References

  1. C. Gupta, H. Singh, Uranium Resource Processing: Secondary Resources, Springer-Verlag, Berlin, Heidelberg, New York, 2003.
  2. V.I. Ferronsky, V.A. Polyakov, Isotopes of the Earth’s Hydrosphere, Springer, Dordrecht, Geidelberg, London, New York, 2012.
  3. W. Brine, The toxicity of depleted uranium, Int. J. Environ. Res. Public Health, 7 (2010) 303–313.
  4. B. Hua, H. Xu, J. Terry, B. Deng, Kinetics of uranium (VI) reduction by hydrogen sulfide in anoxic aqueous systems, Environ. Sci. Technol., 40 (2006) 4666–4671.
  5. S.S. Sandhu, K.B. Kohli, A.S. Brar, Photochemical reduction of the uranyl ion with dialkyl sulfides, Inorg. Chem., 23 (1984) 3609–3612.
  6. D.S. Alessi, J.S. Lezama-Pacheco, N. Janot, E.I. Suvorova, J.M. Cerrato, D.E. Giammar, J.A. Davis, P.M. Fox, K.H. Williams, P.E. Long, K.M. Handley, R. Bernier-Latmani, J.R. Bargar, Speciation and reactivity of uranium products formed during in situ bioremediation in a shallow alluvial aquifer, Environ. Sci. Technol., 48 (2014) 12842−12850.
  7. E.J. Zaganiari, Ion Exchange Resins in Uranium Hydrometallurgy, Books on Demand France, Paris, 2009.
  8. I.V. Pylypenko, I.A. Kovalchuk, B. Yu. Kornilovich, Synthesis and sorption properties of Ti- and Ti/Al-pillared montmorillonite, Khim. Fiz. Technol. Poverhni., 6 (2015) 336–342.
  9. C.D. Barnes, R.A. Da Silva Neves, M. Streat, Anion exchange of uranium from aqueous sulphuric acid solutions: diffusion kinetics, J. Appl. Chem. Biotechnol., 24 (1974) 787–801.
  10. A. Kadous, M.A. Didi, D. Villemin, Removal of uranium(VI) from acetate medium using Lewatit TP 260 resin, J. Radioanal. Nucl. Chem., 288 (2011) 553–561.
  11. N.A Yaroshenko, V.F. Sazonova, O.V. Perlova, N.A. Perlova, Sorption of uranium compounds by zirconium-silica nanosorbents, Russ. J. Appl. Chem. 85 (2012) 849–855.
  12. O.V. Perlova, V.F. Sazonova, N.A. Perlova, N.A. Yaroshenko, Kinetics of sorption of uranium(VI) compounds with zirconium–silica nanosorbents, Russ. J. Phys. Chem. A., 88 (2014) 1012–1016.
  13. W.I. Zidan, M.M. Abo-Aly, O.A. Elhefnawy, E. Bakier, Batch and column studies on uranium adsorption by Amberlite XAD-4 modified with nano-manganese dioxide, J. Radioanal. Nucl. Chem., 304 (2015) 645–653.
  14. A. Kimaro, L.A. Kelly, G.M. Murray, Synthesis and characterization of molecularly imprinted uranyl ion exchange resins, Separ. Sci. Technol., 40 (2005) 2035–2052.
  15. A. Rahmati, A. Ghaemi, M. Samadfam, Kinetic and thermodynamic studies of uranium(VI) adsorption using Amberlite IRA-910 resin, Annals Nucl. Energy, 39 (2012) 42–48.
  16. T.S. Anirudhan, P.G. Radhakrishnan, Kinetics, thermodynamics and surface heterogeneity assessment of uranium(VI) adsorption onto cation exchange resin derived from a lignocellulosic residue, Appl. Surf. Sci., 255 (2009) 4983–4991.
  17. N.A. Nekrasova, V.M. Gelis, V.V. Milyutin, N.A. Budantseva, E.A. Kozlitin, M.V. Logunov, Yu. E. Pristinskii, Sorption of Th, U, and Am on phosphorus-containing ion-exchange materials, Radiochem., 52 (2010) 71–75.
