[1] P. Sharma, R. Tomar, Synthesis and application of an analogue of mesolite for the removal of uranium (VI), thorium(IV), and europium(III) from aqueous waste, Micropore. Mesopore. Mater. 116 (2008) 641-652.
[2] A. Borowiak-Resterna, R. Cierpiszewski, K. Prochaska, Kinetic and equilibrium studies of the removal of cadmium ions from acidic chloride solutions by hydrophobic pyridinecarboxamide extractants, J. Hazard. Mater. 179 (2010) 828-833.
[3] F.A. Aydin, M. Soylak, Solid phase extraction and preconcentration of uranium (VI) and thorium (IV) on duolite XAD761 prior to their inductively coupled plasma spectrometric determination, Talanta, 72 (2007) 187-192.
[4] M. Soylak, N.D. Erdogan, Copper(II)-rubeanic acid coprecipitation system for separation-preconcentration of trace metal ions in environmental samples for their flame atomic absorption spectrometric determinations, J. Hazard. Mater. 137 (2006) 1035-1041.
[5] O.D. Uluozlu, M. Tuzen, D. Mendil, M. Soylak, Coprecipitation of trace elements with Ni2+/2-nitroso-1-naphthol-4-sulfonic acid and their determination by flame atomic absorption spectrometry, J. Hazard. Mater. 176 (2010) 1032-1037.
[6] B.Yu. Kornilovich, I.A. Kovalchuk, G.N. Pshinko, E.A. Tsapyuk, A.P. Krivoruchko, Water purification of uranium by the method of ultrafiltration, J. Water Chem. Technol. 22 (2000) 43-47.
[7] A.M. Shoushtari, M. Zargaran, M. Abdouss, Preparation and characterization of high efficiency ion-exchange cross linked acrylic fibers, J. Appl. Polym. Sci. 101 (2006) 2202-2209.
[8] S.D. Yusan, S. Akyil, Adsorption of uranium (VI) from aqueous solutions by akaganeite, J. Hazard. Mater. 160 (2008) 388-395.
[9] S. Wu, F. Li, H. Wang, L. Fu, B. Zhang, G. Li, Effects of poly (vinyl alcohol) (PVA) content on preparation of novel thiol-functionalized mesoporous PVA/SiO2 composite nanofiber membranes and their application for adsorption of heavy metal ions from aqueous solution, Polymer, 51 (2010) 6203-6211.
[10] M. Irani, A.R. Keshtkar, M.A. Mousavian, Removal of cadmium from aqueous solution using mesoporous PVA/TEOS/APTES composite nanofiber prepared by sol-gel/electrospinning, Chem. Eng. J. 200-202 (2012) 192-201.
[11] F. Rashidi, R.S. Sarabi, Z. Ghasemi, A. Seif, Kinetic, equilibrium and thermodynamic studies for the removal of lead (II) and copper (II) ions from aqueous solutions by nanocrystalline TiO2, Superlattices and Microstructures, 48 (2010) 577-591.
[12] B. Bittmann, F. Haupert, A.K. Schlarb, Preparation of TiO2/epoxy nanocomposites by ultrasonic dispersion and their structure property relationship, Ultrasonics Sonochemistry, 18 (2011) 120-126.
[13] Sh. Mallakpoura, A. Baratia, Efficient preparation of hybrid nanocomposite coatings based on poly(vinyl alcohol) and silane coupling agent modified TiO2 nanoparticles, Progress in Organic Coatings, 71 (2011) 391-398.
[14] S.C. Tsai, K.W. Juang, Comparison of linear and non-linear forms of isotherm models for strontium sorption on a sodium bentonite, J. Radioanal. Nucl. Chem. 243 (2000) 741-746.
[15] T. Uragami, S. Yanagisawa, T. Miyata, Water/Ethanol Selectivity of New Organic-Inorganic Hybrid Membranes Fabricated from Poly(vinyl alcohol) and an Oligosilane, Macromol. Chem. Phys, 208 (2007) 756-764.
[16] L. Cromieres, V. Moulin, B. Fourest, R. Guillaumont, E. Giffaut, Sorption of thorium onto hematite colloids, Radiochim. Acta 82 (1998) 249-256.
[17] G.D. Sheng, D.D. Shao, X.M. Ren, X.Q. Wang, J.X. Li, Y.X. Chen, X.K. Wang, Kinetics and thermodynamics of adsorption of ionizable aromatic compounds from aqueous solutions by as-prepared and oxidized multiwalled carbon nanotubes, J. Hazard. Mater. 178 (2010) 505-516.
[18] N. Chiron, R. Guilet, E. Deydier, Adsorption of Cu(II) and Pb(II) onto a grafted silica, isotherms and kinetic models, Water Res. 37 (2003) 3079-3086.
[19] X. Zhao, G. Zhang, Q. Jia, Ch. Zhao, W. Zhou, W. Li, Adsorption of U(II), Pb(II), Co(II), Ni(II), and Cd(II) from aqueous solution by poly (aryl ether ketone) containing pendant carboxyl groups (PEK-L): Equilibrium, kinetics, and thermodynamics, Chem. Eng. J. 171 (2011) 152-158.
[20] M.M. Dubinin, E.D. Zaverina, L.V. Radushkevich, Sorption and structure of active carbons. I. Adsorption of organic vapors, Zhurnal Fizicheskoi Khimii, 21 (1942) 1351-1362.
[21] F. Helfferich, Ion Exchange, McGraw Hill, New York, USA (1962).
[22] D. Baybaş, U. Ulusoy, The use of polyacrylamide-aluminosilicate composites for thorium adsorption, Appl. Clay. Sci. 51 (2011) 138-146.
[23] A.K. Kaygun, S. Akyil, Study of the behaviour of thorium adsorption on PAN/zeolite composite adsorbent, J. Hazard. Mater. 147 (2007) 357-362.
[24] O. Ozay, S. Ekici, N. Aktas, N. Sahiner, P(4-vinyl pyridine) hydrogel use for the removal of UO2+ 2 and Th+4 from aqueous environments, J. Environ. Management, 92 (2011) 3121-3129.
[25] T.S. Anirudhan, S. Rijith, A.R. Tharun, Adsorptive removal of thorium(IV) from aqueous solutions using poly(methacrylic acid)-grafted chitosan/bentonite composite matrix: Process design and equilibrium studies, Colloids and Surfaces A: Physicochem. Eng. Aspects, 368 (2010) 13-22.
[26] G. Vukovic, A. Marinkovic, M. Colic, M. Ristic, R. Aleksic, A. Peric-Grujic, P. Uskokovic, Removal of cadmium from aqueous solutions by oxidized and ethylenediamine-functionalized multi-walled carbon nanotubes, Chem. Eng. J. 157 ( 2010) 238-248.
[27] M. Irani, A.R. Keshtkar, M.A. Mousavian, Removal of Cd(II) and Ni(II) from aqueous solution by PVA/TEOS/TMPTMS hybrid membrane, Chem. Eng. J. 175 (2011) 251-259.