215
Views
1
CrossRef citations to date
0
Altmetric
Original Articles

Comparative studies of functionalized polyacrylamide/graphite composites for the removal of direct blue 2b from aqueous solution

&
Pages 584-597 | Received 30 Jun 2017, Accepted 26 Oct 2017, Published online: 20 Nov 2017

References

  • Yuan, B.; Qiu, L.G.; Su, H.Z.; Cao, C.L.; Jiang, J.H. (2016) Schiff base–chitosan grafted l-monoguluronic acid as a novel solid-phase adsorbent for removal of congo red. International Journal of Biological Macromolecules, 82: 355.
  • He, X.; Du, M.; Li, H.; Zhou, T. (2016) Removal of direct dyes from aqueous solution by oxidized starch cross-linked chitosan/silica hybrid membrane. International Journal of Biological Macromolecules, 82: 174.
  • Vakili, M.; Rafatullah, M.; Salamatinia, B.; Abdullah, A.Z.; Ibrahim, M.H.; Tan, K.B.; Gholami, Z.; Amouzgar, P. (2014) Application of chitosan and its derivatives as adsorbents for dye removal from water and wastewater: A review. Carbohydrate Polymers, 113: 115.
  • Chen, X.J.; Cai, J.C.; Zhang, Z.H.; Liu, L.J.; Yang, G.L. (2014) Investigation of removal of Pb (II) and Hg (II) by a novel cross-linked chitosan-poly (aspartic acid) chelating resin containing disulfide bond. Colloid and Polymer Science, 292: 2157.
  • Wang, L.; Zhang, J.; Wang, A. (2011) Fast removal of methylene blue from aqueous solution by adsorption onto chitosan-g-poly (acrylic acid)/attapulgite composite. Desalination, 266: 33.
  • Zhou, L.; Huang, J.; He, B.; Zhang, F.; Li, H. (2014) Peach gum for efficient removal of methylene blue and methyl violet dyes from aqueous solution. Carbohydrate Polymers, 101: 574.
  • Fan, J.; Shi, Z.; Lian, M.; Li, H.; Yin, J. (2013) Mechanically strong graphene oxide/sodium alginate/polyacrylamide nanocomposite hydrogel with improved dye adsorption capacity. Journal of Materials Chemistry A, 1: 7433.
  • Batista, M.; Pinto, L.; Gomes, C.; Gomes, P. (2006) Novel highly-soluble peptide–chitosan polymers: chemical synthesis and spectral characterization. Carbohydrate Polymers, 64: 299.
  • Yao, S.; Lai, H.; Shi, Z. (2012) Biosorption of methyl blue onto tartaric acid modified wheat bran from aqueous solution. Iranian Journal of Environmental Health Science & Engineering, 9: 16.
  • Ghorai, S.; Sinhamahpatra, A.; Sarkar, A.; Panda, A.B.; Pal, S. (2012) Novel biodegradable nanocomposite based on XG-g-PAM/SiO 2: application of an efficient adsorbent for Pb2+ ions from aqueous solution. Bioresource Technology, 119: 181.
  • Shi, Y.; Gui, Z.; Yu, B.; Yuen, R.K.; Wang, B.; Hu, Y. (2015) Graphite-like carbon nitride and functionalized layered double hydroxide filled polypropylene-grafted maleic anhydride nanocomposites: comparison in flame retardancy, and thermal, mechanical and UV-shielding properties. Composites Part B: Engineering, 79: 277.
  • Sutar, P.B.; Mishra, R.K.; Pal, K.; Banthia, A.K. (2008) Development of pH sensitive polyacrylamide grafted pectin hydrogel for controlled drug delivery system. Journal of Materials Science: Materials in Medicine, 19: 2247.
  • Sanghi, R.; Bhattacharya, B.; Singh, V. (2006) Use of Cassia javahikai seed gum and gum-g-polyacrylamide as coagulant aid for the decolorization of textile dye solutions. Bioresource Technology, 97: 1259.
