200
Views
7
CrossRef citations to date
0
Altmetric
Original Articles

Utilization of polyampholyte hydrogels for simultaneous removal of textile dyes from aqueous solutions

&
Pages 1777-1790 | Received 03 Oct 2017, Accepted 14 Feb 2018, Published online: 02 Mar 2018

References

  • Robinson, T.; McMullan, G.; Marchant, R.; Nigam, P. (2001) Remediation of dyes in textile effluent: A critical review on current treatment technologies with a proposed alternative. Bioresource Technology, 77: 247.
  • Jing, H.; Song, H.; Liang, Z.; Fuxing, G.; Yuh-Shan, H. (2010) Equilibrium and thermodynamic parameters of adsorption of methylene blue onto rectorite. Fresen Environmental Bulletin, 19: 11a.
  • Gulcemal, Y.G.; Senkal, B.H. (2016) Formation of composites between polyvinylimidazole and bentonites and their use for removal of remazol black B from water. Seperation Science and Technology, 51: 2596.
  • Elwakeel, K.Z.; El-Bindary, A.A.; Ismail, A.; Morshidy, A.M. (2017) Magnetic chitosan grafted with polymerized thiourea for remazol brilliant blue R recovery: effects of uptake conditions. Journal of Dispersion Science and Technology, 38: 943.
  • Khin, M.M.; Nair, A.S.; Babu, V.J.; Murugan, R.; Ramakrishna, S. (2012) A review on nanomaterials for environmental remediation. Energy & Environmental Science, 5: 8075.
  • Kudaibergenov, S.E.; Sigitov, V.B. (1999) Swelling, shrinking, deformation, and oscillation of polyampholyte gels based on vinyl 2-aminoethyl ether and sodium acrylate. Langmuir, 15: 4230.
  • Kun, X.; Tan, Y.; Chen, Q.; An, H.; Li, W.; Dong, L.; Wang, P. (2010) A novel multi-responsive polyampholyte composite hydrogel with excellent mechanical strength and rapid shrinking rate. Journal of Colloid and Interface Science, 345: 360.
  • Koizhaiganova, R.B.; Kudaibergenov, S.E.; Geckeler, K.E. (2002) A novel class of betaine-type polyampholytes with stimuli-responsive and complexing properties. Macromolecular Rapid Communications, 23: 1041.
  • Mohan, Y.M.; Geckeler, K.E. (2007) Polyampholytic hydrogels: poly(N-isopropylacrylamide)-based stimuli-responsive networks with poly(ethyleneimine). Reactive & Functional Polymers, 67: 144.
  • Kudaibergenov, S.E.; Nuraje, N.; Khutoryanskiy, V.V. (2012) Amphoteric nano-, micro-, and macrogels, membranes, and thin films. Soft Matter, 8: 9302.
  • Wang, S.; Zhu, Z.H. (2007) Effects of acidic treatment of activated carbons on dye adsorption. Dyes Pigments, 75: 306.
  • Wu, Z.; Xiong, Y.; Guan, G.; Kong, L.; Tian, S. (2014) Preparation and adsorption behavior of new hollow-like spherical sludge chars for methylene blue. R.S.C. Advances, 4: 55256.
  • Sun, L.; Tian, C.; Wang, L.; Zou, J.; Mu, G.; Fu, H. (2011) Magnetically separable porous graphitic carbon with large surface area as excellent adsorbents for metal ions and dye. Journal of Material Chemistry, 21: 7232.
  • Jesionowski, T.;. (2005) Characterisation of pigments obtained by adsorption of C.I. basic blue 9 and C.I. acid orange 52 dyes onto silica particles precipitated via the emulsion route. Dyes Pigments, 67: 81.
  • Errais, E.; Duplay, J.; Darragi, F.; M’Rabet, I.; Aubert, A.; Huber, F.; Morvan, G. (2011) Efficient anionic dye adsorption on natural untreated clay: kinetic study and thermodynamic parameters. Desalination, 275: 74.
  • Bhatt, A.S.; Sakaria, P.L.; Vasudevan, M.; Pawar, R.R.; Sudheesh, N.; Bajaj, H.C.; Mody, H.M. (2012) Adsorption of an anionic dye from aqueous medium by organoclays: equilibrium modeling, kinetic and thermodynamic exploration. R.S.C. Advances, 2: 8663.
  • Kilinc, A.S.; Ozbayrak, O.; Alpat, S.; Akcay, H. (2008) The adsorption kinetics and removal of cationic dye, toluidine blue O from aqueous solution with Turkish zeolite. Journal of Hazardous Materials, 151: 213.
  • Soltani, R.D.C.; Khatae, A.R.; Safari, M.; Joo, S.W. (2013) Preparation of bio-silica/chitosan nanocomposite for adsorption of a textile dye in aqueous solutions. International Biodeterioration & Biodegradation, 85: 383.
  • Duran, D.; Ozdes, C.; Gundogdu, A.; Senturk, H.B. (2011) Kinetics and isotherm analysis of basic dyes adsorption onto almond shell (Prunus dulcis) as a low cost adsorbent. Journal of Chemical and Engineering Data, 56 (5): 2136.
  • Kono, H.; Ogasawara, K.; Kusumoto, R.; Oshima, K.; Hashimoto, H.; Shimizu, Y. (2016) Cationic cellulose hydrogels cross-linked by poly(ethyleneglycol): preparation, molecular dynamics, and adsorption of anionic dyes. Carbohydrate Polymers, 152: 170.
