欢迎登录材料期刊网

材料期刊网

高级检索

纳滤膜拥有介于反渗透膜和超滤膜之间的截留分子量,同时对无机盐的截留率随着盐的种类和浓度而改变,广泛应用于各种水净化处理和产品精制分离过程.文章从纳滤膜孔结构和荷电性质、纳滤膜分离机理及其模型、纳滤膜动电性质等三个方面对纳滤膜分离技术20多年来的基础及应用研究进展进行回顾和总结,简要分析了今后纳滤膜分离技术的发展方向及趋势.

参考文献

[1] Bowen WR.;Hilal N.;Mohammad AW. .CHARACTERISATION OF NANOFILTRATION MEMBRANES FOR PREDICTIVE PURPOSES - USE OF SALTS, UNCHARGED SOLUTES AND ATOMIC FORCE MICROSCOPY[J].Journal of Membrane Science,1997(1):91-105.
[2] Nakao S .Determination of pore-size and pore-size distribution (39):Filtration membranes[J].Journal of Membrane Science,1994,96(1-2):131-165.
[3] Spiegler K S;Kedem O .Thermodynamics of hyperfiltration (reverse-osmosis)-criteria for efficient membranes[J].Desalination,1966,1(04):311-326.
[4] Nakao S;Kirnura S .Models of membrane transport phenomena and their appplications for ultrafiltration data[J].Journal of Chemical Engineering of Japan,1982,15:200-205.
[5] Wang XL.;Nakao S.;Kimura S.;Tsuru T. .THE ELECTROSTATIC AND STERIC-HINDRANCE MODEL FOR THE TRANSPORT OF CHARGED SOLUTES THROUGH NANOFILTRATION MEMBRANES[J].Journal of Membrane Science,1997(1):19-32.
[6] Wang X L;Tsuru T;Togoh M et al.Evaluation of pore structure and electrical-properties of nanofiltration membranes[J].Journal of Chemical Engineering of Japan,1995,28(02):186-192.
[7] Hijnen H J M;Vandaalen J;Smit J A M .The application of the space-charge model to the permeability properties of charged microporous membranes[J].Journal of Colloid and Interface Science,1985,107(02):525-539.
[8] Bowen WR.;Welfoot JS. .Modelling the performance of membrane nanofiltration - critical assessment and model development[J].Chemical Engineering Science,2002(7):1121-1137.
[9] Bandini S.;Vezzani D. .Nanofiltration modeling: the role of dielectric exclusion in membrane characterization[J].Chemical Engineering Science,2003(15):3303-3326.
[10] Szymczyk A;Fievet P .Investigating transport properties of nanofiltration membranes by means of a steric, electric and dielectric exclusion model[J].Journal of Membrane Science,2005(1/2):77-88.
[11] Bowen WR.;Doneva TA.;Stoton JAG. .The use of atomic force microscopy to quantify membrane surface electrical properties[J].Colloids and Surfaces, A. Physicochemical and Engineering Aspects,2002(1/3):73-83.
[12] Hanai T;Haydon D A .An investigation by electrical methods of lecithin-in-hydrocarbon films in aqueous solution[J].Proceedings of the Royal Society of London Series A:Mathematical,Physical and Engineering Sciences,1964,281:337-391.
[13] Kiyohara K J;Zhao K S;Asaka K Z et al.Determination of capacitances and conductances of the consituent phases from dielectric observations on terlamellar composite systems[J].Japanese Journal of Applied Physics Part 1-Regular Papers Short Notes Review Papers,1990,29(09):1751-1756.
[14] Asaka K .Dielectric-properties of cellulose-acetate reverse-osmosis membranes in aqueous salt-solutions[J].Journal of Membrane Science,1990,50(01):71-84.
[15] 李玉红,赵孔双.浓差极化的介电模型--复合膜/溶液体系的数值模拟[J].化学学报,2007(19):2124-2132.
[16] Y.H.Li;K.S.Zhao .Dielectric analysis of nanofiltration membrane in electrolyte solutions:influences of electrolyte concentration and species on membrane permeation[J].Journal of Colloid and Interface Science,2004(1):68-76.
[17] Kongshuang Zhao;Yuhong Li .Dielectric Characterization of a Nanofiltration Membrane in Electrolyte Solutions:Its Double-Layer Structure and Ion Permeation[J].The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical,2006(6):2755-2763.
[18] Hunter R J.Zeta Potential in Colloid Science,Principles and Applications[M].San Diego:academic Press,1981
[19] 尚伟娟,王弘历,涂丛慧,丁宁,王晓琳.1-1型单组分盐溶液中荷电膜膜电位的研究[J].化学学报,2009(09):969-973.
[20] Szymczyk A;Fatin-Rouge N;Fievet P .Tangential streaming potential as a tool in modeling of ion transport through nanoporous membranes[J].Journal of Colloid and Interface Science,2007(2):245-252.
