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Articles

Development of a nanofiltration membrane for humic acid removal through the formation of polyelectrolyte multilayers that contain nanoparticles

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Pages 7627-7636 | Received 24 Dec 2014, Accepted 09 Mar 2015, Published online: 26 Mar 2015

References

  • C. Jarusutthirak, S. Mattaraj, R. Jiraratananon, Factors affecting nanofiltration performances in natural organic matter rejection and flux decline, Sep. Purif. Technol. 58 (2007) 68–75.10.1016/j.seppur.2007.07.010
  • J.D. Johnson, R.F. Christman, D.L. Norwood, D.S. Millington, Reaction products of aquatic humic substances with chlorine, Environ. Health Perspect. 46 (1982) 63–71.10.1289/ehp.824663
  • E.E. Chang, Y.-C. Chang, C.-H. Liang, C.-P. Huang, P.-C. Chiang, Identifying the rejection mechanism for nanofiltration membranes fouled by humic acid and calcium ions exemplified by acetaminophen, sulfamethoxazole, and triclosan, J. Hazard. Mater. 221–222 (2012) 19–27.10.1016/j.jhazmat.2012.03.051
  • T.M. Patel, K. Nath, Separation of ternary sodium chloride/reactive black-5 aqueous solutions using two different modules in a nanofiltration pilot plant, Int. J. Environ. Sci. Technol. 11 (2014) 1237–1248.10.1007/s13762-013-0283-3
  • K.-J. Kim, A.G. Fane, Performance evaluation of surface hydrophilized novel ultrafiltration membranes using aqueous proteins, J. Membr. Sci. 99 (1995) 149–162.10.1016/0376-7388(94)00215-K
  • G. Gosheger, J. Hardes, H. Ahrens, A. Streitburger, H. Buerger, M. Erren, A. Gunsel, F.H. Kemper, W. Winkelmann, C. von Eiff, Silver-coated megaendoprostheses in a rabbit model—An analysis of the infection rate and toxicological side effects, Biomaterials 25 (2004) 5547–5556.10.1016/j.biomaterials.2004.01.008
  • M.A. Hollinger, Toxicological aspects of topical silver pharmaceuticals, Crit. Rev. Toxicol. 26 (1996) 255–260.10.3109/10408449609012524
  • S. Nam, D. Parikh, B. Condon, Q. Zhao, M. Yoshioka-Tarver, Importance of poly(ethylene glycol) conformation for the synthesis of silver nanoparticles in aqueous solution, J. Nanopart. Res. 13 (2011) 3755–3764.10.1007/s11051-011-0297-z
  • T.-H. Bae, T.-M. Tak, Effect of TiO2 nanoparticles on fouling mitigation of ultrafiltration membranes for activated sludge filtration, J. Membr. Sci. 249 (2005) 1–8.
  • W. Chen, Y. Su, L. Zhang, Q. Shi, J. Peng, Z. Jiang, In situ generated silica nanoparticles as pore-forming agent for enhanced permeability of cellulose acetate membranes, J. Membr. Sci. 348 (2010) 75–83.10.1016/j.memsci.2009.10.042
  • L.-H. Li, J.-C. Deng, H.-R. Deng, Z.-L. Liu, L. Xin, Synthesis and characterization of chitosan/ZnO nanoparticle composite membranes, Carbohydr. Res. 345 (2010) 994–998.10.1016/j.carres.2010.03.019
  • L.Y. Ng, A.W. Mohammad, C.P. Leo, N. Hilal, Polymeric membranes incorporated with metal/metal oxide nanoparticles: A comprehensive review, Desalination 308 (2013) 15–33.10.1016/j.desal.2010.11.033
  • J. Kochan, M. Scheidle, J. van Erkel, M. Bikel, J. Büchs, J.E. Wong, T. Melin, M. Wessling, Characterization of antibacterial polyethersulfone membranes using the respiration activity monitoring system (RAMOS), Water Res. 46 (2012) 5401–5409.10.1016/j.watres.2012.07.019
  • Y. Lvov, K. Ariga, M. Onda, I. Ichinose, T. Kunitake, Alternate assembly of ordered multilayers of SiO2 and other nanoparticles and polyions, Langmuir 13 (1997) 6195–6203.10.1021/la970517x
  • L.Y. Ng, A.W. Mohammad, C.Y. Ng, N.H.H. Hairom, Stability and performance study of polyethersulfone membranes modified using polyelectrolytes, J. Teknol. 65 (2013) 7–12.
  • L.Y. Ng, A.W. Mohammad, C.Y. Ng, C.P. Leo, R. Rohani, Development of nanofiltration membrane with high salt selectivity and performance stability using polyelectrolyte multilayers, Desalination 351 (2014) 19–26.10.1016/j.desal.2014.07.020
  • L.Y. Ng, A.W. Mohammad, R. Rohani, C.Y. Ng, Optimization of polymeric membrane characteristics through thermal treatment and deposition of polyelectrolyte layers using response surface modeling, Adv. Polym. Technol. 34 (2014) 21472-1–21472-15.
