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The Long-Term Performance of Nuclear Waste Forms: Natural Materials - Three Case Studies

Published online by Cambridge University Press:  01 January 1992

Rodney C. Ewing*
Affiliation:
Department of Earth & Planetary Sciences University of New Mexico, Albuquerque, New Mexico 87131, USA
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Abstract

Natural materials may be used to advantage in the evaluation of the long-term performance of nuclear waste forms. Three case studies are presented: (I) radiation effects in ceramic waste forms; (II) corrosion products of U02 under oxic conditions; (III) corrosion rate of nuclear waste glasses. For each case, a natural phase which is structurally and chemically analogous to the waste form is identified and used to evaluate the long-term behavior of a nuclear waste form. Short-term experimental results are compared to the observations made of analogous natural phases. The three case studies illustrate that results may range between providing fundamental data needed for the long-term evaluation of a waste form to only providing qualitative data of limited use. Although in the most rigorous view the long-term behaviour of a phase cannot be predicted, the correspondence between short-term experimental results and observations made of natural phases provides confidence in the “predicted” behavior of the waste form. The strength of this approach rests with the degree to which a mechanistic understanding of the phenomenon is attained.

Type
Research Article
Copyright
Copyright © Materials Research Society 1993

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References

REFERENCES

[1] Ewing, R.C., Proceedings of the Third International Conference on High Level Radioactive Waste Management, ed. Tulenko, James S. (American Nuclear Society, 1992) pp. 1429-1436.Google Scholar
[2] Ewing, R.C., in Scientific Basis for Nuclear Waste Management, edited by McCarthy, G.J., (Plenum Press, New York, 1979), pp. 57 - 68.Google Scholar
[3] ASTM Standard C 1174 - 91, Standard Practice for Prediction of the Long-Term Behavior of Waste Package Materials Including Waste Forms Used in the Geologic Disposal of High-Level Nuclear Waste (1991), 14 pagesGoogle Scholar
[4] Goldich, S.S., Journal of Geology 46, 74 (1938).Google Scholar
[5] Ewing, R.C., Chakoumakos, B.C., Lumpkin, G.R., Murakami, T., Greegor, R.B. and Lytle, F.W., Nuclear Instruments and Methods in Physics Research B32, 487 (1988).Google Scholar
[6] Jercinovic, M.J. and Ewing, R.C., SKB Technical Report 88-01: Basaltic glasses from Iceland and the deep sea: Natural analogues to borosilicate nuclear wasteform glass.(Swedish Nuclear Fuel and Waste Management Co., Stockholm, 1988) 221 pages.Google Scholar
[7] Finch, R.J. and Ewing, R.C., J. Nucl. Mat. 190 133 (1992).Google Scholar
[8] Murphy, W., Technology Today XIII, 16 (1992).Google Scholar
[9] Grambow, B., Jercinovic, M.J., Ewing, R.C., Byers, D.C., in Scientific Basis for Nuclear Waste Management IX edited by Werme, L. (Mater. Res. Soc. Proc. 50, Pittsburgh, PA, 1986) pp. 263-272.Google Scholar
[10] Grambow, B., in SKB Technical Report 91-59: Proceedings from the technical workshop on near-field performance assessment for high-level waste held in Madrid October 15-17, 1990 edited by Sellin, P., Apted, M. and Gago, J. (Swedish Nuclear Fuel and Waste Management Co., Stockholm) p. 25.Google Scholar
[11] Ewing, R.C. and Lutze, W. (1991) High-level nuclear waste immobilization with ceramics. Ceramics International. 17, 287293 Google Scholar
[12] Lutze, W. and Ewing, R.C., Radioactive Waste Forms for the Future (North-Holland Physics Publishing, Amsterdam, Netherlands, 1988) pp. 699-740.Google Scholar
[13] Weber, W.J., (1991) Journal of the Minerals, Metals and Materials Society 43, 35.Google Scholar
[141 Ewing, R.C. and Lutze, W., Ceramic Transactions 9, 33 (1990).Google Scholar
[15] Murakami, T., Chakoumakos, B.C., Ewing, R.C., Lumpkin, G.R. and Weber, W.J., American Mineralogist 76, 1510 (1991).Google Scholar
[16] Weber, W.J., J. Mater. Res. 5, 2687 (1990).Google Scholar
[17] Crawford, J.H. and Wittels, M.C., in Proceedings of International Conference on Peaceful Uses of Atomic Energy, (United Nations, New York, 1956) 7, pp. 654-665.Google Scholar
[18] Holland, H.D. and Gottfried, D., Acta Crystallographica 8, 291 (1955).Google Scholar
[19] SKB Technical Report 92-02, Final Disposal of Spent Nuclear Fuel. Importance of the Bedrock for Safety (1991) pp. 15-28.Google Scholar
[20] Grambow, B., Werme, L.O., Forsyth, R.S., Bruno, J., in Scientific Basis for Nuclear Waste Management XIIL edited by Oversby, V.M. and Brown, P.W., (Mater. Res. Soc. Proc. 176, Pittsburgh, PA, 1990) pp. 465-474.Google Scholar
[21] Ewing, R.C., editor, Journal of Nuclear Materials (special issue on nuclear waste forms) 190 (1992) 347 pages.Google Scholar
[22] Wronkiewicz, D.J., Bates, J.K., Gerding, T.J., Veleckis, E., Tani, B.S., J. Nucl. Mat. 190, 107 (1992).Google Scholar
[23] Janeczek, J. and Ewing, R.C., J. Nucl. Mat. 190, 128 (1992).Google Scholar
[24] Finch, R.J. and Ewing, R.C., SKB Technical Report 91-15, Uraninite alteration in an oxidizing environment and its relevance to the disposal of spent nuclear fuel (Swedish Nuclear Fuel and Waste Management Co., Stockholm, 1991) 134 pages.Google Scholar
[25] Murphy, W.M. and Pearcy, E.C., in Scientific Basis for Nuclear Waste Management XV. edited by Sombret, C.G., (Mater. Res. Soc. Proc. 257, Pittsburgh, PA, 1986) pp. 521-527.Google Scholar
[26] Isobe, H., Murakami, T. and Ewing, R.C., J. Nucl. Mat. 190, 174 (1992).Google Scholar
[27] Leslie, B.W., Pearcy, E.C. and Prikryl, J.D., in Scientific Basis for Nuclear Waste Management XVI, edited by Interrante, C.G. and Pabalan, R. (Mater. Res. Soc. Proc., in press) this volume.Google Scholar
[28] Russell, B., The Art of Philosophizing and Other Essays (Rowman & Allanheld, Totowa, New Jersey, 1987) p. 37-76.Google Scholar
[29] Lutze, W., Malow, G., Ewing, R.C., Jercinovic, M.J. and Keil, K., Nature 314, 252 (1985).Google Scholar
[30] Ewing, R.C. and Jercinovic, M.J., in Scientific Basis for Nuclear Waste Management X, edited by Bates, J.K. and Seefeldt, W.B., (Mater. Res. Soc. Proc. 84, Pittsburgh, PA, 1987) pp. 67-83.Google Scholar