[21] Fievet P.;Reggiani JC.;Pagetti J.;Mullet M. .Influence of surface charge on adsorption of a hydrophobic peptide onto a carbon surface by capacitance measurement's[J].Colloids and Surfaces, A. Physicochemical and Engineering Aspects,1998(1/3):35-42.
[22] Fievet P.;Aoubiza B.;Pagetti J.;Szymczyk A. .Evaluation of three methods for the characterisation of the membrane-solution interface: streaming potential, membrane potential and electrolyte conductivity inside pores[J].Journal of Membrane Science,2000(1/2):87-100.
[23] M. Sbaie;P. Fievet;A. Szymczyk;B. Aoubiza;A. Vidonne;A. Foissy .Streaming potential, electroviscous effect, pore conductivity and membrane potential for the determination of the surface potential of a ceramic ultrafiltration membrane[J].Journal of Membrane Science,2003(1/2):1-9.
[24] Szymczyk A;Fievet P;Aoubiza B .Electrolyte conductivity in charged capillaries[J].Desalination,2003,151(02):177-184.
[25] Szymczyk A.;Fievet P.;Foissy A. .Electrokinetic characterization of porous plugs from streaming potential coupled with electrical resistance measurements[J].Journal of Colloid and Interface Science,2002(2):323-331.
[26] Szymczyk A.;Mullet M.;Reggiani JC.;Pagetti J.;Fievet P. .Comparison of two electrokinetic methods - electroosmosis and streaming potential - to determine the zeta-potential of plane ceramic membranes[J].Journal of Membrane Science,1998(1/2):189-195.
[27] Szymczyk A;Fievet P;Mullet M et al.Study of electrokinetic properties of plate ceramic membranes by electroosmosis and streaming potential[J].Desalination,1998,119(1-3):309-313.
[28] M. J. Ariza;J. Benavente .Streaming potential along the surface of polysulfone membranes: a comparative study between two different experimental systems and determination of electrokinetic and adsorption parameters[J].Journal of Membrane Science,2001(1):119-132.
[29] Benavente J;Hernandez A;Jonsson G .Proper and adsorbed charges on the surfaces of the polysulfonic support of a compostie membrane from electrokinetic phenomena[J].Journal of Membrane Science,1993,80(1-3):285-296.
[30] Amy E. Childress;Menachem Elimelech .Effect of solution chemistry on the surface charge of polymeric reverse osmosis and nanofiltration membranes[J].Journal of Membrane Science,1996(2):253-268.
[31] J. M. M. Peeters;M. H. V. Mulder;H. Strathmann .Streaming potential measurements as a characterization method for nanofiltration membranes[J].Colloids and Surfaces, A. Physicochemical and Engineering Aspects,1999(1/3):247-259.
[32] Joo-Hwa Tay;Jianlin Liu;Darren Delai Sun .Effect of solution physico-chemistry on the charge property of nanofiltration membranes[J].Water research: A journal of the international water association,2002(3):585-598.
[33] Takagi R;Nakagaki M .The oretical-study of the effect of ion adsorption on membrane-potential and its application to collodion membranes[J].Journal of Membrane Science,1990,53(1-2):19-35.
[34] Takagi R;Nakagaki M .Membrane-potential of separation membranes a affected by ion adsorption[J].Journal of Membrane Science,1992,71(03):189-200.
[35] Maria Dina Afonso;Georg Hagmeyer;Rolf Gimbel .Streaming potential measurements to assess the variation of nanofiltration membranes surface charge with the concentration of salt solutions[J].Separation and Purification Technology,2001(0):529-541.
[36] Ernst M.;Springer J.;Jekel M.;Bismarck A. .Zeta-potential and rejection rates of a polyethersulfone nanofiltration membrane in single salt solutions[J].Journal of Membrane Science,2000(2):251-259.
[37] Hagmeyer G;Gimbel R .Modelling the salt rejection of nanofiltration membranes for ternary ion mixtures and for single salts at different pH values[J].Desalination,1998,117(1-3):247-256.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%