  18. O.I. Zakutevskyy, T.S. Psareva, V.V. Strelko, Sorption of U(VI) ions on sol-gel-synthesized amorphous spherically granulated titanium phosphates, Russ. J. Appl. Chem., 85 (2012) 1366–1370.
  19. Yu. S. Dzyazko, L.N. Ponomaryova, Yu. M. Volfkovich, V.E. Sosenkin, V.N. Belyakov, Polymer ion-exchangers modified with zirconium hydrophosphate for removal of Cd2+ ions from diluted solutions, Separ. Sci. Technol., 48 (2013) 2140–2149.
  20. Yu. S. Dzyazko, Y.M. Volfkovich, L.N. Ponomaryova, V.E. Sosenkin, V.V. Trachevskii, V.N. Belyakov, Composite ion-exchangers based on flexible resin containing zirconium hydrophosphate for electromembrane separation, J. Nanosci. Technol., 2 (2016) 43–49.
  21. Yu. S. Dzyazko, L.N. Ponomaryova, Yu. M. Volfkovich, V.V. Trachevskii, A.V. Palchik, Ion-exchange resin modified with aggregated nanoparticles of zirconium hydrophosphate. Morphology and functional properties, Micropor. Mesopor. Mater., 198 (2014) 55–62.
  22. Yu. S. Dzyazko, L.N. Ponomaryova, L.M. Rozhdestvenskaya, S.L. Vasilyuk, V.N. Belyakov, Electrodeionization of low-concentrated multicomponent Ni2+-containing solutions using organic-inorganic ion-exchangers, Desalination, 342 (2014) 52–60.
  23. Yu. S. Dzyazko, L.N. Ponomareva, Y.M. Volfkovich, V.E. Sosenkin, Effect of the porous structure of polymer on the kinetics of Ni2+ exchange on hybrid inorganic–organic ionites, Russ. J. Phys. Chem. A, 86 (2012) 913–919.
  24. Yu. S. Dzyazko, L.N. Ponomareva, Y.M. Volfkovich, V.E. Sosenkin, V.N. Belyakov, Conducting properties of a gel ionite modified with zirconium hydrophosphate nanoparticles, Russ. J. Electrochem., 49 (2013) 209–215.
  25. S. Sarkar, P.K. Chatterjee, L. Cumbal, A.K. Sen Gupta, Hybrid ion exchanger supported nanocomposites: sorption and sensing for environmental applications, Chem. Eng. J., 166 (2011) 923–931.
  26. B.C. Pan, Q.R. Zhang, W.M. Zhang, B.J. Pan, W. Du, L. Lu, Q.J. Zhang, Z.W. Xu, Q.X. Zhang, Highly effective removal of heavy metals by polymer-based zirconium phosphate: a case study of lead ion, J. Colloid Interface Sci., 310 (2007) 99–105.
  27. Q. Zhang, B. Pan, S. Zhang, J. Wang, W. Zhang, L. Lu, New insights into nanocomposite adsorbents for water treatment: a case study of polystyrene-supported zirconium phosphate nanoparticles for lead removal, J. Nanopart. Res., 13 (2011) 5355–5364.
  28. Yu. Dzyazko, L. Rozhdestvenska, A. Palchik, F. Lapicque, Ion-exchange properties and mobility of Cu2+ ions in zirconium hydrophosphate ion exchangers, Separ. Purif. Technol., 45 (2005) 141–146.
  29. Yu. M. Volfkovich, V.S. Bagotzky, The method of standard porosimetry – 1. Principles and possibilities, J. Power Sources, 48 (1994) 327–338.
  30. Yu. M. Volfkovich, V.E. Sosenkin, Porous structure and wetting of fuel cell components as the factors determining their electrochemical characteristics, Russ. Chem. Rev., 81 (2012) 936–959.
  31. Yu. M. Volfkovich, V.S. Bagotsky, Experimental Methods for Investigation of Porous Materials and Powders, Yu. M. Volfkovich, A.N. Filippov, V.S. Bagotsky, Eds., Porous Materials and Powders Used in Different Fields of Science and Technology, Springer-Verlag, London, 2014, pp. 1–8.