  • L.-Y. Yu, H.-M. Shen, Z.-L. Xu, PVDF-TiO2 composite hollow fiber ultrafiltration membranes prepared by TiO2 sol–gel method and blending method, J. Appl. Polym. Sci. 113 (2009) 1763–1772.10.1002/app.v113:3
  • L.Y. Ng, C.P. Leo, A.W. Mohammad, Optimizing the incorporation of silica nanoparticles in polysulfone/poly(vinyl alcohol) membranes with response surface methodology, J. Appl. Polym. Sci. 121 (2011) 1804–1814.10.1002/app.33628
  • P. Ahmadiannamini, X. Li, W. Goyens, B. Meesschaert, I.F.J. Vankelecom, Multilayered PEC nanofiltration membranes based on SPEEK/PDDA for anion separation, J. Membr. Sci. 360 (2010) 250–258.10.1016/j.memsci.2010.05.021
  • S. Lee, R.M. Lueptow, Reverse osmosis filtration for space mission wastewater: Membrane properties and operating conditions, J. Membr. Sci. 182 (2001) 77–90.10.1016/S0376-7388(00)00553-6
  • J. Shao, J. Hou, H. Song, Comparison of humic acid rejection and flux decline during filtration with negatively charged and uncharged ultrafiltration membranes, Water Res. 45 (2011) 473–482.10.1016/j.watres.2010.09.006
  • V.G. Pol, D.N. Srivastava, O. Palchik, V. Palchik, M.A. Slifkin, A.M. Weiss, A. Gedanken, Sonochemical deposition of silver nanoparticles on silica spheres, Langmuir 18 (2002) 3352–3357.10.1021/la0155552
  • J. Schaep, C. Vandecasteele, R. Leysen, W. Doyen, Salt retention of Zirfon® membranes, Sep. Purif. Technol. 14 (1998) 127–131.10.1016/S1383-5866(98)00067-7
  • R. Malaisamy, A. Talla-Nwafo, K.L. Jones, Polyelectrolyte modification of nanofiltration membrane for selective removal of monovalent anions, Sep. Purif. Technol. 77 (2011) 367–374.10.1016/j.seppur.2011.01.005
  • R. Malaisamy, M.L. Bruening, High-flux nanofiltration membranes prepared by adsorption of multilayer polyelectrolyte membranes on polymeric supports, Langmuir 21 (2005) 10587–10592.10.1021/la051669s
  • H. Cong, M. Radosz, B.F. Towler, Y. Shen, Polymer–inorganic nanocomposite membranes for gas separation, Sep. Purif. Technol. 55 (2007) 281–291.10.1016/j.seppur.2006.12.017
  • N.G. Hoogeveen, M.A. Cohen Stuart, Formation and stability of multilayers of polyelectrolytes, Langmuir 12 (1996) 3675–3681.10.1021/la951574y
  • Z. Zhu, X. Feng, A. Penlidis, Self-assembled nano-structured polyelectrolyte composite membranes for pervaporation, Mater. Sci. Eng.: C 26 (2006) 1–8.10.1016/j.msec.2005.03.008
  • L. Krasemann, B. Tieke, Selective ion transport across self-assembled alternating multilayers of cationic and anionic polyelectrolytes, Langmuir 16 (1999) 287–290.
  • C. Cheng, A. Yaroshchuk, M.L. Bruening, Fundamentals of selective ion transport through multilayer polyelectrolyte membranes, Langmuir 29 (2013) 1885–1892.10.1021/la304574e
  • M.N. Abu Seman, M. Khayet, Z.I. Bin Ali, N. Hilal, Reduction of nanofiltration membrane fouling by UV-initiated graft polymerization technique, J. Membr. Sci. 355 (2010) 133–141.
  • G. Ladam, P. Schaad, J.C. Voegel, P. Schaaf, G. Decher, F. Cuisinier, In situ determination of the structural properties of initially deposited polyelectrolyte multilayers, Langmuir 16 (1999) 1249–1255.
  • M.D. Miller, M.L. Bruening, Controlling the nanofiltration properties of multilayer polyelectrolyte membranes through variation of film composition, Langmuir 20 (2004) 11545–11551.10.1021/la0479859
  • S. Saksena, A.L. Zydney, Effect of solution pH and ionic strength on the separation of albumin from immunoglobulins (IgG) by selective filtration, Biotechnol. Bioeng. 43 (1994) 960–968.10.1002/(ISSN)1097-0290
  • A.E. Childress, M. Elimelech, Relating nanofiltration membrane performance to membrane charge (electrokinetic) characteristics, Environ. Sci. Technol. 34 (2000) 3710–3716.10.1021/es0008620
  • M. Zhang, B.-Q. Liao, X. Zhou, Y. He, H. Hong, H. Lin, J. Chen, Effects of hydrophilicity/hydrophobicity of membrane on membrane fouling in a submerged membrane bioreactor, Bioresour. Technol. 175 (2015) 59–67.10.1016/j.biortech.2014.10.058
  • J. Zhang, Q. Wang, Z. Wang, C. Zhu, Z. Wu, Modification of poly(vinylidene fluoride)/polyethersulfone blend membrane with polyvinyl alcohol for improving antifouling ability, J. Membr. Sci. 466 (2014) 293–301.10.1016/j.memsci.2014.05.006

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