121
Views
4
CrossRef citations to date
0
Altmetric
Articles

Adsorption of methyl orange from aqueous solution using chitosan microspheres modified by β-cyclodextrin

, , &
Pages 11850-11858 | Received 14 Aug 2014, Accepted 23 Apr 2015, Published online: 15 May 2015

References

  • L.H. Ai, C.Y. Zhang, L.Y. Meng, Adsorption of methyl orange from aqueous solution on hydrothermal synthesized Mg–Al layered double hydroxide, J. Chem. Eng. Data 56 (2011) 4217–4225.10.1021/je200743u
  • S.H. Chen, J. Zhang, C.L. Zhang, Q.Y. Yue, Y. Li, C. Li, Equilibrium and kinetic studies of methyl orange and methyl violet adsorption on activated carbon derived from Phragmites australis, Desalination 252 (2010) 149–156.10.1016/j.desal.2009.10.010
  • G.K. Parshetti, A.A. Telke, D.C. Kalyani, S.P. Govindwar, Decolorization and detoxification of sulfonated azo dye methyl orange by Kocuria rosea MTCC 1532, J. Hazard. Mater. 176 (2010) 503–509.10.1016/j.jhazmat.2009.11.058
  • N. Mathur, P. Bhatnagar, P. Sharma, Review of the mutagenicity of textile dye products, Univ. J. Environ. Res. Technol. 2 (2012) 1–18.
  • J.R. Baseri, P.N. Palanisamy, P. Sivakumar, Polyaniline nano composite for the adsorption of reactive dye from aqueous solutions: Equilibrium and kinetic studies, Asian J. Chem. 25 (2013) 4145–4149.
  • S. Kiran, S. Ali, M. Asgher, Degradation and mineralization of azo dye reactive blue 222 by sequential photo-Fenton’s oxidation followed by aerobic biological treatment using white rot fungi, Bull. Environ. Contam. Toxicol. 90 (2013) 208–215.10.1007/s00128-012-0888-0
  • S.K. Nataraj, K.M. Hosamani, T.M. Aminabhavi, Nanofiltration and reverse osmosis thin film composite membrane module for the removal of dye and salts from the simulated mixtures, Desalination 249 (2009) 12–17.10.1016/j.desal.2009.06.008
  • G. Sheng, H. Dong, Y. Li, Characterization of diatomite and its application for the retention of radiocobalt: Role of environmental parameters, J. Environ. Radioact. 113(113) (2012) 108–115.10.1016/j.jenvrad.2012.05.011
  • G. Sheng, R. Shen, H. Dong, Y. Li, Colloidal diatomite, radionickel, and humic substance interaction: A combined batch, XPS, and EXAFS investigation, Environ. Sci. Pollut. Res. Int. 20 (2013) 3708–3717.10.1007/s11356-012-1278-1
  • G. Sheng, L. Ye, Y. Li, H. Dong, H. Li, X. Gao, Y. Huang, EXAFS study of the interfacial interaction of nickel (II) on titanate nanotubes: Role of contact time, pH and humic substances, Chem. Eng. J. 248 (2014) 71–78.10.1016/j.cej.2014.03.030
  • M. Auta, B.H. Hameed, Coalesced chitosan activated carbon composite for batch and fixed-bed adsorption of cationic and anionic dyes, Colloids Surf., B 105 (2013) 199–206.10.1016/j.colsurfb.2012.12.021
  • S. Nethaji, A. Sivasamy, A.B. Mandal, Adsorption isotherms, kinetics and mechanism for the adsorption of cationic and anionic dyes onto carbonaceous particles prepared from Juglans regia shell biomass, Int. J. Environ. Sci. Technol. 10 (2013) 231–242.10.1007/s13762-012-0112-0
  • G.Z. Kyzas, M. Kostoglou, A.A. Vassiliou, N.K. Lazaridis, Treatment of real effluents from dyeing reactor: Experimental and modeling approach by adsorption onto chitosan, Chem. Eng. J. 168 (2011) 577–585.10.1016/j.cej.2011.01.026
  • T.Y. Liu, L. Zhao, Z.L. Wang, Removal of hexavalent chromium from wastewater by Fe 0 -nanoparticles-chitosan composite beads: Characterization, kinetics and thermodynamics, Water Sci. Technol. 66 (2012) 1044–1051.10.2166/wst.2012.278
  • B.H. Guan, W.M. Ni, Z.B. Wu, Y. Lai, Removal of Mn (II) and Zn (II) ions from flue gas desulfurization wastewater with water-soluble chitosan, Sep. Purif. Technol. 65 (2009) 269–274.10.1016/j.seppur.2008.10.037
  • M. Visa, A.M. Chelaru, Hydrothermally modified fly ash for heavy metals and dyes removal in advanced wastewater treatment, Appl. Surf. Sci. 303 (2014) 14–22.10.1016/j.apsusc.2014.02.025
  • P. He, S.S. Davisa, L. Illum, Chitosan microspheres prepared by spray drying, Int. J. Pharm. 187 (1999) 53–65.10.1016/S0378-5173(99)00125-8
  • C.M. Futalan, C.C. Kan, M.L. Dalida, K.J. Hsien, C. Pascua, M.W. Wan, Comparative and competitive adsorption of copper, lead, and nickel using chitosan immobilized on bentonite, Carbohydr. Polym. 83 (2011) 528–536.10.1016/j.carbpol.2010.08.013
  • L. Wang, A.Q. Wang, Adsorption characteristics of Congo Red onto the chitosan/montmorillonite nanocomposite, J. Hazard. Mater. 147 (2007) 979–985.10.1016/j.jhazmat.2007.01.145
