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Articles

Adsorption of Cr (VI) by chitosan with different deacetylation degrees

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Pages 7690-7699 | Received 07 Dec 2012, Accepted 16 Feb 2013, Published online: 02 Apr 2013

References

  • A.B. Albadarin, C. Mangwandi, A.H. Al-Muhtaseb, G.M. Walker, S.J. Allen, M.M. Ahmad, Kinetic and thermodynamics of chromium ions adsorption onto low-cost dolomite adsorbent. Chem. Eng. J. 179 (2012) 193–202.
  • W.S. Wan Ngah, A. Kamari, S. Fatinathan, P.W. Ng, Adsorption of chromium from aqueous solution using chitosan beads. Adsorption 12 (2006) 249–257.
  • I. Ali, M. Asim, T.A. Khan, Low cost adsorbents for the removal of organic pollutants from wastewater. J. Environ. Manage. 113 (2012) 170–183.
  • R.B. Garcia-Reyes, J.R. Rangel-Mendez, Adsorption kinetics of chromium (III) ions on agro-waste materials. Bioresour. Technol. 101 (2010) 8099–8108.
  • E. Guibal, Interactions of metal ions with chitosan-based sorbents: A review. Sep. Purif. Technol. 38 (2004) 43–74.
  • H. Wang, C. Li, C. Bao, L. Liu, X. Liu, Adsorption and determination of Pd(II) and Pt(IV) onto 30-Nitro-4-amino azobenzene modified chitosan. J. Chem. Eng. Data 56 (2011) 4203–4207.
  • E. Nathaniel, A. Kurniawan, F.E. Soeteredjo, S. Ismadji, Organo-bentonite for the adsorption of Pb(II) from aqueous solution: Temperature dependent parameters of several adsorption equations. Desal. Wat. Treat. 36 (2011) 280–288.
  • X.S. Wang, F. Liu, H.J. Lu, P. Zhang, H.Y. Zhou, Adsorption kinetics of Cd (II) from aqueous solution by magnetite. Desal. Wat. Treat. 36 (2011) 203–209.
  • A.K. Hegazya, N.T. Abdel-Ghanib, G.A. El-Chaghabyc, Factorial design for optimizing the removal of aluminium from aqueous solutions by adsorption on Typha domingensis phytomass. Desal. Wat. Treat. 36 (2011) 392–399.
  • G. Blázquez, M. Calero, F. Hernáinz, G. Tenorio, M.A. Martín-Lara, Equilibrium biosorption of lead(II) from aqueous solutions by solid waste from olive-oil production. Chem. Eng. J. 160 (2010) 615–622.
  • L. Pelit, F.N. Ertaş, A.E. Eroğlu, T. Shahwan, H. Tural, Biosorption of Cu(II) and Pb(II) ions from aqueous solution by natural spider silk. Bioresour. Technol. 102 (2011) 8807–8813.
  • M.A. Javed, H.N. Bhatti, M.A. Hanif, R. Nadeem, Kinetic and equilibrium modeling of Pb(II) and CO(II) sorption onto rose waste biomass. Sep. Sci. Technol. 42 (2007) 3641–3656.
  • N.S. Barot, H.K. Bagla, Eco-friendly waste water treatment by cow dung powder (Adsorption studies of Cr(III), Cr(VI) and Cd(II) using tracer technique). Desal. Wat. Treat. 38 (2012) 104–113.
  • W.S. Wan Ngah, L.C. Teong, M.A.K.M. Hanafiah, Adsorption of dyes and heavy metal ions by chitosan composites: A review. Carbohydr. Polym. 83 (2011) 1446–1456.
  • L. Zhou, J. Jin, Z. Liu, X. Liang, C. Shang, Adsorption of acid dyes from aqueous solutions by the ethylenediamine-modified magnetic chitosan nanoparticles. J. Hazard. Mater. 185 (2011) 1045–1052.
  • P.O. Osifo, A. Webster, H. Van der Merwe, H.W.J.P. Neomagus, M.A. Van der Gun, D.M. Grant, The influence of the degree of cross-linking on the adsorption properties of chitosan beads. Bioresour. Technol. 99 (2008) 7377–7382.
  • C.M. Futalan, C.C. Kan, M.L. Dalida, K.J. Hsien, C. Pascua, M. Wan, Comparative and competitive adsorption of copper, lead, and nickel using chitosan immobilized on bentonite. Carbohydr. Polym. 83 (2010) 528–536.
  • H.H. Santos, C.A. Demarchi, C.A. Rodrigues, M. Greneche, N. Nedelko, A.S. Lawska-Waniewska, Adsorption of As(III) on chitosan-Fe-crosslinked complex (Ch–Fe). Chemosphere 82 (2011) 278–283.
  • M. Benavente, L. Moreno, J. Martinez, Sorption of heavy metals from gold mining wastewater using chitosan. J. Taiwan Inst. Chem. Eng. 42 (2011) 976–988.
  • Y.A. Aydin, N.D. Aksoy, Adsorption of chromium on chitosan: Optimization, kinetics and thermodynamics. Chem. Eng. J. 151 (2009) 188–194.
  • G. Crini, P.M. Badot, Application of chitosan, a natural aminopolysaccharide, for dye removal from aqueous solutions by adsorption processes using batch studies: A review of recent literature. Prog. Polym. Sci. 33 (2008) 399–447.