  • Adhikary, P.; Singh, R. (2004) Synthesis, characterization, and flocculation characteristics of hydrolyzed and unhydrolyzed polyacrylamide grafted xanthan gum. Journal of Applied Polymer Science, 94: 1411.
  • Li, N.; Bai, R.; Liu, C. (2005) Enhanced and selective adsorption of mercury ions on chitosan beads grafted with polyacrylamide via surface-initiated atom transfer radical polymerization. Langmuir, 21: 11780.
  • Anirudhan, T.; Unnithan, M.; Divya, L.; Senan, P. (2007) Synthesis and characterization of polyacrylamide‐grafted coconut coir pith having carboxylate functional group and adsorption ability for heavy metal ions. Journal of Applied Polymer Science, 104: 3670.
  • Xu, Y.Y.; Zhou, M.; Geng, H.J.; Hao, J.J.; Ou, Q.Q.; Qi, S.D.; Chen, H.L.; Chen, X.G. (2012) A simplified method for synthesis of Fe 3 O 4 @ PAA nanoparticles and its application for the removal of basic dyes. Applied Surface Science, 258: 3897.
  • Hun Lee, J.; Kim, S. (2012) The determination of the adsorption performance of graphite for VOCs and formaldehyde. Energy and Buildings, 46: 56.
  • Karthikeyan, M.; Elango, K. (2008) Removal of fluoride from aqueous solution using graphite: A kinetic and thermodynamic study. Indian Journal of Chemical Technology, 15: 525.
  • Slavutsky, A.M.; Bertuzzi, M.A.; Armada, M.; García, M.G.; Ochoa, N.A. (2014) Preparation and characterization of montmorillonite/brea gum nanocomposites films. Food Hydrocolloids, 35: 270.
  • Hu, Y.; Wang, K.; Zhang, Q.; Li, F.; Wu, T.; Niu, L. (2012) Decorated graphene sheets for label- free DNA impedance biosensing. Biomaterials, 33: 1097.
  • Tian, B.; Jin, Z.; Wang, L.; Wang, R. (2012) Permeability and thermal conductivity of compact chemical and physical adsorbents with expanded natural graphite as host matrix. International Journal of Heat and Mass Transfer, 55: 4453.
  • Song, W.; Liu, M.; Hu, R.; Tan, X.; Li, J. (2014) Water-soluble polyacrylamide coated-Fe3O4 magnetic composites for high-efficient enrichment of U (VI) from radioactive wastewater. Chemical Engineering Journal, 246: 268.
  • Yang, Z.; Wu, H.; Yuan, B.; Huang, M.; Yang, H.; Li, A.; Bai, J.; Cheng, R. (2014) Synthesisof amphoteric starch-based grafting flocculants for flocculation of both positively and negatively charged colloidal contaminants from water. Chemical Engineering Journal, 244: 209.
  • Mishra, S.; Sen, G. (2011) Microwave initiated synthesis of polymethylmethacrylate grafted guar (GG-g-PMMA), characterizations and applications. International Journal of Biological Macromolecules, 48: 688.
  • Hocking, M.B.; Klimchuk, K.A.; Lowen, S. (2001) Water‐soluble acrylamide copolymers. VIII. Preparation and characterization of polyacrylamide‐co‐N‐t‐butylacrylamide. Journal of Polymer Science Part A: Polymer Chemistry, 39: 1960.
  • Muslim, T.; Alam, M.T.; Begum, H.A.; Alam, S.S. (2015) Synthesis of Some Chitosan Derivatives and Their Iron (II) Adsorption Behavior-a Class of Pharmaceutically Important Biosorbents. Bangladesh Pharmaceutical Journal, 17: 193.
