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Articles

Influence of ultrasound irradiation on cadmium cations adsorption by montmorillonite

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Pages 5462-5469 | Received 12 Mar 2012, Accepted 21 May 2013, Published online: 04 Jul 2013

References

  • M. Galamboš, O. Rosskopfová, J. Kufčáková, P. Rajec, Utilization of Slovak bentonites in deposition of high-level radioactive waste and spent nuclear fuel. J. Radioanal. Nucl. Chem. 288 (2011) 765–777.
  • J.H. Potgieter, S.S. Potgieter-Vermaak, P.D. Kalibantonga, Heavy metals removal from solution by palygorskite clay, Miner. Eng. 19 (2006) 463–470.
  • S.E. Bailey, T.J. Olin, R.M. Bricka, D.D. Adrian, A review of potentially low-cost sorbents for heavy metals. Water Res. 33 (1999) 2469–2479.
  • K.G. Bhattacharrya, S.S. Gupta, Adsorption of a few heavy metals on natural and modified kaolinite and montmorillonite, A review. Adv. Colloid Interface Sci. 140 (2008) 114–131.
  • V. Copcia, C. Hristodor, C. Luchian, N. Bilba, I. Sandu, Ammonium nitrogen removal from aqueous solution by natural clay. Rev. Chím. 61 (2010) 1192–1196.
  • A. Kaya, A.H. Ören, Adsorption of zinc from aqueous solutions to bentonite. J. Hazard. Mater. B125 (2005) 183–189.
  • G.N. Pshinko, S.A. Kobets, A.A. Bogolepov, V.V. Goncharuk, Treatment of waters containing uranium with saponite clay. J. Water Chem. Technol. 32 (2010) 10–16.
  • A.G. Sanchez, E.A. Ayuso, O.J. De Blas, Sorption of heavy metals from industrial waste water by low-cost mineral silicates. Clay Miner. 34 (1999) 469–477.
  • S.S. Tahir, R. Naseem, Removal of Cr(III) from tannery wastewater by adsorption onto bentonite clay. Sep. Purif. Technol. 53 (2007) 312–321.
  • C.C. Wang, L.C. Juang, C.K. Lee, T.C. Hsu, J.F. Lee, H.P. Chao, Effects of exchanged surfactant cations on the pore structure and adsorption characteristics of montmorillonite. J. Colloid Interface Sci. 280 (2008) 27–35.
  • S. Kocaoba, Adsorption of Cd(II), Cr(III) and Mn(II) on natural sepiolite. Desalination 244 (2009) 24–30.
  • M.M. Nassar, M.S. El-Geundi, A.A. Al-Wahbi, Equilibrium modeling and thermodynamic parameters for adsorption of cationic dyes onto Yemen natural clay. Desalin. Water Treat. 44 (2012) 340–349.
  • C. Tansakul, S. Laborie, C. Cabassud, Membrane hybrid processes for pretreatment before seawater reverse osmosis desalination. Desalin. Water Treat. 9 (2009) 279–286.
  • J.S. Al-Jariri, F. Khalili, Adsorption of Zn(II), Pb(II), Cr(III) and Mn(II) from water by Jordanian bentonite, Desalin. Water Treat. 21 (2010) 308–322.
  • G.P.CH. Rao, S. Satyaveni, A. Ramesh, K. Seshajah, K.S.N. Murthy, N.V. Choudari, Sorption of cadmium and zinc from aqueous solutions by zeolite 4A, zeolite 13X and bentonite, J. Environ. Manage. 81 (2006) 265–272.
  • S.A. Al-Jlil, Removal of heavy metals from industrial wastewaters by adsorption using local bentonite clay and roasted date pits in Saudi Arabia. Trends Appl. Sci. Res. 5 (2010) 138–145.
  • N. Zahra, S.T. Sheikh, K. Javed, Batch adsorption studies of cadmium in wastewater on bentonites. J. Chem. Soc. Pak. 30 (2008) 797–799.
