Geology

Reference27 articles.

1. Akagawa, F., Yoshida, H., Yogo, S., & Yamomoto, K. (2006). Redox front formation in fractured crystalline rock: an analogue of matrix diffusion in an oxidizing front along water-conducting fractures. Geochemistry: Exploration Environment, Analysis, 6, 49–56.

2. Alexander, W.R. (ed) (1994) A natural analogue study of cement buffered, hyperalkaline groundwaters and their interaction with a repository host rock I: definition of source terms. Nagra Technical Report, NTB 91-10. National Cooperative for the Disposal of Radioactive Waste (Nagra), Wettingen.

3. Alexander, W.R., Reijonen, H.M., McKinley, I.G. (2015). Natural analogues: studies of geological processes relevant to radioactive waste disposal in deep geological repositories. Swiss Journal of Geosciences, 108. doi:10.1007/s00015-015-0187-y.

4. Cabral, A. R., Tsikos, H., Muramatsu, Y., & Sekiya, T. (2011). Iodine and bromine contents in the Palaeoproterozoic Hotazel iron formation, Transvaal Supergroup, South Africa: a reconnaissance study. Chemie der Erde Geochemistry, 71, 297–301.

5. Couture, R. A., & Seitz, M. G. (1983). Sorption of anions of iodine by iron oxides and kaolinite. Nuclear Chemical Waste Management, 4, 301–306.

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