No CrossRef data available.
Article contents
Long-Term Radioactivity Release from Solidified High-Level Waste - Part II Parametric Study of Waste form Properties, Temperature and Time
Published online by Cambridge University Press: 21 February 2011
Extract
The computer code QTERM has been used to calculate the total released activity from a single glass block when in contact with brine in a salt dome repository as a function of: (1) waste form properties, (2) leaching mechanisms, (3) retention or precipitation of specific radionuclides in surface layers, (4) thermal history of the repository and (5) decreasing activity as a function of time.
- Type
- Research Article
- Information
- Copyright
- Copyright © Materials Research Society 1983
References
REFERENCES
1.
Altenhein, F.K., Lutze, W. and Ewing, R.C. (in press) Scientific Basis for Nuclear Waste Management, Vol. 11, Lutze, W. ed., Elsevier - North Holland, New York.Google Scholar
2.
Delisle, G. (1980) Zeitschrift der Deutschen Geologischen Gesellschaft, 131, pp. 461–484.Google Scholar
3.
Ewest, E. (1979) Scientific Basis for Nuclear Waste Management, Vol. 1, McCarthy, G.T. ed., Plenum Press, New York, pp. 161–168.Google Scholar
7.
Grambow, B. (in press) Scientific Basis for Nuclear Waste Management, Vol. 11, Lutze, W. ed., Elsevier - North Holland, New York.Google Scholar
9.
Dibble, W.E. Jr., and Tiller, W.A. (1981) Geochimica et Cosmochimica Acta, 45, pp. 79–92.Google Scholar
11.
Van Lier, J.A., De Bruyn, P.L. and Overbeck, J.Th. G. (1960) Journal of Physical Chemistry, 64, pp. 1675–1682.Google Scholar
12.
Busenberg, E. and Clemency, C.V. (1976), Geochimica et Cosmochimica Acta, 40, pp. 41–50.Google Scholar
13.
Westsik, J.H. Jr. and Peters, R.D. (1981) Scientific Basis for Nuclear Waste Management, Vol. 3, Moore, J.G. ed., Plenum Press, New York, pp. 355–362.Google Scholar
14.
Cloninger, M.O.,Cole, C.R. and Washburn, J.F. (1980) An Analysis on the Use of Engineered Barriers for Geologic Isolation of Spent Fuel in a Reference Salt Site Repository, PNL–3356/UC–70.Google Scholar
15.
Cloninger, M.O. (1981) Scientific Basis for Nuclear Waste Management, Vol. 3, Moore, J.G. ed., Plenum Press, New York, pp. 607–614.
Google Scholar
16.
Burkholder, H.C. (in press) Scientific Basis for Nuclear Waste Management, Vol. 11, Lutze, W. ed., Elsevier - North Holland, New York.Google Scholar
17.
Storck, R. (in press) Scientific Basis for Nuclear Waste Management, Vol. 11, Lutze, W. ed., Elsevier - North Holland, New York.Google Scholar
18.
Machiels, A.T. and Pescatore, C. (1981) Scientific Basis for Nuclear Waste Management, Vol. 3, Moore, J.G. ed., Plenum Press, New York, pp. 371–378.Google Scholar
19.
Macedo, P.B., Barkatt, A. and Simmons, J.H. (1982) Nuclear and Chemical Waste Management, 3, pp. 13–21.Google Scholar
20.
Pickering, S., Walker, C.T., Offermann, P. (in press) Scientific Basis for Nuclear Waste Management, Vol. II, Lutze, W. ed., Elsevier - North Holland, New York.Google Scholar
21.
Hall, A.R., Hough, A., Marples, J.A.C. (in press) Scientific Basis for Nuclear Waste Management, Vol. 11, Lutze, W. ed., Elsevier - North Holland, New York.Google Scholar
22.
Altenhein, F.K., Lutze, W., Malow, G.
Scientific Basis for Nuclear Waste Management, Vol. 3, Moore, J.G. ed., Plenum Press, New York, pp. 363–370.Google Scholar