76
L. Ponomarova et al.
39. Kudelko K, Maltseva T, Bieliakov V (2011) Adsorption and mobility of Cu (II), Cd (II), Pb (II)
ions adsorbed on (hydr)oxide polymer sorbents M x O y ·nH 2 O, M = Zr (IV), Ti (IV), Sn (IV),
Mn (IV). Desalin Water Treat 35(1–3):295–299
40. Dzyazko YS, Ponomareva LN, Volfkovich YM et al (2012) Effect of the porous structure of
polymer on the kinetics of Ni 2+ exchange on hybrid inorganic-organic ionites. Russ J Phys
Chem A 86(6):913–919
41. Dzyazko YS, Belyakov VN, Vasilyuk SL et al (2006) Anion-exchange properties of composite
ceramic membranes containing hydrated zirconium dioxide. Russ J Appl Chem 79(5):769–773
42. Dzyazko YS, Volfkovich YM, Sosenkin VE et al (2014) Composite inorganic membranes containing nanoparticles of hydrated zirconium dioxide for electrodialytic separation. Nanoscale
Res Lett 9(1):271 https://doi.org/10.1186/1556-276X-9-271
43. Martı-Calatayud MC, Garcıa-Gabaldon M, Perez-Herranz V et al (2015) Ceramic anionexchange membranes based on microporous supports infiltrated with hydrated zirconium
dioxide. RSC Adv 5:46348–46358
44. Dzyazko YS, Rozhdestvenska LM, Vasilyuk SL et al (2017) Composite membranes containing nanoparticles of inorganic ion exchangers for electrodialytic desalination of glycerol.
Nanoscale Res Lett 12:438 https://doi.org/10.1186/s11671-017-2208-4
45. Hong JG, Chen Y (2015) Evaluation of electrochemical properties and reverse electrodialysis
performance for porous cation exchange membranes with sulfate-functionalized iron oxide. J
Membr Sci 473:210–217
46. Pang R, Li X, Li J et al (2014) Preparation and characterization of ZrO 2 /PES hybrid
ultrafiltration membrane with uniform ZrO 2 nanoparticles. Desalination 332:60–66
47. Myronchuk VG, Dzyazko YS, Zmievskii YG et al (2016) Organic-inorganic membranes for
filtration of corn distillery. Acta Periodica Technologica 47:153–165
48. Dzyazko YS, Rozhdestvenskaya LM, Zmievskii YG et al (2015) Organic-inorganic materials containing nanoparticles of zirconium hydrophosphate for baromembrane separation.
Nanoscale Res Let 10:64. https://doi.org/10.1186/s11671-015-0758-x
49. Hsu WY, Gierke TD (1983) Ion transport and clustering in nafion perfluorinated membranes. J
Memr Sci 13(3):307–326
50. Berezina NP, Kononenko NA, Dyomina OA et al (2008) Characterization of ion-exchange
membrane materials: properties vs structure. Adv Colloid Interf Sci 139(1–2):3–28
51. Yaroslavtsev AB, Nikonenko VV, Zabolotsky VI (2003) Ion transfer in ion-exchange and
membrane materials. Russ Chem Rev 72(5):393–421
52. Yaroslavtsev AB, Nikonenko VV (2009) Ion-exchange membrane materials: properties,
modification, and practical application. Nanotechnol Russia 4(3–4):137–159
53. James PJ, Elliott JA, McMaster TJ et al (2000) Hydration of Nafion studied by AFM and X-ray
scattering. J Mater Sci 35(20):5111–5119
54. Young SK, Trevino SF, Beck Tan NC (2002) Small-angle neutron scattering investigation of
structural changes in Nafion membranes induced by swelling with various solvents. J Polym
Sci. Part B: Polym Phys 40:387–400
55. Dzyazko YS, Ponomareva LN, Volfkovich YM et al (2013) Conducting properties of a gel
ionite modified with zirconium hydrophosphate nanoparticles. Russ J Electrochem 49(3):209–
215
56. Stöhr C, Horst J, Höll WF (2001) Application of the surface complex formation model to
ion exchange equilibria: part V. Adsorption of heavy metal salts onto weakly basic anion
exchangers. React Funct Polym 49(2):117–132
57. Saha B, Streat M (2005) Adsorption of trace heavy metals: application of surface complexation
theory to a macroporous polymer and a weakly acidic ion-exchange resin. Ind Eng Chem Re
44(23):8671–8681
58. Volfkovich YM, Sosenkin VE (2012) Porous structure and wetting of fuel cell components as
the factors determining their electrochemical characteristics. Russ Chem Rev 86(6):936–959
59. Volfkovich YM, Bagotsky VS, Filippov AN (2014) Porous materials and powders used in
different fields of science and technology. Springer, London/Heidelberg/New York/Dordrecht
