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ORIGINAL ARTICLE

Development of Sorbers for the Recovery of Uranium from Seawater. Part 2. The Accumulation of Uranium from Seawater by Resins Containing Amidoxime and Imidoxime Functional Groups

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Pages 307-339 | Received 18 Aug 1982, Published online: 05 Dec 2006

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Steven P. Kelley & Robin D. Rogers. (2018) Lanthanide complexes with zwitterionic amidoximes stabilized by noncoordinating water molecules. Supramolecular Chemistry 30:5-6, pages 411-417.
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Xiaojing Guo, Yaxing Wang, Cheng Li, Ping Huai & Guozhong Wu. (2015) Optimum complexation of uranyl with amidoxime in aqueous solution under different pH levels: density functional theory calculations. Molecular Physics 113:11, pages 1327-1336.
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Jungseung Kim, Costas Tsouris, RichardT. Mayes, Yatsandra Oyola, Tomonori Saito, ChristopherJ. Janke, Sheng Dai, Erich Schneider & Darshan Sachde. (2013) Recovery of Uranium from Seawater: A Review of Current Status and Future Research Needs. Separation Science and Technology 48:3, pages 367-387.
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Adel A.-H. Abdel-Rahman, Ayman M. Atta, Ibrahim E. El Aassy, Fadia Y. Ahmed & Mohammed F. Hamza. (2011) Studies on the Uptake of Uranium(VI) Ions on Polyacrylamidoxime Resins Synthesized by Free Radical Polymerization with Different Crosslinking Ratios and Pore Solvents. Journal of Dispersion Science and Technology 32:2, pages 224-234.
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Sangita Pal, V. Ramachandhran, S. Prabhakar, P. K. Tewari & M. Sudersanan. (2006) Polyhydroxamic Acid Sorbents for Uranium Recovery. Journal of Macromolecular Science, Part A 43:4-5, pages 735-747.
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Pınar Akkaş Kavaklı, Noriaki Seko, Masao Tamada & Olgun Güven. (2005) Adsorption Efficiency of a New Adsorbent Towards Uranium and Vanadium Ions at Low Concentrations. Separation Science and Technology 39:7, pages 1631-1643.
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Noriaki Seko, Akio Katakai, Shin Hasegawa, Masao Tamada, Noboru Kasai, Hayato Takeda, Takanobu Sugo & Kyoichi Saito. (2003) Aquaculture of Uranium in Seawater by a Fabric-Adsorbent Submerged System. Nuclear Technology 144:2, pages 274-278.
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V. Ramachandhran, Shaji C. Kumar & M. Sudarsanan. (2001) PREPARATION, CHARACTERIZATION, AND PERFORMANCE EVALUATION OF STYRENE-ACRYLONITRILE-AMIDOXIME SORBENT FOR URANIUM RECOVERY FROM DILUTE SOLUTIONS. Journal of Macromolecular Science, Part A 38:11, pages 1151-1166.
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Recai İnam, Tuncer Çaykara & Cengiz Özyürek. (2001) POLAROGRAPHIC DETERMINATION OF URANYL ION ADSORPTION ON POLY-(2-HYDROXYETHYL METHACRYLATE/ITACONIC ACID) HYDROGELS. Separation Science and Technology 36:7, pages 1451-1461.
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Yoon-Yul PARK, Seong-Yun KIM, Jung-Sung KIM, Masayuki HARADA, Hiroshi TOMIYASU, Masanobu NOGAMI & Yasuhisa IKEDA. (2000) Complex Formation of U(VI) with Benzamidoxime in Non-aqueous Solvents. Journal of Nuclear Science and Technology 37:4, pages 344-348.
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K.A.K. EBRAHEEM, M.S. MUBARAK, Z.J. YASSIEN & F. KHALLLI. (1998) CHELATION PROPERTIES OF POLY(8-HYDROXYQUINOLINE 5,7-DIYLMETHYLENE) TOWARDS SOME TRIVALENT LANTHANIDE METAL IONS. Solvent Extraction and Ion Exchange 16:2, pages 637-649.
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Jose M. Loureiro & Alirio E. Rodrigues. (1998) Sorption of Metals by an Amidoxime Chelating Resin. Part I: Equilibrium. Separation Science and Technology 33:11, pages 1585-1604.
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Akira Goto, Shigeharu Morooka, Masakazu Fukamachi, Katsuki Kusakabe & Tokihiro Kago. (1993) Desorption of Uranium from Amidoxime Fiber Adsorbent. Separation Science and Technology 28:13-14, pages 2229-2235.
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Hamid Tbal, Joëlle Morcellet, Michèle Delporte & Michel Morcellet. (1992) Uranium Adsorption by Chelating Resins Containing Amino Groups. Journal of Macromolecular Science, Part A 29:8, pages 699-710.
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H. Omichi, A. Katakai & J. Okamoto. (1988) Simulation of Adsorption of Uranium from Seawater Using Liquid Film Mass Transfer Controlling Model. Separation Science and Technology 23:10-11, pages 1133-1143.
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R. DybczyŃski, Z. Hubicki & K. Kulisa. (1988) ION EXCHANGE BEHAVIOUR OF 23 ELEMENTS AND AMPHOTERIC PROPERTIES OF CHELATING RESIN DUOLITE ES 346 CONTAINING AMIDOXIME GROUPS. Solvent Extraction and Ion Exchange 6:4, pages 699-724.
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C. Bernido, H. Omichi, A. Katakai & J. Okamoto. (1988) Use of Amidoxime-Group-Containing Adsorbent for the Recovery of Uranium and Other Elements from Phosphoric Acid Solution. Separation Science and Technology 23:1-3, pages 35-47.
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H. Omichi, A. Katakai, T. Sugo, J. Okamoto, S. Katoh, K. Sakane, K. Sugasaka & T. Itagaki. (1987) Effect of Shape and Size of Amidoxime-Group-Containing Adsorbent on the Recovery of Uranium from Seawater. Separation Science and Technology 22:4, pages 1313-1325.
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H. Omichi, A. Katakai, T. Sugo & J. Okamoto. (1986) A New Type of Amidoxime-Group-Containing Adsorbent for the Recovery of Uranium from Seawater. III. Recycle Use of Adsorbent. Separation Science and Technology 21:6-7, pages 563-574.
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H. Omichi, A. Katakai, T. Sugo & J. Okamoto. (1986) A New Type of Amidoxime-Group-Containing Adsorbent for the Recovery of Uranium from Seawater. II. Effect of Grafting of Hydrophilic Monomers. Separation Science and Technology 21:3, pages 299-313.
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H. Omichi, A. Katakai, T. Sugo & J. Okamoto. (1985) A New Type of Amidoxime-Group-Containing Adsorbent for the Recovery of Uranium from Seawater. Separation Science and Technology 20:2-3, pages 163-178.
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Masayoshi KANNO. (1984) Present Status of Study on Extraction of Uranium from Sea Water. Journal of Nuclear Science and Technology 21:1, pages 1-9.
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