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Research Article

Improvement in performance of polysulfone membranes through the incorporation of chitosan-(3-phenyl-1h-pyrazole-4-carbaldehyde)

ORCID Icon, , & | (Reviewing Editor)
Article: 1403005 | Received 19 May 2017, Accepted 31 Oct 2017, Published online: 23 Nov 2017

References

  • Aminudin, N. N., Basri, H., Harun, Z., Yunos, M. Z., & Sean, G. P. (2013). Comparative study on effect of PEG and PVP as additives on polysulfone (PSF) membrane structure and performance. Jurnal Teknologi (Sciences & Engineering), 47–51.
  • Baker, R. W. (2000). Membrane technology. Hoboken, NJ: John Wiley & Sons.
  • Baroni, P., Vieira, R. S., Meneghetti, E., da Silva, M. G. C., & Beppu, M. M. (2008). Evaluation of batch adsorption of chromium ions on natural and crosslinked chitosan membranes. Journal of Hazardous Materials, 152(3), 1155–1163.
  • Bhatnagar, A., & Sillanpää, M. (2009). Applications of chitin- and chitosan-derivatives for the detoxification of water and wastewater – A short review. Advances in Colloid and Interface Science, 152(1–2), 26–38.
  • Chen, P. H., Kuo, T. Y., Liu, F. H., Hwang, Y. H., Ho, M. H., Wang, D. M., … Hsieh, H. J. (2008). Use of dicarboxylic acids to improve and diversify the material properties of porous chitosan membranes. Journal of Agricultural and Food Chemistry, 56(19), 9015–9021.
  • Cho, Y. H., Kim, H. W., Nam, S. Y., & Park, H. B. (2011). Fouling-tolerant polysulfone–poly(ethylene oxide) random copolymer ultrafiltration membranes. Journal of Membrane Science, 379(1–2), 296–306.
  • Chuang, W. Y., Young, T. H., & Chiu, W. Y. (2000). The effect of acetic acid on the structure and filtration properties of poly(vinyl alcohol) membranes. Journal of Membrane Science, 172(1–2), 241–251.
  • Clark, G. L., & Smith, A. F. (1936). X-ray diffraction studies of chitin, chitosan, and derivatives. The Journal of Physical Chemistry, 40(7), 863–879.
  • Ganesh, B. M., Isloor, A. M., & Ismail, A. F. (2013). Enhanced hydrophilicity and salt rejection study of graphene oxide-polysulfone mixed matrix membrane. Desalination, 313, 199–207.
  • Hebbar, R. S., Isloor, A. M., Ananda, K., & Ismail, A. F. (2016). Fabrication of polydopamine functionalized halloysite nanotube/polyetherimide membranes for heavy metal removal. Journal of Materials Chemistry A, 4(3), 764–774.
  • Hebbar, R. S., Isloor, A. M., & Ismail, A. F. (2014a). Preparation of antifouling polyetherimide/hydrolysed PIAM blend nanofiltration membranes for salt rejection applications. RSC Adv, 4(99), 55773–55780.
  • Hebbar, R. S., Isloor, A. M., & Ismail, A. F. (2014b). Preparation and evaluation of heavy metal rejection properties of polyetherimide/porous activated bentonite clay nanocomposite membrane. RSC Adv, 4(88), 47240–47248.
  • Hebbar, R. S., Isloor, A. M., Ismail, A. F., Shilton, S. J., Obaid, A., & Fun, H. K. (2015). Probing the morphology and anti-organic fouling behaviour of a polyetherimide membrane modified with hydrophilic organic acids as additives. New Journal of Chemistry, 39(8), 6141–6150.
  • Isloor, A. M., Kalluraya, B., & Shetty, P. (2009). Regioselective reaction: Synthesis, characterization and pharmacological studies of some new Mannich bases derived from 1,2,4-triazoles. European Journal of Medicinal Chemistry, 44(9), 3784–3787.