  • R.F. Weska, J.M. Moura, L.M. Batista, J. Rizzi, L.A.A. Pinto, Optimization of deacetylation in the production of chitosan from shrimp wastes: Use of response surface methodology. J. Food Eng. 80 (2007) 749–753.
  • C.M. Moura, J.M. Moura, N.M. Soares, L.A.A. Pinto, Evaluation of molar weight and deacetylation degree of chitosan during chitin deacetylation reaction: Used to produce biofilm. Chem. Eng. Proces. 50 (2011) 351–355.
  • G.L. Dotto, V.C. Souza, L.A.A. Pinto, Drying of chitosan in a spouted bed: The influences of temperature and equipment geometry in powder quality. LWT-Food Sci. Technol. 44 (2011) 1786–1792.
  • X. Jiang, L. Chen, W.I. Zhong, A new linear potentiometric titration method for the determination of deacetylation degree of chitosan. Carbohydr. Polym. 54 (2003) 457–463.
  • R.M. Silverstein, F.X. Webster, D.J. Kiemle, Spectrometric identification of organic compounds. Wiley, New York, NY, 2007.
  • J. Kumirska, M. Czerwicka, Z. Kaczyński, A. Bychowska, K. Brzozowski, J. Thöming, P. Stepnowski, Application of spectroscopic methods for structural analysis of chitin and chitosan. Mar. Drugs 8 (2010) 1567–1636.
  • R.H. Myers, D.C. Montgomery, Response surface methodology: Process and product optimization using designed experiments. Wiley, New York, NY, 2002.
  • I. Langmuir, The adsorption of gases on plane surfaces of glass, mica and platinum. J. Amer. Chem. Soc. 40 (1918) 1361–1403.
  • H. Freundlich, Over the adsorption in solution. Z. Physic. Chem. A57 (1906) 358–471.
  • O. Redlich, D.L. Peterson, A useful adsorption isotherm. J. Chem. Phys. 63 (1959) 1024–1027.
  • R. Sips, On the structure of a catalyst surface. J. Chem. Phys. 16 (1948) 490–495.
  • H. Qiu, L.L. Pan, Q.J. Zhang, W. Zhang, Q. Zhang, Critical review in adsorption kinetic models. J. Zhejiang Univ. Sci. A 10 (2009) 716–724.
  • Y.S. Ho, G. Mckay, Kinetic models for the sorption of dye from aqueous solution by wood. Proc. Safety Environ. Protect. 76 (1998) 183–191.
  • F.C. Wu, R.L. Tseng, R.S. Juang, Characteristics of Elovich equation used for the analysis of adsorption kinetics in dye chitosan systems. Chem. Eng. J. 150 (2009) 366–373.
  • S.K. Milonjić, A consideration of the correct calculation of thermodynamic parameters of adsorption. J. Serb. Chem. Soc. 72 (2007) 1363–1367.
  • Y. Liu, Is the free energy change of adsorption correctly calculated? J. Chem. Eng. Data 54 (2009) 1981–1985.
  • G.L. Dotto, E.C. Lima, L.A.A. Pinto, Biosorption of food dyes onto Spirulina platensis nanoparticles: Equilibrium isotherm and thermodynamic analysis. Bioresour. Technol. 103 (2012) 123–130.
  • D. Hritcu, D. Humelnicu, G. Dodi, M.I. Popa, Magnetic chitosan composite particles: Evaluation of thorium and uranyl ion adsorption from aqueous solutions. Carbohydr. Polym. 87 (2012) 1185–1191.
  • P. Yuan, D. Liu, M. Fan, D. Yang, R. Zhu, F. Ge, J. Zhu, H. He, Removal of hexavalent chromium [Cr(VI)] from aqueous solutions by the diatomite-supported/unsupported magnetite nanoparticles. J. Hazard. Mater. 173 (2010) 614–621.
  • J.S. Piccin, M.L.G. Vieira, J.O. Gonçalves, G.L. Dotto, L.A.A. Pinto, Adsorption of FD & C Red No. 40 by chitosan: Isotherms analysis. J. Food Eng. 95 (2009) 16–20.
  • H. Demiral, I. Demiral, F. Tumsek, B. Karabacakoglu, Adsorption of chromium (VI) from aqueous solution by activated carbon derived from olive bagasse and applicability of different adsorption models. Chem. Eng. J. 144 (2007) 188–196.
  • A.H. Sulaymon, B.A. Abid, J.A. Al-Najar, Removal of lead copper chromium and cobalt ions onto granular activated carbon in batch and fixed-bed adsorbers. Chem. Eng. J. 155 (2009) 647–653.
  • J.S. Piccin, G.L. Dotto, L.A.A. Pinto, Adsorption isotherms and thermochemical data of FD & C Red No. 40 binding by chitosan. Braz. J. Chem. Eng. 28 (2011) 295–304.
  • G.L. Dotto, L.A.A. Pinto, Adsorption of food dyes acid blue 9 and food yellow 3 onto chitosan: Stirring rate effect in kinetics and mechanism. J. Hazard. Mater. 187 (2011) 164–170.

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