  • M. Hamidpour, M. Kalbasi, M. Afyuni, K. Shariatmadari, Kinetic and isothermal studies of cadmium sorption onto bentonite and zeolite. Int. Agrophys. 24 (2010) 253–259.
  • Y.G. Chen, W.M. Ye, X.M. Yang, F.Y. Deng, Y. He, Effect of contact time, pH and ionic strength on Cd(II) adsorption from aqueous solution onto bentonite from Gaomiaozi, China. Environ. Earth Sci. 64 (2011) 329–336.
  • F.A. Dawodu, G.K. Akpomie, I.C. Ogbu, Isotherm modeling on the equilibrium of cadmium (II) from solution by Agbani Clay. Int. J. Multi. Sci. Eng. 3 (2012) 9–14.
  • G. Bereket, A.Z. Aroğuz, M.Z. Özel, Removal of Pb(II), Cd(II), Cu(II) and Zn(II) from aqueous solutions by adsorption on bentonite. J. Colloid Interface Sci. 187 (1997) 338–343.
  • Y.F. Nava, M. Ulmanu, I. Anger, E. Marañón, L. Castrillón, Use of granular bentonite in the removal of mercury (II), cadmium (II) and lead (II) from aqueous solutions. Water Air Soil Pollut. 215 (2011) 239–249.
  • M.C. Brum, J.L. Capitaneo, J.F. Oliveira, Removal of hexavalent chromium from water by adsorption onto surfactant modified montmorillonite. Miner. Eng. 23 (2010) 270–272.
  • Y. Chen, B. Zhu, D. Wu, O. Wang, Y. Yang, W. Ye, J. Guo, Eu(III) adsorption using di(2-thylhexly) phosphoric acid-immobilized magnetic GMZ bentonite. Chem. Eng. J. 181–182 (2012) 387–396.
  • V. Copcia, C. Hristodor, N. Bilba, E. Popovici, Use of natural and modified clay for Zn2+ removal. Rev. Chím. 62 (2011) 195–198.
  • M. Galamboš, M. Daňo, O. Rosskopfová, F. Šeršeň, J. Kufčáková, R. Adamcová, P. Rajec, Effect of gamma-irradiation on adsorption properties of Slovak bentonites. J. Radioanal. Nucl. Chem. 292 (2012) 481–492.
  • S. Karahan, M. Yurdakoç, S. Yoldaş, K. Yurdakoç, Removal of boron from aqueous solution by clays and modified clays. J. Colloid Interface Sci. 293 (2006) 36–42.
  • T. Vengris, R. Binkien, A. Sveikauskait, Nickel, copper and zinc removal from waste water by a modified clay sorbent. Appl. Clay Sci. 18 (2001) 183–190.
  • C. Volzone, L.B. Garrido, Retention of chromium by modified Al–bentonite. Cerâmica 48 (2002) 153–156.
  • G. Wang, K. Chen, W. Li, T. Liu, L. Qi, X. Zhang, Y. Zhang, L. Jiang, H. Zhu, Y. Zhu, J. Wang, Preparation of nano magnetic modified bentonite materials for reclamation of coking wastewater. ICMREE2011—Proc. International Conference on Materials for Renewable Energy and Environment 1 (2011) 1027–1030.
  • W.Q. Wang, Q.M. Feng, F. Dong, H. Li, X. Zhao, Preparation and properties of Fe3O4/clinoptilolite magnetic composite. Wuji Cailiao Xuebao/J. Inorg. Mater. 25 (2010) 401–405.
  • W. Wenjuan, Ch Changwei, W. Xin, S. Li, Effect of the structure and acidic property of activated bentonite on removal of olefin aromatics, China petroleum process. Petrochem. Technol. 4 (2009) 23–26.
  • N. Bouchenafa-Saïb, K. Khouli, O. Mohammedi, Preparation and characterization of pillared montmorillonite: application in adsorption of cadmium. Desalination 217 (2007) 282–290.
