493
Views
13
CrossRef citations to date
0
Altmetric
Original Articles

Preparation of nanoclay incorporated PAN fibers by electrospinning technique and its application for oil and organic solvent absorption

, , ORCID Icon &
Pages 303-311 | Received 19 Apr 2017, Accepted 20 Sep 2017, Published online: 31 Oct 2017

References

  • Zhu, H.; Guo, Z. (2016) Understanding the separations of oil/water mixtures from immiscible to emulsions on super-wettable surface. Journal of Bionic Engineering, 13: 1.
  • Li, D.; Frey, M.W.; Baeumner, A.J. (2006) Electrospun polylactic acid nanofiber membranes as substrates for biosensor assemblies. Journal Membrane Sciences, 279: 354.
  • Hu, X.; Liu, S.; Zhou, G.; Huang, Y.; Xie, Z.; Jing, X. (2014) Electrospinning of polymeric nanofibers for drug delivery applications. Journal of Control Release, 185: 12.
  • Lemma, S.M.; Esposito, A.; Mason, M.; Brusetti, L.; Cesco, S.; Scampicchio, M. (2015) Removal of bacteria and yeast in water and beer by nylon nanofibrous membranes. Journal of Food Engineering, 157: 1.
  • Deschamps, G.; Caruel, H.; Borredon, M.; Bonnin, C.; Vignoles, C. (2003) Environmental Science & Technology, 37: 1013.
  • Toyoda, M.; Inagaki, M. (2000) Heavy oil sorption using exfoliated graphite: new application of exfoliated graphite to protect heavy oil pollution. Carbon, 38: 199.
  • Liang, H.; Guan, Q.; Chen, L.; Zhu, Z.; Zhang, W.; Yu, S. (2012) Macroscopic‐scale template synthesis of robust carbonaceous nanofiber hydrogels and aerogels and their applications. Angew Chemical, International Editors, 51: 5101.
  • Bi, H.; Xie, X.; Yin, K.; Zhou, Y.; Wan, S.; He, L.; Xu, F.; Banhart, F.; Sun, L.; Rouff, R.S. (2012) Spongy graphene as a highly efficient and recyclable sorbent for oils and organic solvents. Advancement Function Materials, 22: 4421.
  • Yuan, J.; Liu, X.; Akbulut, O.; Hu, J.; Suib, S.L.; Kong, J.; Stellaci, F. (2008) Superwetting nanowire membranes for selective absorption. Natural Nanotechnol, 3: 332.
  • Bayat, A.; Aghamiri, S.F.; Moheb, A.; Vakili-Nezhaad, G.R. (2005) Oil spill cleanup from sea water by sorbent materials. Chemical Engineering Technology, 28: 1525.
  • Zhang, J.; Seeger, S. (2011) Polyester materials with superwetting silicone nanofilaments for oil/water separation and selective oil absorption. Advancement Function Materials, 21: 4699.
  • Ceylan, D.; Doyu, S.; Karacik, B.; Yakan, S.; Okay, O. (2009) Evaluation of butyl rubber as sorbent material for the removal of oil and polycyclic aromatic hydrocarbons from seawater. Environmental Science & Technology, 43: 3846.
  • Zhu, J.; Wei, S.; Rutman, D.; Haldolaarachchige, N.; Young, D.P.; Guo, Z. (2011) Magnetic polyacrylonitrile-Fe@ FeO nanocomposite fibers-Electrospinning, stabilization and carbonization. Polymer, 52: 2947.
  • Wu, J.; Wang, N.; Wang, L.; Dong, H.; Zhao, Y.; Jiang, L. (2012) Electrospun porous structure fibrous film with high oil adsorption capacity. ACS Applications Materials Inter, 4: 3207.
  • Si, Y.; Tang, X.; Yu, J.; Ding, B. (2014) Electrospun Nanofibers for Energy and Environmental Applications; Springer Heidelberg: New York, Dordrecht, London.
  • Mishra, A.K.; Bose, S.; Kuila, T.; Kim, N.H.; Lee, J.H. (2012) Silicate-based polymer-nanocomposite membranes for polymer electrolyte membrane fuel cells. Progress Polymer Sciences, 37: 842.
  • Almuhamed, S.; Khenoussi, N.; Bonne, M.; Schacher, L.; Lebeau, B.; Adolphe, D.; Brendle´, J. (2014) Electrospinning of PAN nanofibers incorporating SBA-15-type ordered mesoporous silica particles. European Polymer Journal, 54: 71.
