References
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- “Technical Bases for Estimating Fission Product Behavior During LWR Accidents,” NUREG-0772, U.S. Nuclear Regulatory Commission (1981); see also background material in document NUREG/CR 2507.
- J. BELLE, A. B. AUSKERN, W. A. BOSTROM and F. S. SUSKO, “Diffusion Kinetics in Uranium Dioxide,” Reactivity of Solids, p. 452, J. H. DE BOER, Ed., Elsevier Publishing Company, Amsterdam (1961).
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- R. HAUL, D. JUST and G. DUEMBGEN, “Sauerstoffdiffusion in Oxyden,” Reactivity of Solids, p. 65, J. H. DE BOER, Ed., Elsevier Publishing Company, Amsterdam (1961).
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- D. CUB1CCIOTTI, “A Model for Release of Fission Gases and Volatile Products from Irradiated UO; in Steam Environment,” Nucl. Technol., 53, 5 (1981).
- D. R. OLANDER, “Fundamental Aspects of Nuclear Reactor Fuel Elements,” pp. 152 and 183, U.S. Department of Energy Technical Information Center (1976); these data strictly refer to mixed-oxide fuel.
- P. G. SHEWMON, Diffusion in Solids, Secs. 2-5, McGraw-Hill Book Company, Inc., New York (1963).
- M. O. TUCKER and R. J. WHITE, “The Release of Unstable Fission Products from UO, During Irradiation,” J. Nucl. Mater., 87, 1 (1979).
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- C. A. FRISKNEY and J. A. TURNBULL, “The Characteristics of Fission Gas Release from Uranium Dioxide During Irradiation,” J. Nucl. Mater., 79, 184 (1979).
- D. R. OLANDER, “Fundamental Aspects of Nuclear Reactor Fuel Elements,” p. 164, U.S. Department of Energy Technical Information Center (1976).
- H. BARTEN, KEMA Laboratories, Personal Communication (1983).
- Handbook of Chemistry and Physics, 66th ed., p. FI80, CRC Press (1982).
- H. ALBRECHT and H. WILD, “Investigation of Fission Product Release by Annealing and Melting of LWR Fuel Pins in Air and Steam,” ANS/ENS Meeting on Reactor Safety Aspects of Fuel Behavior, Sun Valley, Idaho (1981). “
- LANDOLT-BOERNSTEIN, Atom- und Molekularphysik, 2, 27, Berlin (1951).