  • Kumar, R., Isloor, A. M., & Ismail, A. F. (2014). Preparation and evaluation of heavy metal rejection properties of polysulfone/chitosan, polysulfone/N-succinyl chitosan and polysulfone/N-propylphosphonyl chitosan blend ultrafiltration membranes. Desalination, 350, 102–108.
  • Kumar, R., Isloor, A. M., Ismail, A. F., & Matsuura, T. (2013a). Performance improvement of polysulfone ultrafiltration membrane using N-succinyl chitosan as additive. Desalination, 318, 1–8.
  • Kumar, R., Isloor, A. M., Ismail, A. F., & Matsuura, T. (2013b). Synthesis and characterization of novel water soluble derivative of Chitosan as an additive for polysulfone ultrafiltration membrane. Journal of Membrane Science, 440, 140–147.
  • Kumar, R., Isloor, A. M., Ismail, A. F., Rashid, S. A., & Ahmed, A. (2013). Permeation, antifouling and desalination performance of TiO2 nanotube incorporated PSf/CS blend membranes. Desalination, 316, 76–84.
  • Kumar, R., Isloor, A. M., Ismail, A. F., Rashid, S. A., & Matsuura, T. (2013). Polysulfone-Chitosan blend ultrafiltration membranes: Preparation, characterization, permeation and antifouling properties. RSC Advances, 3(21), 7855–7861.
  • Kyzas, G. Z., & Bikiaris, D. N. (2015). Recent modifications of chitosan for adsorption applications: A critical and systematic review. Marine Drugs, 13(1), 312–337.
  • Molinari, R., Gallo, S., & Argurio, P. (2004). Metal ions removal from wastewater or washing water from contaminated soil by ultrafiltration–complexation. Water Research, 38(3), 593–600.
  • Muzzarelli, R. A. (1973). Natural chelating polymers; alginic acid, chitin and chitosan. London: Pergamon Press.
  • Padaki, M., Isloor, A. M., & Wanichapichart, P. (2011). Polysulfone/N-phthaloylchitosan novel composite membranes for salt rejection application. Desalination, 279(1–3), 409–414.
  • Padaki, M., Isloor, A. M., Wanichapichart, P., & Ismail, A. F. (2012). Preparation and characterization of sulfonated polysulfone and N-phthloyl chitosan blend composite cation-exchange membrane for desalination. Desalination, 298, 42–48.
  • Pontalier, P. Y., Ismail, A., & Ghoul, M. (1997). Mechanisms for the selective rejection of solutes in nanofiltration membranes. Separation and Purification Technology, 12(2), 175–181.
  • Rana, D., & Matsuura, T. (2010). Surface modifications for antifouling membranes. Chemical Reviews, 110(4), 2448–2471.
  • Richard Bowen, W. R., Doneva, T. A., & Yin, H. B. (2001). Polysulfone—sulfonated poly (ether ether) ketone blend membranes: Systematic synthesis and characterisation. Journal of Membrane Science, 181(2), 253–263.
  • Rinaudo, M. (2006). Chitin and chitosan: Properties and applications. Progress in Polymer Science, 31(7), 603–632.
  • Shenvi, S., Ismail, A. F., & Isloor, A. M. (2014). Enhanced permeation performance of cellulose acetate ultrafiltration membranes by incorporation of sulfonated poly (1, 4-phenylene ether ether sulfone) and poly (styrene-co-maleic anhydride). Industrial & Engineering Chemistry Research, 53(35), 13820–13827.
  • Vatanpour, V., Madaeni, S. S., Moradian, R., Zinadini, S., & Astinchap, B. (2011). Fabrication and characterization of novel antifouling nanofiltration membrane prepared from oxidized multiwalled carbon nanotube/polyethersulfone nanocomposite. Journal of Membrane Science, 375(1–2), 284–294.
  • Waheed, S., Ahmad, A., Khan, S. M., Jamil, T., Islam, A., & Hussain, T. (2014). Synthesis, characterization, permeation and antibacterial properties of cellulose acetate/polyethylene glycol membranes modified with chitosan. Desalination, 351, 59–69.