  • Ji, L.; Zhang, X. (2008) Ultrafine polyacrylonitrile/silica composite fibers via electrospinning. Materials Letters, 62: 2161.
  • Djenadic, R.; Winterer, M. (Eds.),Chemical Vapor Synthesis of Nanocrystalline Oxides. Nanoparticles from the Gas phase, Springer, Berlin, Heidelberg.
  • Balogh, Z.; Halasi, G.; Korbe´ Ly, B.; Hernadi, K. (2008) CVD-synthesis of multiwall carbon nanotubes over potassium-doped supported catalysts. Applications Catalysis A: General, 344: 191.
  • Ke, Y.C.; Stroeve, P. (2005) Polymer-Layered Silicate and Silica Nanocomposites; Elsevier Science: Amsterdam.
  • Sinha Ray, S. (2014) Recent Trends and Future Outlooks in the Field of Clay‐Containing Polymer Nanocomposites. Macromolecule Chemical Physical, 215: 1162.
  • Kahraman, H.T. (2017) Development of an adsorbent via chitosan nano-organoclay assembly to remove hexavalent chromium from wastewater. International Journal of Biological Macromolecules, 94, 202.
  • Hong, J.H.; Jeong, E.H.; Lee, H.S.; Baik, D.H.; Seo, S.W.; Youk, J.H. (2005) Electrospinning of polyurethane/organically modified montmorillonite nanocomposites. Journal of Polymer Science B: Polymer Physics, 43: 3171.
  • Ganguly, S.; Dana, K.; Mukhopadhyay, T.K.; Parya, T.K.; Ghatak, S. (2011) Organophilic nano clay: a Comprehensive review. T Indian Ceram Social, 70: 189.
  • Ge, B.; Zhang, Z.; Zhu, X.; Men, X.; Zhou, X.; Xue, Q. (2014) A graphene coated cotton for oil/water separation. Compos Sciences Technology, 102: 100.
  • Makaremi, M.; De Silva, R.T.; Pasbakhsh, P. (2015) Electrospun nanofibrous membranes of polyacrylonitrile/halloysite with superior water filtration ability. Journal of Physical Chemical C, 119: 7949.
  • Liu, Y.; Ma, J.; Wu, T.; Wang, X.; Huang, G.; Liu, Y.; Qiu, H.; Li, Y.; Wang, W.; Gao, J. (2013) Cost-effective reduced graphene oxide-coated polyurethane sponge as a highly efficient and reusable oil-absorbent. ACS Applications Materials Inter, 5: 10018.
  • Nikkhah, A.A.; Zilouei, H.; Asadinezhad, A.; Keshavarz, A. (2015) Removal of oil from water using polyurethane foam modified with nanoclay. Chemical Engineering Journal, 262: 278.
  • Li, P.; Qiao, Y.; Zhao, L.; Yao, D.; Sun, H.; Hou, Y.; Li, S.; Li, Q. (2015) Electrospun PS/PAN fibers with improved mechanical property for removal of oil from water. Mar. Pollution Bulletin, 93: 75.
  • Radetić, M.M.; Jocić, D.M.; Jovancˇić, P.M.; Petrović, Z.L.; Thomas, H.F. (2003) Recycled wool-based nonwoven material as an oil sorbent. Environmental Science & Technology, 37: 1008.
  • Nguyen, D.D.; Tai, N.H.; Lee, S.B.; Kuo, W.S. (2012) Superhydrophobic and superoleophilic properties of graphene-based sponges fabricated using a facile dip coating method. Energy Environmental Sciences, 5: 7908.
  • Dong, X.C.; Chen, J.; Ma, Y.W.; Wang, J.; Chan-Park, M.B.; Liu, X.M.; Wang, L.H.; Huang, W.; Chen, P. (2012) Superhydrophobic and superoleophilic hybrid foam of graphene and carbon nanotube for selective removal of oils or organic solvents from the surface of water. Chemical Communicable, 48: 10660.
  • Niu, Z.; Chen, J.; Hng, H.H.; Ma, J.; Chen, X. (2012) A leavening strategy to prepare reduced graphene oxide foams. Advancement Materials, 24: 4144.
  • Tai, M. H.; Tan, B. Y. L, Juay, J.; Sun, D. D.; Leckie, J. O. (2015) A Self‐Assembled Superhydrophobic Electrospun Carbon -Silica Nanofiber Sponge for Selective Removal and Recovery of Oils and Organic Solvents. Chem-Eur. J., 21(14), 5395.

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.