Skip to content
1887
Volume 49, Issue 2
  • ISSN: 0032-1400

Abstract

Loading

Article metrics loading...

/content/journals/10.1595/147106705X35263
2005-01-01
2024-12-21
Loading full text...

Full text loading...

/deliver/fulltext/pmr/49/2/PMR-49-2-Kolarik.html?itemId=/content/journals/10.1595/147106705X35263&mimeType=html&fmt=ahah

References

  1. “Feasibility of Separation and Utilization of Ruthenium, Rhodium and Palladium from High-Level Wastes”, IAEA Tech. Rep. Ser., No. 308, 1989 [Google Scholar]
  2. Z. Kolarik, E. V. Renard, Z. Kolarik, E. V. Renard, (a) Platinum Metals Rev., 2003, 47, (2), 74; (b) Platinum Metals Rev., 2003, 47, (3), 123 [Google Scholar]
  3. B. N. Zaitsev, V. A. Korolev, V. P. Popik, Yu. Z. Prokopchuk, M. N. Chubarov, Radiokhimiya, 1988, 30, (3), 411; Sov. Radiochem., 1988, 30, (3), 387 [Google Scholar]
  4. J. W. Dubrin, Tucson, Arizona, U.S.A., Vol. II, p. 117
  5. S. N. Suchard, Tucson, ANS/ASME, Arizona, U.S.A., Vol. II, p. 113
  6. H. Yamaguchi, N. Sasao, Oarai, Ibaraki, JAERI, 1990, p. 129
  7. V. P. Bochin, B. E. Gavrilov, V. S. Zolotarev, Isotopenpraxis, 1971, 7, (6), 232 [Google Scholar]
  8. F. J. Smith, H. F. McDuffie, Sep. Sci. Technol., 1981, 16, (9), 1071 [Google Scholar]
  9. A. Sawatzky, G. A. Ledoux, Paris, France, Pergamon Press, New York, Vol. 1, Paper 1C8
  10. C. L. Stokes, R. E. Buxbaum, Nucl. Technol., 1992, 98, 207 [Google Scholar]
  11. General Electric Co.,, U. S. Patent 5,135,709; 1992 [Google Scholar]
  12. Power Reactor & Nuclear Fuel Dev. Corp. and Nippon Engeruharudo K.K.,, Japanese Patent Appl. 55-126,502; 1980 [Google Scholar]
  13. General Electric Co.,, U. S. Patent 4,097,402; 1978 [Google Scholar]
  14. G. A. Eloff, C. J. Greyling, P. E. Viljoen, J. Nucl. Mater., 1993, 202, 239 [Google Scholar]
  15. T. V. Rao, R. W. Vook, W. Meyer, C. Wittwer, J. Vac. Sci. Technol., 1987, A5, (4), 2701 [Google Scholar]
  16. P. Schlossmacher, Mater. Lett., 1997, 31, 119 [Google Scholar]
  17. D. Golberg, Ya Xu, Y. Murakami, K. Otsuka, T. Ueki, H. Horikawa, Mater. Lett., 1995, 22, 241 [Google Scholar]
  18. R. R. Ionaitis, V. V. Kotov, I. M. Shchukin, At. Energiya, 1995, 79, (4), 304; Sov. At. Energy, 1995, 79, (4), 712 [Google Scholar]
  19. A. Michaelis, S. Kudelka, J. W. Schultze, Electrochim. Acta, 1998, 43, (1–2), 119 [Google Scholar]
  20. Engelhard Minerals & Chemicals Corp.,, U. S. Patent 4,178,350; 1979 [Google Scholar]
  21. Yu. A. Sakharovskii, M. B. Rozenkevich, B. M. Andreev, É. P. Magomedbekov, Yu. S. Pak, D. M. Nikitin, I. Z. Khairullin, V. V. Uborskii, At. Energiya, 1998, 85, (1), 35; Soviet At. Energy, 1998, 85, (1), 462 [Google Scholar]
  22. Studiecentrum voor Kernenergie, S.C.K.,, U. S. Patent 4,376,066; 1983 [Google Scholar]
  23. Mitsubishi Genshiryoku K.K.,, Japanese Patent Appl . 49-002,000; 1974 [Google Scholar]
  24. Mitsubishi Genshiryoku K.K.,, Japanese Patent 58-15,078 B4; 1983 [Google Scholar]
  25. Hitachi Seisakusho K.K.,, Japanese Patent Appl . 57-046,198; 1982 [Google Scholar]
  26. K. Fischer, Nucl. Technol., 1995, 112, 58 [Google Scholar]
  27. T. Kanzleiter, M. Seidler, Atomwirtschaft, 1995, 40, (6), 392 [Google Scholar]
  28. M. Kelm, R. Köster, Sendai, Japan, Vol. II, p. 965