  • L.G. Yan, X.Q. Shan, B. Wen, G. Owens, Adsorption of cadmium onto Al(13)-pillared acid-activated montmorillonite. J. Hazard. Mater. 156 (2008) 499–508.
  • J.X. Lina, L. Wang, Treatment of textile wastewater using organically modified bentonite. Desalin. Water Treat. 25 (2011) 25–30.
  • R. Huang, D. Zheng, B. Yang, B. Wang, Preparation and simultaneous sorption of CTMAB–HTCC bentonite towards phenol and Cd(II). Desalin. Water Treat. 44 (2012) 276–283.
  • O. Abollino, M. Aceto, M. Malandrino, C. Sarzanini, E. Mentasti, Adsorption of heavy metals on Na–montmorillonite, effect of pH and organic substances. Water Res. 37 (2003) 1619–1627.
  • S. Budsaereechai, K. Kamwialisak, Y. Ngernyen, Adsorption of lead, cadmium and copper on natural and acid activated bentonite clay. KK Res. J. 17 (2012) 800–810.
  • L.C.A. Oliveira, R.V.R.A. Rios, J.D. Fabris, K. Sapag, V.K. Garg, R.M. Lago, Clay-iron oxide magnetic composites for the adsorption of contaminants in water. Appl. Clay Sci. 22 (2003) 169–177.
  • M. Breitbach, D. Bathen, Influence of ultrasound on adsorption processes. Ultrason. Sonochem. 8 (2001) 277–283.
  • M.H. Entezari, T.R. Bastami, Sono-sorption as a new method for the removal of lead ion from aqueous solution. J. Hazard. Mater. B137 (2006) 959–964.
  • M.H. Entezari, Z.S. Al-Hoseini, Sono-sorption as a new method for the removal of methylene blue from aqueous solution. Ultrason. Sonochem. 14 (2007) 599–604.
  • M.H. Entezari, T. Soltani, Simultaneous removal of copper and lead ions from a binary solution by sono-sorption process. J. Hazard. Mater. 160 (2008) 88–93.
  • O. Hamdaoui, E. Naffrechoux, Adsorption kinetics of 4-chlorophenol onto granular activated carbon in the presence of high frequency ultrasound. Ultrason. Sonochem. 16 (2009) 15–22.
  • J. Laurent, M. Casellas, Ch Dagot, Heavy metals uptake by sonicated activated sludge: Relation with floc surface properties. J. Hazard. Mater. 162 (2009) 652–660.
  • D.D. Milenković, P.V. Dašić, V.B. Veljković, Ultrasound-assisted adsorption of copper(II) ions on hazelnut shell activated carbon. Ultrason. Sonochem. 16 (2009) 557–563.
  • O. Hamdaoui, M. Chiha, E. Naffrechoux, Ultrasound-assisted removal of malachite green from aqueous solution by dead pine needles. Ultrason. Sonochem. 15 (2008) 799–807.
  • M. Karimi, M.H. Entezari, M. Chamsaz, Sorption studies of nitrate ion by a modified beet residue in the presence and absence of ultrasound. Ultrason. Sonochem. 17 (2010) 711–717.
  • O. Korkut, E. Sayan, O. Lacin, B. Bayrak, Investigation of adsorption and ultrasound assisted desorption of lead (II) and copper (II) on local bentonite: A modelling study. Desalination 259 (2010) 243–248.
  • G. Jing, Z. Zhou, L. Song, M. Dong, Ultrasound enhanced adsorption and desorption of chromium (VI) on activated carbon and polymeric resin. Desalination 279 (2011) 423–427.
  • O. Hamdaoui, Intensification of the sorption of Rhodamine B from aqueous phase by loquat seeds using ultrasound. Desalination 271 (2011) 279–286.
  • M.H. Entezari, T.R. Bastami, Influence of ultrasound on cadmium ion removal by sorption process. Ultrason. Sonochem 15 (2008) 428–432.