  • Mathakiya, I.; Vangani, V.; Rakshit, A.K. (1998) Terpolymerization of acrylamide, acrylic acid, and acrylonitrile: synthesis and properties. Journal of Applied Polymer Science, 69: 217.
  • Saeidi, A.; Katbab, A.; Vasheghani‐Farahani, E.; Afshar, F. (2004) Formulation design, optimization, characterization and swelling behaviour of a cationic superabsorbent based on a copolymer of [3‐(methacryloylamino) propyl] trimethylammonium chloride and acrylamide. Polymer International, 53: 92.
  • El Sayed, A.; Badawy, D.S.; El Nahas, E.A.; Ghoneim, A.A.; Assy, M.G.; Mohamed, E.K.; Ragab, I.; Barakat, Y.; Ibrahim, V.; Mostafa, N. (2015) Graft Copolymerization of Acrylamide onto Corn Starch Using Mohr” s Salt/Hydrogen Peroxide Redox System in Aqueous Media under Visible Light. International Journal of Modern Organic Chemistry, 4: 1.
  • Singh, V.; Pandey, S.; Singh, S.; Sanghi, R. (2009) Removal of cadmium from aqueous solutions by adsorption using poly (acrylamide) modified guar gum–silica nanocomposites. Separation and Purification Technology, 67: 251.
  • Zhang, J.; Wang, A. (2007) Study on superabsorbent composites. IX: synthesis, characterization and swelling behaviors of polyacrylamide/clay composites based on various clays. Reactive and Functional Polymers, 67: 737.
  • Zhu, J.F.; Zhu, Y.J.; Ma, M.G.; Yang, L.X.; Gao, L. (2007) Simultaneous and Rapid Microwave Synthesis of Polyacrylamide− Metal Sulfide (Ag2S, Cu2S, HgS) Nanocomposites. The Journal of Physical Chemistry C, 111: 3920.
  • Chandra, V.; Park, J.; Chun, Y.; Lee, J.W.; Hwang, I.C.; Kim, K.S. (2010) Water-dispersible magnetite-reduced graphene oxide composites for arsenic removal. ACS Nano, 4: 3979.
  • Janaki, V.; Vijayaraghavan, K.; Oh, B.T.; Lee, K.J.; Muthuchelian, K.; Ramasamy, A.; KamalaKannan, S. (2012) Starch/polyaniline nanocomposite for enhanced removal of reactive dyes from synthetic effluent. Carbohydrate Polymers, 90: 1437.
  • Travlou, N.A.; Kyzas, G.Z.; Lazaridis, N.K.; Deliyanni, E.A. (2013) Graphite oxide/chitosan composite for reactive dye removal. Chemical Engineering Journal, 217: 256.
  • Kyzas, G.Z.; Deliyanni, E.A. (2013) Mercury (II) removal with modified magnetic chitosan adsorbents. Molecules, 18: 6193.
  • Isa, M.; Ameh, A.; Tijjani, M.; Adama, K. (2012) Extraction and characterization of chitin and chitosan from Nigerian shrimps. International Journal of Biological and Chemical Sciences, 6: 446.
  • Deng, J.H.; Zhang, X.R.; Zeng, G.M.; Gong, J.L.; Niu, Q.Y.; Liang, J. (2013) Simultaneous removal of Cd (II) and ionic dyes from aqueous solution using magnetic graphene oxide nano composite as an adsorbent. Chemical Engineering Journal, 226: 189.
  • Tien, H.N.; Khoa, N.T.; Hahn, S.H.; Chung, J.S.; Shin, E.W.; Hur, S.H. (2013) One-pot synthesis of a reduced graphene oxide–zinc oxide sphere composite and its use as a visible light photocatalyst. Chemical Engineering Journal, 229: 126.
  • Ho, Y.S.; McKay, G. (1999) Pseudo-second order model for sorption processes. Process Biochemistry, 34: 451.
  • Özacar, M.; Şengili, A. (2004) Application of kinetic models to the sorption of disperse dyes onto alunite. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 242: 105.