  • Bajpai, A.K.; Giri, A. (2003) Water sorption behaviour of highly swelling (carboxy methylcellulose-g-polyacrylamide) hydrogels and release of potassium nitrate as agrochemical. Carbohydrate Polymers, 53: 271.
  • Peppas, N.A.; Franson, N.M. (1983) The swelling interface number as a criterion for prediction of diffusional solute release mechanisms in swellable polymers. Journal of Polymer Science, 21: 983.
  • Nisato, G.; Munch, J.P.; Candau, S.J. (1999) Swelling, structure, and elasticity of polyampholyte hydrogels. Langmuir, 15: 4236.
  • Hu, Y.; Jiang, X.; Ding, Y.; Ge, H.; Yuan, Y.; Yang, C. (2002) Synthesis and characterization of chitosan–poly(acrylic acid) nanoparticles. Biomaterials, 23: 3193.
  • Taleb, M.F.; Samia, A.E.; Nabil, A.; Hegazy, A. (2007) Adsorption and controlled release of chlortetracycline HCl by using multifunctional polymeric hydrogels. European Polymer Journal, 43: 468.
  • Fevola, M.J.; Bridges, J.K.; Kellum, M.G.; Hester, R.D.; Mccormick, C.L. (2004) pH-responsive ampholytic terpolymers of acrylamide, sodium 3-acrylamido-3-methylbutanoate, and (3-acrylamidopropyl)trimethylammonium chloride. I. synthesis and characterization. Journal of Polymer Science Part A-Polymer Chemistry, 42: 3236.
  • Kulkarni, A.R.; Soppimath, K.S.; Aminabhavi, T.M.; Rudzinski, W.E. (2001) In-vitro release kinetics of cefadroxil-loaded sodium alginate interpenetrating network beads. European Journal of Pharmaceutics Biopharmaceutics, 51: 127.
  • Peppas, N.A.; Buresa, P.; Leobandunga, W.; Ichikawa, H. (2000) Hydrogels in pharmaceutical formulations. European Journal of Pharmaceutics Biopharmaceutics, 50: 27.
  • Ekici, S.; Isıkver, Y.; Sahiner, N.; Saraydın, D. (2003) Adsorption of some textile dyes onto cross-linked poly(N-vinylpyrrolidone). Adsorption Science and Technology, 21: 651.
  • Giles, C.H.; Smith, D.; Huitson, A. (1974) A general treatment and classification of the solute adsorption isotherm, I. Theoretical. Journal of Colloid and Interface Science, 47: 755.
  • Kumar, P.S.; Ramalingam, S.; Senthamarai, C.; Niranjanaa, M.; Vijayalakshmi, P.; Sivanesan, S. (2010) Adsorption of dye from aqueous solution by cashew nut shell: studies on equilibrium isotherm, kinetics and thermodynamics of interactions. Desalination, 261: 52.
  • Butler, J.A.V.; Ockrent, C. (1930) Studies in electrocapillarity. Part III. The surface tensions of solutions containing two surface-active solutes. Journal of Physical Chemistry, 34: 2841.
  • Noroozi, B.; Sorial, G.A.; Bahrami, H.; Arami, M. (2008) Adsorption of binary mixtures of cationic dyes. Dyes and Pigments, 76: 784.
  • Chaudhari, C.V.; Jhimli, P.G.; Dubey, K.A.; Bhardwaj, Y.K.; Varshney, L. (2016) Sorption of acid and basic dyes on radiation-grafted Teflon scrap: equilibrium and kinetic sorption studies. Polymer Bulletin, 73: 2907.
  • Ergene, A.; Ada, K.; Tan, S.; Katırcıoglu, H. (2009) Removal of remazol brilliant blue dye from aqueous solutions by adsorption onto immobilized scenedesmus quadricauda: equilibrium and kinetic modeling studies. Desalination, 249: 1308.
  • Ahmad, M.A.; Rahman, N.K. (2011) Equilibrium, kinetics and thermodynamic of remazol brilliant orange 3R dye adsorption on coffee husk-based activated carbon. Chemical Engineering Journal, 170: 154.
  • Inal, M.; Erduran, N. (2015) Removal of various anionic dyes using sodium alginate/poly(N-vinyl-2-pyrrolidone) blend hydrogel beads. Polymer Bulletin, 72: 1735.
  • Tuttolomondo, M.V.; Galdoporpora, J.M.; Trichet, L. (2015) Dye-collagen interactions. Mechanism, kinetic and thermodynamic analysis. RSC Advances, 5: 57395.
  • Lazaridis, N.K.; Keenan, H. (2010) Chitosan beads as barriers to the transport of azo dye in soil column. Journal of Hazardous Materials, 173: 144.
  • Qiu, Y.; Ling, F. (2006) Role of surface functionality in the adsorption of anionic dyes on modified polymeric sorbents. Chemosphere, 64: 963.
  • Saha, T.K.; Bhoumik, N.C.; Karmaker, S. (2011) Adsorption characteristics of reactive black 5 from aqueous solution onto chitosan. Clean-Soil, Air, Water, 39: 984.
  • Pengthamkeerati, P.; Satapanajaru, T.; Singchan, O. (2008) Sorption of reactive dye from aqueous solution on biomass fly ash. Journal of Hazardous Materials, 153: 1149.
  • Sakkayawong, N.; Thiravetyan, P.; Nakbanpote, W. (2005) Adsorption mechanism of synthetic reactive dye wastewater by chitosan. Journal of Colloid and Interface Science, 286: 36.

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.