  • I.S. Lima, E.S. Ribeiro, C. Airoldi, The use of chemical modified chitosam with succinic anhydride in the methylene blue adsorption, Quim. Nova 29 (2006) 501–506.10.1590/S0100-40422006000300018
  • Q.L. Ma, F.F. Shen, X.F. Lu, W.R. Bao, H.Z. Ma, Studies on the adsorption behavior of methyl orange from dye wastewater onto activated clay, Desalin. Water Treat. 51 (2013) 3700–3709.10.1080/19443994.2013.782083
  • G. Sheng, Y. Li, H. Dong, D. Shao, Environmental condition effects on radionuclide 64Cu (II) sequestration to a novel composite: Polyaniline grafted multiwalled carbon nanotubes, J. Radioanal. Nucl. Chem. 293 (2012) 797–806.10.1007/s10967-012-1735-9
  • I. Langmuir, The constitution and fundamental properties of solids and liquids. Part I. solids, J. Am. Chem. Soc. 38 (1916) 2221–2295.10.1021/ja02268a002
  • H. Freundlich, Uber die adsorption in losungen, Zeitsch. Phys. Chem. 57 (1906) 385–470.
  • K.R. Hall, L.C. Eagleton, A. Acrivos, T. Vermeulen, Pore- and solid-diffusion kinetics in fixed-bed adsorption under constant-pattern conditions, Ind. Eng. Chem. Fundam. 5 (1966) 212–223.10.1021/i160018a011
  • Y.S. Ho, Removal of copper ions from aqueous solution by tree fern, Water Res. 37 (2003) 2323–2330.10.1016/S0043-1354(03)00002-2
  • K.K. Singh, A.K. Singh, S.H. Hasan, Low cost bio-sorbent ‘wheat bran’ for the removal of cadmium from wastewater: Kinetic and equilibrium studies, Bioresour. Technol. 97 (2006) 994–1001.10.1016/j.biortech.2005.04.043
  • W. Rudzinski, W. Plazinski, Kinetics of solute adsorption at solid/solution interfaces: A theoretical development of the empirical pseudo-first and pseudo second order kinetic rate equations, based on applying the statistical rate theory of interfacial transport, J. Phys. Chem. B 110 (2006) 16514–16525.10.1021/jp061779n
  • Y.S. Ho, G. Mckay, The kinetics of sorption of divalent metal ions onto sphagnum moss peat, Water Res. 34 (2000) 735–742.10.1016/S0043-1354(99)00232-8
  • Y.S. Al-Degs, M.I. El-Barghouthi, A.H. El-Sheikh, G.A. Walker, Effect of solution pH, ionic strength, and temperature on adsorption behavior of reactive dyes on activated carbon, Dyes Pigm. 77 (2008) 16–23.10.1016/j.dyepig.2007.03.001
  • A.M. Rampey, R.J. Umpleby, G.T. Rushton, J.C. Iseman, R.N. Shah, K.D. Shimizu, K.D. Shimizu, Characterization of the imprint effect and the influence of imprinting conditions on affinity, capacity, and heterogeneity in molecularly imprinted polymers using the Freundlich isotherm-affinity distribution analysis, Anal. Chem. 76 (2004) 1123–1133.10.1021/ac0345345
  • S. Arfaoui, N. Frini-Srasra, E. Srasra, Modelling of the adsorption of the chromium ion by modified clays, Desalination 222 (2008) 474–481.10.1016/j.desal.2007.03.014
  • A.K. Meena, G.K. Mishra, P.K. Rai, C. Rajagopal, P.N. Nagar, Removal of heavy metal ions from aqueous solutions using carbon aerogel as an adsorbent, J. Hazard. Mater. 122 (2005) 161–170.10.1016/j.jhazmat.2005.03.024
  • J.X. Zhang, Q.X. Zhou, L.L. Ou, Kinetic, isotherm, and thermodynamic studies of the adsorption of methyl orange from aqueous solution by chitosan/alumina composite, J. Chem. Eng. Data 57 (2012) 412–419.
  • S. Hosseini, M.A. Khan, M.R. Malekbala, W. Cheah, T.S.Y. Choong, Carbon coated monolith, a mesoporous material for the removal of methyl orange from aqueous phase: Adsorption and desorption studies, Chem. Eng. J. 171 (2011) 1124–1131.10.1016/j.cej.2011.05.010
  • R. Jiang, H. Zhu, Y. Fu, Equilibrium and kinetic studies on adsorption of methyl orange from aqueous solution on chitosan/kaolin/γ-Fe2O3 nanocomposite, in: International Conference on Remote Sensing, Environment Transport, Nanjing, vol. 24 (2011) 7565–7568.
  • W. Cheah, S. Hosseini, M.A. Khan, T.G. Chuah, T.S.Y. Choong, Acid modified carbon coated monolith for methyl orange adsorption, Chem. Eng. J. 215–216 (2013) 747–754.10.1016/j.cej.2012.07.004
  • Y. Li, K. Sui, R. Liu, X. Zhao, Y. Zhang, H. Liang, Y. Xia, Removal of methyl orange from aqueous solution by calcium alginate/multi-walled carbon nanotubes composite fibers, Eng. Proc. 16 (2012) 863–868.10.1016/j.egypro.2012.01.138
  • H. Chen, J. Zhao, J. Wu, G. Dai, Isotherm, thermodynamic, kinetics and adsorption mechanism studies of methyl orange by surfactant modified silkworm exuviae, J. Hazard. Mater. 192 (2011) 246–254.
  • R. Jiang, Y.-Q. Fu, H.-Y. Zhu, J. Yao, L. Xiao, Removal of methyl orange from aqueous solutions by magnetic maghemite/chitosan nanocomposite films: Adsorption kinetics and equilibrium, J. Appl. Polym. Sci. 125 (2012) E540–E549.10.1002/app.37003

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.