Nitric Acid Concentration Dependence of Dicesium Plutonium(IV) Nitrate Formation during Solution Growth of Uranyl Nitrate Hexahydrate

Author:

Nakahara Masaumi12,Kaji Naoya12,Yano Kimihiko12,Shibata Atsuhiro12,Takeuchi Masayuki12,Okano Masanori1,Kuno Takehiko1

Affiliation:

1. Nuclear Fuel Cycle Engineering Laboratories, Japan Atomic Energy Agency

2. Advanced Nuclear System Research and Development Directorate, Japan Atomic Energy Agency

Publisher

Society of Chemical Engineers, Japan

Subject

General Chemical Engineering,General Chemistry

Reference7 articles.

1. Anderson, H. H.; “Alkali Plutonium(IV) Nitrates,” The Transuranium Elements, G. T. Seaborg, J. J. Katz and W. M. Manning eds.; National Nuclear Energy Series IV, vol. 14B, pp. 964–967, McGraw-Hill, New York, U.S.A. (1949)

2. Ebert, K., E. Henrich, R. Stahl and U. Bauder; “A Continuous Crystallization Process for Uranium and Plutonium Refinement,” Proc. 2nd Int. Conf. Separation Science & Technology, pp. 346–352, Paper No. S5b, Hamilton, Canada (1989)

3. Hart, R. G. and G. O. Morris; “Crystallization Temperatures of Uranyl Nitrate–Nitric Acid Solutions,” Progress in Nuclear Energy, F. Bruce ed., Series 3, Process Chemistry, vol. 2, pp. 544–545, Pergamon Press., New York, U.S.A. (1958)

4. Influence of nitric acid and plutonium concentrations in dissolver solution of mixed oxide fuel on decontamination factors for uranyl nitrate hexahydrate crystal

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