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ORIGINAL PAPER

Kinetic Studies on Dissolution of UO2 Powders in Acid Solutions by Using Cerium(IV) or Chlorine Dioxide as Oxidants

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Pages 152-156 | Received 28 Aug 1995, Published online: 15 Mar 2012

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Noriko ASANUMA, Masayuki HARADA, Yasuhisa IKEDA & Hiroshi TOMIYASU. (2001) New Approach to the Nuclear Fuel Reprocessing in Non-acidic Aqueous Solutions. Journal of Nuclear Science and Technology 38:10, pages 866-871.
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Noriko ASANUMA, Hiroshi TOMIYASU, Masayuki HARADA, Yasuhisa IKEDA & Shinichi HASEGAWA. (2000) Anodic Dissolution of UO2 in Aqueous Alkaline Solutions. Journal of Nuclear Science and Technology 37:5, pages 486-488.
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Yasuhisa IKEDA, Yoshiyuki YASUIKE, Kenji NISHIMURA, Shinichi HASEGAWA, Chris MASON, Richard BUSH & Yoichi TAKASHIMA. (1999) Dissolution Behavior of Pulverized Irradiated Fuels in Nitric Acid Solutions. Journal of Nuclear Science and Technology 36:4, pages 358-363.
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Yuichiro Asano, Noriko Asanuma, Toshihiko Ito, Makoto Kataoka, Shinya Fujino, Tomoo Yamamura, Wataru Sugiyama, Hiroshi Tomiyasu, Kunihiko Mizumachi, Yasuhisa Ikeda, Yukio Wada & Masami Asou. (1997) Study on a Nuclear Fuel Reprocessing System Based on the Precipitation Method in Mild Aqueous Solutions. Nuclear Technology 120:3, pages 198-210.
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Articles from other publishers (4)

N. Desigan, Elizabeth Augustine, Remya Murali, N.K. Pandey, U. Kamachi Mudali, R. Natarajan & J.B. Joshi. (2015) Dissolution kinetics of Indian PHWR natural UO2 fuel pellets in nitric acid – Effect of initial acidity and temperature. Progress in Nuclear Energy 83, pages 52-58.
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M.J. Carrott, P.M.A. Cook, O.D. Fox, C.J. Maher & S.L.M. Schroeder. (2012) The Chemistry of (U,Pu)O2 Dissolution in Nitric Acid. Procedia Chemistry 7, pages 92-97.
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Youichi Enokida, Samir Abd El-Fatah & Chien M. Wai. (2002) Ultrasound-Enhanced Dissolution of UO 2 in Supercritical CO 2 Containing a CO 2 -Philic Complexant of Tri- n -butylphosphate and Nitric Acid . Industrial & Engineering Chemistry Research 41:9, pages 2282-2286.
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H. Tomiyasu & Y. Asano. (1998) Environmentally acceptable nuclear fuel cycle development of a new reprocessing system. Progress in Nuclear Energy 32:3-4, pages 421-427.
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