  • Zhao, M.; Liu, P. (2009) Adsorption of methylene blue from aqueous solutions by modified expanded graphite powder. Desalination, 249: 331.
  • Gupta, V.; Pathania, D.; Singh, P.; Kumar, A.; Rathore, B. (2014) Adsorptional removal of methylene blue by guar gum–cerium (IV) tungstate hybrid cationic exchanger. Carbohydrate Polymers, 101: 684.
  • Ahmaruzzaman, M.; Gayatri, S.L. (2010) Activated tea waste as a potential low-cost adsorbent for the removal of p-nitrophenol from wastewater. Journal of Chemical & Engineering Data, 55: 4614.
  • Doğan, M.; Özdemir, Y.; Alkan, M. (2007) Adsorption kinetics and mechanism of cationic methyl violet and methylene blue dyes onto sepiolite. Dyes and Pigments, 75: 701.
  • Li, C.; Dong, Y.; Yang, J.; Li, Y.; Huang, C. (2014) Modified nano-graphite/Fe 3 O 4 composite as efficient adsorbent for the removal of methyl violet from aqueous solution. Journal of Molecular Liquids, 196: 348.
  • Olad, A.; Ahmadi, S.; Rashidzadeh, A. (2013) Removal of Nickel (II) from aqueous solutions with polypyrrole modified clinoptilolite: kinetic and isotherm studies. Desalination and Water Treatment, 51: 7172.
  • Öztürk, A.; Malkoc, E. (2014) Adsorptive potential of cationic Basic Yellow 2 (BY2) dye onto natural untreated clay (NUC) from aqueous phase: mass transfer analysis, kinetic and equilibrium profile. Applied Surface Science, 299: 105.
  • Sharma, Y.; Srivastava, V.; Weng, C.; Upadhyay, S. (2009) Removal of Cr (VI) from wastewater by adsorption on iron nanoparticles. The Canadian Journal of Chemical Engineering, 87: 921.
  • Singh, V.; Singh, S.K.; Maurya, S. (2010) Microwave induced poly (acrylic acid) modification of Cassia javanica seed gum for efficient Hg (II) removal from solution. Chemical Engineering Journal, 160: 129.
  • Xia, T.; Guan, Y.; Yang, M.; Xiong, W.; Wang, N.; Zhao, S.; Guo, C. (2014) Synthesis of polyethylenimine modified Fe 3 O 4 nanoparticles with immobilized Cu 2+ for highly efficient proteins adsorption. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 443: 552.
  • Fakhri, A. (2017) Adsorption characteristics of graphene oxide as a solid adsorbent for aniline removal from aqueous solutions: kinetics, thermodynamics and mechanism studies. Journal of Saudi Chemical Society, 21: S52.
  • Qi, Y.; Yang, M.; Xu, W.; He, S.; Men, Y. (2017) Natural polysaccharides-modified graphene oxide for adsorption of organic dyes from aqueous solutions. Journal of Colloid andInterfaceScience, 486: 84.
  • Yoon, S.Y.; Lee, C.G.; Park, J.A.; Kim, J.H.; Kim, S.B.; Lee, S.H.; Choi, J.W. (2014) Kinetic, equilibrium and thermodynamic studies for phosphate adsorption to magnetic ironoxide nanoparticles. Chemical Engineering Journal, 236: 341.
  • Li, Z.; Chen, F.; Yuan, L.; Liu, Y.; Zhao, Y.; Chai, Z.; Shi, W. (2012) Uranium (VI) adsorption on graphene oxide nanosheets from aqueous solutions. Chemical Engineering Journal, 229: 460.
  • Li, R.; Liu, L.; Yang, F. (2013) Preparation of polyaniline/reduced graphene oxide nanocomposite and its application in adsorption of aqueous Hg (II). Chemical Engineering Journal, 229: 460.

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.