L. Ponomarova et al.
39. Kudelko K, Maltseva T, Bieliakov V (2011) Adsorption and mobility of Cu (II), Cd (II), Pb (II)
ions adsorbed on (hydr)oxide polymer sorbents M x O y ·nH 2 O, M = Zr (IV), Ti (IV), Sn (IV),
Mn (IV). Desalin Water Treat 35(1–3):295–299
40. Dzyazko YS, Ponomareva LN, Volfkovich YM et al (2012) Effect of the porous structure of
polymer on the kinetics of Ni 2+ exchange on hybrid inorganic-organic ionites. Russ J Phys
Chem A 86(6):913–919
41. Dzyazko YS, Belyakov VN, Vasilyuk SL et al (2006) Anion-exchange properties of composite
ceramic membranes containing hydrated zirconium dioxide. Russ J Appl Chem 79(5):769–773
42. Dzyazko YS, Volfkovich YM, Sosenkin VE et al (2014) Composite inorganic membranes containing nanoparticles of hydrated zirconium dioxide for electrodialytic separation. Nanoscale
Res Lett 9(1):271 https://doi.org/10.1186/1556-276X-9-271
43. Martı-Calatayud MC, Garcıa-Gabaldon M, Perez-Herranz V et al (2015) Ceramic anionexchange membranes based on microporous supports infiltrated with hydrated zirconium
dioxide. RSC Adv 5:46348–46358
44. Dzyazko YS, Rozhdestvenska LM, Vasilyuk SL et al (2017) Composite membranes containing nanoparticles of inorganic ion exchangers for electrodialytic desalination of glycerol.
Nanoscale Res Lett 12:438 https://doi.org/10.1186/s11671-017-2208-4
45. Hong JG, Chen Y (2015) Evaluation of electrochemical properties and reverse electrodialysis
performance for porous cation exchange membranes with sulfate-functionalized iron oxide. J
Membr Sci 473:210–217
46. Pang R, Li X, Li J et al (2014) Preparation and characterization of ZrO 2 /PES hybrid
ultrafiltration membrane with uniform ZrO 2 nanoparticles. Desalination 332:60–66
47. Myronchuk VG, Dzyazko YS, Zmievskii YG et al (2016) Organic-inorganic membranes for
filtration of corn distillery. Acta Periodica Technologica 47:153–165
48. Dzyazko YS, Rozhdestvenskaya LM, Zmievskii YG et al (2015) Organic-inorganic materials containing nanoparticles of zirconium hydrophosphate for baromembrane separation.
Nanoscale Res Let 10:64. https://doi.org/10.1186/s11671-015-0758-x
49. Hsu WY, Gierke TD (1983) Ion transport and clustering in nafion perfluorinated membranes. J
Memr Sci 13(3):307–326
50. Berezina NP, Kononenko NA, Dyomina OA et al (2008) Characterization of ion-exchange
membrane materials: properties vs structure. Adv Colloid Interf Sci 139(1–2):3–28
51. Yaroslavtsev AB, Nikonenko VV, Zabolotsky VI (2003) Ion transfer in ion-exchange and
membrane materials. Russ Chem Rev 72(5):393–421
52. Yaroslavtsev AB, Nikonenko VV (2009) Ion-exchange membrane materials: properties,
modification, and practical application. Nanotechnol Russia 4(3–4):137–159
53. James PJ, Elliott JA, McMaster TJ et al (2000) Hydration of Nafion studied by AFM and X-ray
scattering. J Mater Sci 35(20):5111–5119
54. Young SK, Trevino SF, Beck Tan NC (2002) Small-angle neutron scattering investigation of
structural changes in Nafion membranes induced by swelling with various solvents. J Polym
Sci. Part B: Polym Phys 40:387–400
55. Dzyazko YS, Ponomareva LN, Volfkovich YM et al (2013) Conducting properties of a gel
ionite modified with zirconium hydrophosphate nanoparticles. Russ J Electrochem 49(3):209–
215
56. Stöhr C, Horst J, Höll WF (2001) Application of the surface complex formation model to
ion exchange equilibria: part V. Adsorption of heavy metal salts onto weakly basic anion
exchangers. React Funct Polym 49(2):117–132
57. Saha B, Streat M (2005) Adsorption of trace heavy metals: application of surface complexation
theory to a macroporous polymer and a weakly acidic ion-exchange resin. Ind Eng Chem Re
44(23):8671–8681
58. Volfkovich YM, Sosenkin VE (2012) Porous structure and wetting of fuel cell components as
the factors determining their electrochemical characteristics. Russ Chem Rev 86(6):936–959
59. Volfkovich YM, Bagotsky VS, Filippov AN (2014) Porous materials and powders used in
different fields of science and technology. Springer, London/Heidelberg/New York/Dordrecht