  32. J. Rouquerol, G. Baron, R. Denoyel, H. Giesche, J. Groen, P. Klobes, P. Levitz, A.V. Neimark, S. Rigby, R. Skudas, K. Sing, M. Thommes, K. Unger, Liquid intrusion and alternative methods for the characterization of macroporous materials (IUPAC Technical Report), Pure Appl. Chem., 84 (2012) 107–136.
  33. Z. Zhu, Y. Pranolo, C.Y. Cheng, Separation of uranium and thorium from rare earths for rare earth production – a review, Miner. Eng., 77 (2015) 185–196.
  34. B.V. Kadam, B. Maiti, R.M. Sathe, Selective spectrophotometric method for the determination of uranium(VI), Analyst, 106 (1981) 724–726.
  35. A.S. Myerson, Handbook of Industrial Crystallization, Butterworth-Heinemann, Woburn, 2002.
  36. I. Nicotera, A. Khalfan, G. Goenaga, T. Zhang, A. Bocarsly, S. Greenbaum, NMR investigation of water and methanol mobility in nanocomposite fuel cell membranes, Ionics, 14 (2008) 243–253.
  37. Yu. S. Dzyazko, Yu. M. Volfkovich, V.E. Sosenkin, N.F, Nikolskaya, Yu. P. Gomza, Composite inorganic membranes containing nanoparticles of hydrated zirconium dioxide for electrodialytic separation, Nanoscale Res. Lett., 9 (2014) 271.
  38. V.Y. Nimon, S.J. Visco, L.C. De Jonghe, Y.M. Volfkovich, D.A. Bograchev, Modeling and experimental study of porous carbon cathodes in Li-O2 cells with non-aqueous electrolyte, Electrochem. Lett., 2 (2013) A33-A36.
  39. N.P. Berezina, Yu. M. Vol’fkovich, N.A. Kononenko, I.A. Blinov, Water distribution studies in heterogeneous ion-exchange membranes by standard porosimetry. Soviet Electrochem., 23 (1987) 858–862.
  40. Yu. Dzyazko, L. Rozhdestveskaya, Yu. Zmievskii, Yu. Volfkovich, V. Sosenkin, N. Nikolskaya, S. Vasilyuk, V. Myronchuk, V. Belyakov, Heterogeneous membranes modified with nanoparticles of inorganic ion-exchangers for whey demineralization, Mater. Today: Proceedings, 2 (2015) 3864–3873.
  41. F. Helfferich, Ion Exchange, Dover., New York, 1995.
  42. N.P. Berezina, N.A. Kononenko, O.A. Dyomina, N.P. Gnusin, Characterization of ion-exchange membrane materials: properties vs. structure, Adv. Colloid Interface Sci., 139 (2008) 3–28.
  43. G. Gapel, Speciation of Actinides, R. Cormelis, J.A. Caruso, H. Crews, K.G. Heumann, Eds., Handbook of Elemental Speciation II. Species in the Environment, Food, Medicine and Occupational Health, Wiley, Chichester, 2005, pp. 509–563.
  44. G.E. Boyd, A.W. Adamson, P.P. Mayers, The exchange adsorption of ions from aqueous solutions by organic zeolites. 2. Kinetics, J. Amer. Chem. Soc., 69 (1947) 2836–2848.
  45. S. Lagergren, About the theory of so called adsorption of soluble substances, Kungliga Svenska Vetenskapsakademiens Handlingar, 24 (1898) 1–39.
  46. Y.S. Ho, G. McKay, Pseudo-second-order model for sorption processes, Process Biochem., 34 (1999) 451–465.
  47. Yu. S. Dzyazko, V.V. Trachevskii, L.M. Rozhdestvenskaya, S.L. Vasilyuk, V.N. Belyakov, Interaction of sorbed Ni(II) ions with amorphous zirconium hydrogen phosphate, Russ. J. Phys. Chem. A, 87 (2013) 840–845.
  48. W. Riemam, H. Walton, Ion Exchange in Analytical Chemistry, Pergamon Press, Oxford, New York, Toronto, Sydney, Braunschweig, 1970.