  • M.H. Entezari, T. Soltani, Cadmium and lead ions can be removed simultaneously from a binary aqueous solution by the sono-sorption method. Ultrason. Sonochem. 16 (2009) 495–501.
  • M.H. Entezari, N. Ghows, M. Chamsaz, Ultrasound facilitates and improves removal of Cd(II) from aqueous solution by the discarded tire rubber. J. Hazard. Mater. B131 (2006) 84–89.
  • O. Hamdaoui, Removal of cadmium from aqueous medium under ultrasound assistance using olive leaves as sorbent. Chem. Eng. Process. 48 (2009) 1157–1166.
  • K. Jesenák, Ľ. Kuchta, L. Guller, J. Fúsková, Physico-chemical Properties of Bentonite “Stará Kremnička - Jelšový potok”: I. Particle Size Distribution, Mineralia Slovaca 29 (19797) 439–442.
  • K. Jesenák, V. Hlavatý, Laboratory device for sedimentation of fine bentonite fractions. Scripta Fac. Sci. Nat. Univ. Masarik. Brun. Geol. 28–29 (2000) 33–36.
  • K. Lagarec, D.G. Rancourt, Recoil-Mössbauer spectral analysis software for Windows, Version.02, University of Ottawa, Department of Physics, Ottava, 1998.
  • A. Mockovčiaková, Z. Orolínová, Adsorption properties of modified bentonite clay. Cheminė Technologija 50 (2009) 47–50.
  • Z. Orolínová, A. Mockovčiaková, Sorption of cadmium (II) from aqueous solution by magnetic clay composite. Desalin. Water Treat. 24 (2010) 284–292.
  • E. Murad, J.H. Johnston, Iron oxides and oxyhydroxides. in: G.J. Long (Ed.) Mössbauer Spectroscopy Applied to Inorganic Chemistry. Plenum Press, New York, 1987, pp. 507–582.
  • E. Murad, The characterization of soils, clays and clay firing products. Hyperfine Interact. 111 (1998) 251–259.
  • E. Eren, B. Afsin, An investigation of Cu(II) adsorption by raw and acid-activated bentonite: a combined potentiometric, thermodynamic, XRD, IR, DTA study. J. Hazard. Mater. 151 (2008) 682–691.
  • J. Konta, Textural variation and composition of bentonite derived from basaltic ash, Clays. Clay Miner. 34 (1986) 257–265.
  • V. Arámbula-Villazana, M. Solache-Ríos, M.T. Olguín, M.T, Sorption of cadmium from aqueous solutions at different temperatures by mexican HEU-type zeolite rich tuff, J. Inclusion Phenom. Macrocyclic Chem. 55 (2006) 229–236.
  • Y.-n. Chen, D.-ch. Zhang, M, Chen, Y.-ch. Ding, Biosorption properties of cadmium (II) and zinc(II) from aqueous solution by tea fungus, Desalin. Water Treat. 8 (2009) 118–123.
  • A. Özer, H.B. Pirinççi, The adsorption of Cd(II) ions on sulphuric acid-treated wheat bran. J. Hazard. Mater. B137 (2006) 849–855.
  • A. Mockovčiaková, Z. Orolínová, J. Škvarla, Enhancement of the bentonite sorption properties. J. Hazard. Mater. 180 (2010) 274–281.
  • Y.S. Ho, W.T. Chiu, Ch Wang, Regression analysis for the sorption isotherms of basic dyes on sugarcane dust. Bioresour. Technol. 96 (2005) 1285–1291.
  • T. Shahwan, H.N. Erten, Thermodynamic parameters of Cs+ sorption on natural clays. J. Radioanal. Nucl. Chem. 253 (2002) 115–120.
  • D. Xu, X.L. Tan, C.L. Chen, X.K. Wang, Adsorption of Pb(II) from aqueous solution to MX-80 bentonite: Effect of pH, ionic strength, foreign ions and temperature. Appl. Clay Sci. 41 (2008) 37–46.

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