  29. R. Feenstra, D. G. de Groot, R. Griessen, J. P. Burger, A. Menovski, J. Less-Common Met., 1987, 130, 375 [Google Scholar]
  30. R.-D. Penzhorn, U. Berndt, E. Kirste, J. Chabot, Fusion Technol., 1997, 32, 232 [Google Scholar]
  31. E. A. Clark, D. A. Dauchess, L. K. Heung, R. L. Rabun, T. Motyka, Fusion Technol., 1995, 28, 566 [Google Scholar]
  32. V. A. Gol’tsov, V. V. Latyshev, A. F. Volkov, A. L. Zvyagintsev, A. P. Kuzin, V. K. Kapyshev, P. A. Fefelov, At. Energiya, 1982, 52, (2), 135; Sov. At. Energy, 1982, 52, (2), 145 [Google Scholar]
  33. M. Okamoto, K. Okuno, Fusion Technol., 1995, 28, 460 [Google Scholar]
  34. S. Konishi, H. Yoshida, H. Ohno, Y. Naruse, D. O. Coffin, C. R. Walthers, K. E. Binning, Fusion Technol., 1985, 8, 2042 [Google Scholar]
  35. S. Konishi, H. Yoshida, Y. Naruse, J. At. Energy Soc. Jpn., 1982, 24, (12) 973 [Google Scholar]
  36. H. Yoshida, K. Okuno, T. Nagasaki, K. Noda, Y. Ishii, H. Takeshita, 1985
  37. V. Z. Mordkovich, K. Yu. Baichtok, M. H. Sosna, Platinum Metals Rev., 1992, 36, (2), 90 [Google Scholar]
  38. R. S. Willms, S. A. Birdsell, R. C. Wilhelm, Fusion Technol., 1995, 28, 772 [Google Scholar]
  39. R. S. Willms, K. Okuno, Hyannis, Massachusetts, U.S.A., p. 85
  40. R. S. Willms, R. Wilhelm, S. Konishi, Fusion Eng. Des., 1995, 28, 397 [Google Scholar]
  41. S. A. Birdsell, R. S. Willms, Fusion Technol., 1995, 28, 530 [Google Scholar]
  42. R. G. Clemmer, E. M. Larsen, L. J. Wittenberg, Nucl. Eng. Des., 1976, 39, 85 [Google Scholar]
  43. R. E. Buxbaum, Sep. Sci. Technol., 1983, 18, (12–13), 1251 [Google Scholar]
  44. J. R. Young, Rev. Sci. Instrum., 1963, 34, (4), 374 [Google Scholar]
  45. R. E. Buxbaum, P. C. Hsu, J. Nucl. Mater., 1992, 189, 183 [Google Scholar]
  46. G. D. Berkheimer, R. E. Buxbaum, J. Vac. Sci. Technol., 1985, A3, (2), 412 [Google Scholar]
  47. G. Bellanger, J. J. Rameau, Fusion Technol., 1997, 31, 185 [Google Scholar]
  48. B. M. Andreev, N. A. Rakov, M. B. Rozenkevich, Yu. A. Sakharovskii, Radiokhimiya, 1997, 39, (2), 97; Radiochemistry, 1997, 39, (2), 95 [Google Scholar]
  49. M. Andreev, Yu. A. Sakharovsky, M. B. Rozenkevich, E. P. Magometbekov, Y. S. Park, V. V. Uborskiy, Fusion Technol., 1995, 28, 511 [Google Scholar]
  50. B. M. Andreev, A. S. Polevoi, A. N. Perevezentsev, At. Energiya, 1978, 45, (1), 53; Sov. At. Energy, 1978, 45, (1), 710 [Google Scholar]
  51. F. Botter, J. Menes, S. Tistchenko, G. Dirian, Bull. Soc. Chim. Fr., 1965, (11), 3374 [Google Scholar]
  52. B. M. Andreev, E. P. Magomedbekov, Sep. Sci. Technol., 2001, 36, (8–9), 2027 [Google Scholar]
  53. M. C. Embury, R. E. Ellefson, H. B. Melke, W. M. Rutherford, Fusion Technol., 1992, 21, 960 [Google Scholar]
  54. S. Fukada, K. Fuchinoue, M. Nishikawa, Fusion Technol., 1995, 28, 608 [Google Scholar]
  55. S. Fukada, K. Fuchinoue, M. Nishikawa, J. Nucl. Sci. Technol., 1995, 32, (6), 556 [Google Scholar]
  56. J. H. Scogin, A. S. Poore, Fusion Technol., 1995, 28, 736 [Google Scholar]
  57. A. S. Horen, M. W. Lee, Fusion Technol., 1992, 21, 282 [Google Scholar]
  58. Mobil Oil Corp.,, U. S. Patent 3,681,021; 1972 [Google Scholar]
  59. Atomic Energy of Canada Ltd.,, U. S. Patent 3,888,974; 1975 [Google Scholar]
  60. Y. Ikeda, Y. Yasuike, Y. Takashima, K. Nishimura, S. Hasegawa, J. Nucl. Sci. Technol., 1993, 30, (5), 485 [Google Scholar]
