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Technical Paper

Plutonium Denaturing by 238Pu

Pages 53-73 | Published online: 10 Apr 2017

REFERENCES

  • A. SHMELEV and G. KULIKOV, “Some Physical Aspects of Plutonium Proliferation Resistance,” presented at 1st Int. Science and Technology Forum on Protected Plutonium Utilization for Peace and Sustainable Property, Tokyo Institute of Technology, Japan, March 1–4, 2004.
  • A. deVOLPI, “Proliferation,” Plutonium and Policy, Pergamon Press (1979).
  • W. SEIFRITZ, Nukleare Sprengkörper—Bedrohung der Energieversorgung für die Menschheit, Karl Thiemig, München, Germany (1984).
  • G. KESSLER et al., “Moderne Strategien zur Beseitigung von Plutonium,” Atomwirtschaft, 46 (2001).
  • G. KESSLER, “Requirements for Nuclear Energy in the 21st Century,” Prog. Nucl. Energy, 40, 3–4, 309 (2002).
  • C. MARK, “Explosive Properties of Reactor Grade Plutonium,” Sci. Global Security, 4, 111 (1993).
  • C. BROEDERS, “Investigations Related to the Build-Up of Transurania in Pressurized Water Reactors,” FZKA 5784, Forschungszentrum 9 Karlsruhe (1996).
  • C. BROEDERS and G. KESSLER, “Fuel Cycle Options for the Generation of Denatured Plutonium,” Nucl. Sci. Eng. (to be published).
  • O. CONOCAR et al., “Promising Pyrochemical Actinide/Lanthanide Separation Processes Using Aluminum,” Nucl. Sci. Eng., 153, 253 (2006).
  • J. J. LAIDLER et al., “Development of Pyropressing Technology,” Prog. Nucl. Energy, 31, 102, 131 (1997).
  • R. HERBIG et al., “Vibrocompacted Fuel for the Liquid Metal Reactor BOR 60,” J. Nucl. Mater., 204, 93 (1999).
  • C. D. HEISING-GOODMAN, “An Evaluation of the Plutonium Denaturing Concept in an Effective Safeguards Method,” Nucl. Technol., 50, 242 (1980).
  • S. FETTER et al., “Detecting Nuclear Warheads,” Sci. Global Security, 1, 225 (1990).
  • M. SAITO et al., “Innovative Nuclear Energy Systems for Inherently Protected Plutonium Production,” presented at Int. Conf. Innovative Technologies for Nuclear Fuel Cycles and Nuclear Power, Vienna, Austria, June 23–26, 2003.
  • Y. RONEN and Y. KIMHI, “A Nonproliferating Nuclear Fuel for Light Water Reactors,” Nucl. Technol., 96, 133 (1991).
  • D. O. CAMPBELL and E. M. GIFT, “Proliferation Resistant Nuclear Fuel Cycles,” ORNL/TM-6392, Oak Ridge National Laboratory (1978).
  • J. V. MASSEY and A. SCHNEIDER, “The Role of Plutonium-238 in Nuclear Fuel Cycles,” Nucl. Technol., 56, 55 (1982).
  • E. SHWAGERAUS et al., “Use of Thorium for Transmutation of Plutonium and Minor Actinides in PWRs,” Nucl. Technol., 147, 53 (2004).
  • R. RHODES, The Making of the Atomic Bomb, Simon & Schuster, New York (1988).
  • R. RHODES, Dark Sun, The Making of the Hydrogen Bomb, Simon & Schuster, New York (1995).
  • Th. B. COCHRAN et al., Nuclear Weapons Databook, Vols. 1 and 2. Ballinger Publishing Company, Cambridge, Massachusetts (1987).
  • P. PODWIG, Russian Stratetic Nuclear Forces, MIT Press, Cambridge, Massachusetts (2004).
  • B. M. BLECHMAN and M. R. MOORE, “A Nuclear-Weapon-Free Zone in Europe,” Sci. Am., 248, 4 (Apr. 1983).
  • J. ZINN and C. L. MADER, “Thermal Initiation of Explosives,” J. Appl. Phys., 31, 2 (1960).
  • B. M. DOBRATZ, “Properties of Chemical Explosives and Explosive Simulants,” UCRL-51319/Rev. 1, Lawrence Livermore National Laboratory (Dec. 1972).
  • C. L. MADER et al., Los Alamos Explosion Performance Data, University of California Press, Berkeley, California (1982).
  • T. R. GIBBS and A. POPOLATO, LASL Explosive Property Data, University of California Press, Berkeley, California (1981).
  • T. YUGE, “Experiments on Heat Transfer from Spheres Including Combined Natural Convection and Forced Convection,” J. Heat Transfer, 82, 214 (1960).
  • H. KÜCHLING, Taschenbuch der Physik, Verlag Hani Deutsch, Frankfurt, Germany (1982).
  • H. BLANK and R. LINDNER, Proc. 5th Int. Conf. Plutonium and Other Actinides, Baden-Baden, Germany, September 1975.
  • Reactor Handbook: Vol. 1, Materials, Interscience Publishers, New York (1960).
  • K. KÄMPF, “Allgemeine Spaltgleichung für den Wärmedurchgang Brennstoff-Hülle in Kernbrennelementen mit Tablettenbrennstoff,” KfK 604, Kernforschungszentrum Karlsruhe (Juni 1967).
  • H. KÄMPF and G. KARSTEN, “Effects of Different Types of Void Volumes on the Radial Temperature Distribution of Fuel Pins,” Nucl. Applications Technol., 9 (Sep. 1970).
  • L. D. NOBLE et al., “Results of Zero Power Experiments,” Appendix VII, p. 215, GEAP 13588, General Electric Company (Mar. 1970).
  • R. L. GARWIN: “Reactor-Grade Plutonium Can Be Used to Make Powerful and Reliable Nuclear Weapons: Separated Plutonium in the Fuel Cycle Must Be Protected As If It Were Nuclear Weapons,” available on the Internet at http://www.tas.org.rlg. (Aug. 26, 1998).

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