  61. V. A. Goltsov, Mater. Sci. Eng., 1981, 49, 109 [Google Scholar]
  62. Inst. of Petrochem. Synth. and Univ. of Nations’ Friendship, Soviet Patent 1,643,450; 1991 [Google Scholar]
  63. NOK Corp.,, Japanese PatentAppl. 06-254,361; 1994 [Google Scholar]
  64. Kernforschungsanlage Jülich GmbH,, U. S. Patent 4,589,891; 1986 [Google Scholar]
  65. S. Uemiya, Y. Kude, K. Sugino, N. Sato, T. Matsuda, E. Kikuchi, Chem. Lett., 1988, 1687 [Google Scholar]
  66. S.-J. Lee, S.-M. Yang, S. B. Park, Membrane J. Sci., 1994, 96, (3), 223 [Google Scholar]
  67. G. N. Pirogova, N. N. Popova, G. E. Kalinina, Izv. Akad. Nauk SSSR, Ser. Khim., 1989, 1482; Bull. Acad. Sci. USSR, Chem. Sci., 1989, 1354 [Google Scholar]
  68. R. R. Barefoot, Environ. Sci. Technol., 1997, 31, (2), 309 [Google Scholar]
  69. Institut Neftekhimicheskogo Sinteza,, German Appl . 3,609,263; 1987 [Google Scholar]
  70. Soviet Patent 521,924; 1976 [Google Scholar]
  71. Soviet Patent 1,271,365; 1986 [Google Scholar]
  72. Inst. of Petrochem. Synth. and Univ. Nations’ Friendship, Soviet Patent 593,351; 1979 [Google Scholar]
  73. Standard Oil Co.,, U. S. Patent 4,714,695; 1987 [Google Scholar]
  74. Soviet Patent 1,695,979; 1991 [Google Scholar]
  75. Soviet Patent 877,836; 1984 [Google Scholar]
  76. Allied-Signal Inc.,, U. S. Patent 4,849,399; 1989 [Google Scholar]
  77. Mitsubishi Gas Chem. Inc.,, U. S. Patent 5,236,692; 1993 [Google Scholar]
  78. Mazda Motor Corp.,, U. S. Patent 5,242,883; 1993 [Google Scholar]
  79. Amoco Corp.,, U. S. Patent 5,308,814; 1994 [Google Scholar]
  80. Mobil Oil Corp.,, World Appl . 90/13362; 1990 [Google Scholar]
  81. Amoco Corp.,, U. S. Patent 5,225,383; 1993 [Google Scholar]
  82. L. V. Pisarzhevskii, Inst. Phys. Chem., Soviet Patent 677,174; 1986 [Google Scholar]
  83. J. M. Andersen, Platinum Metals Rev., 1997, 41, (3), 132 [Google Scholar]
  84. Exxon Res. Eng. Co.,, U. S. Patent 5,278,121; 1994 [Google Scholar]
  85. United Technol. Corp.,, U. S. Patent 5,234,584; 1993 [Google Scholar]
  86. Kompar Co.,, Russian Patent 2,024,302; 1992 [Google Scholar]
  87. Mitsubishi Gas Chem. Co. Inc.,, U. S. Patent 5,180,573; 1993 [Google Scholar]
  88. Inst. Petrochem. Synth. and Univ. of Nations’ Friendship, Soviet Patent 956,003; 1982 [Google Scholar]
  89. Sumitomo Electric Ind. Ltd.,, Japanese Patent Appl. 53-008,389; 1978 [Google Scholar]
  90. Sumitomo Electric Ind. Ltd.,, Japanese Patent Appl. 53-008,390; 1978 [Google Scholar]
  91. G. K. Chandler, J. D. Genders, D. Pletcher, Platinum Metals Rev., 1997, 41, (2), 54 [Google Scholar]
  92. Standard Oil Co.,, European Appl . 0,209,264; 1987 [Google Scholar]
  93. Hiranuma Sangyo K.K., Inoue Akihisa, Res. Dev. Corp. Japan and Ibaraki Pref. Gov.,, Japanese Patent Appl . 09-279,318; 1997 [Google Scholar]
  94. Inst. Org. Catalysis and Electrochem.,, Soviet Patent 1,263,725; 1986 [Google Scholar]
  95. Eltech Systems Corp.,, U. S. Patent 4,517,068; 1985 [Google Scholar]
  96. C. Iwakura, K. Sakamoto, J. Electrochem. Soc., 1985, 132, (10), 2420 [Google Scholar]
  97. IBM Corp.,, U. S. Patent 4,457,986; 1984 [Google Scholar]
  98. General Electric Co.,, U. S. Patent 4,395,322; 1983 [Google Scholar]
  99. Y. Nishihara, Y. Yamaguchi, M. Tokumoto, K. Takeda, K. Fukamichi, Phys. Rev. B, 1986, 34, (5), 3446 [Google Scholar]
  100. D. Singh, R. E. Cohen, D. A. Papaconstantopoulos, Phys. Rev. B, 1990, 41, (1), 861 [Google Scholar]
  101. Yu. M. Shul’ga, E. N. Izakovich, V. I. Rubtsov, B. F. Shklyaruk, Platinum Metals Rev., 1993, 37, (2), 86 [Google Scholar]
  102. P. Volkov, S. J. Poon, Europhys. Lett., 1994, 28, (4), 271 [Google Scholar]
  103. J. L. Porter, T. K. Vethanayagam, R. L. Snyder, T. J. A. Taylor, J. Am. Ceram. Soc., 1990, 73, (6), 1760 [Google Scholar]
  104. W. C. Heraeus, German Patent 3,935,664; 1991 [Google Scholar]
  105. Moscow Inst. Fine Chem. Technol.,, Soviet Patent 1,705,417; 1992 [Google Scholar]
  106. Moscow Inst. Fine Chem. Technol.,, Soviet Patent 1,724,740; 1992 [Google Scholar]
  107. T. Renouard, R.-A. Fallahpour, Md. K. Nazeeruddin, R. Humphry-Baker, S. I. Gorelsky, P. A. B. Lever, M. Grätzel, Inorg. Chem., 2002, 41, (2), 367 [Google Scholar]
  108. I. R. McGill, Platinum Metals Rev., 1990, 34, (2), 85 [Google Scholar]
  109. I. R. McGill, Platinum Metals Rev., 1990, 34, (3), 144 [Google Scholar]
  110. B. E. Wilde, I. Chattoraj, T. A. Mozhi, Scr. Metall., 1987, 21, (10), 1369 [Google Scholar]
  111. H. Potgieter, 13 pp., ISBN 0-86999-876-5
  112. General Electric Co.,, U. S. Patent 5,147,602; 1992 [Google Scholar]
  113. Mitsubishi Jukogyo K.K.,, U. S. Patent 5,151,248; 1992 [Google Scholar]
  114. S. C. Tjong, J. B. Malherbe, Appl. Surface Sci., 1990, 44, 179 [Google Scholar]
  115. S. C. Tjong, C. Y. Shih, Mater. Charact., 1991, 27, 175 [Google Scholar]
  116. Magnitogorsk Mining Metall. Inst.,, Soviet Patent 1,663,041; 1991 [Google Scholar]
  117. J. H. Potgieter, H. C. Brookes, Corr. Eng. (Houston), 1995, 51, (4), 312 [Google Scholar]
  118. S. C. Tjong, J. S. Ku, N. J. Ho, Surf. Coat. Technol., 1997, 90, 203 [Google Scholar]
  119. Sie Chin Tjong, Surf. Coat. Technol., 1989, 38, 325 [Google Scholar]
  120. A. Higginson, R. C. Newman, M. R. P. Procter, Corros. Sci., 1989, 29, (11/12), 1293 [Google Scholar]
  121. P. Peled, D. Itzhak, Corros. Sci., 1990, 30, (1), 59 [Google Scholar]
  122. J. H. Potgieter, J. Appl. Electrochem., 1991, 21, (6), 471 [Google Scholar]
  123. H. Satoh, K. Shimogori, F. Kamikubo, Platinum Metals Rev., 1987, 31, (3), 115 [Google Scholar]
  124. Tosoh Corp.,, European Appl. 0,446,009; 1991 [Google Scholar]
  125. R. L. Fleischer, D. W. McKee, Metall. Trans. A, 1993, 24A, 759 [Google Scholar]
  126. R. W. Schutz, Platinum Metals Rev., 1996, 40, (2), 54 [Google Scholar]
  127. Y. Chen, J. Jin, P. Wang, J. Chen, Y. Wang, Nucl. Instrum. Meth. Phys. Res., 1988, B34, (1), 47 [Google Scholar]
  128. D.-B. Lee, G. Simkovich, J. Less-Common Met., 1990, 163, 51 [Google Scholar]
  129. Nissan Motor Co.,, Japanese Patent Appl . 04-006,178; 1992 [Google Scholar]
  130. L. Tong, J. Guo, Platinum Metals Rev., 1994, 38, (3), 98 [Google Scholar]
/content/journals/10.1595/147106705X35263
Loading
  • Article Type: Research Article
This is a required field
Please enter a valid email address
Approval was a Success
Invalid data
An Error Occurred
Approval was partially successful, following selected items could not be processed due to error
Please enter a valid_number test