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Original Articles

Nanofiltration of Magnesium Chloride, Sodium Carbonate, and Calcium Sulphate in Salt Solutions

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Pages 3299-3321 | Received 06 Sep 2005, Accepted 12 Oct 2005, Published online: 15 Feb 2007

References

  • Bruggen , B. V. and Vandecasteele , C. 2002 . Distillation vs. membrane filtration: overview of process evolutions in seawater desalination . Desalination , 143 : 207 – 218 .
  • Hassan , A. 1998 . A new approach to thermal seawater desalination processes using nanofiltration membranes (Part 1) . Desalination , 118 : 35 – 51 .
  • Al‐Sofi , M. , Hassan , A. , Mustafa , G. , Dalvi , A. and Kither , M. 1998 . Nanofiltration as a means of achieving higher TBT of ≥120°C in MSF . Desalination , 118 : 123 – 129 .
  • Al‐Sofi , M. 2001 . Seawater desalination—SWCC experience and vision . Desalination , 135 : 121 – 139 .
  • Hassan , A. M. , Farooque , A. Jamaluddin , A. 2000 . A demonstration plant based on the new NF–SWRO process . Desalination , 131 : 157 – 171 .
  • Criscuoli , A. and Drioli , E. 1999 . Energetic and exergetic analysis of an integrated membrane desalination system . Desalination , 124 : 243 – 249 .
  • Raman , L. P. , Cheryan , M. and Rajagopalan , N. 1994 . Consider nanofiltration for membrane separation . Chem. Eng. Prog. , 90 : 68 – 74 .
  • Eriksson , P. 1988 . Nanofiltartion extends the range of membrane filtration . Environmental Progress. , 7 : 58 – 61 .
  • Hilal , N. , Al‐Zoubi , H. Darwish , N. A. 2004 . A comprehensive review of Nanofiltration membranes: Treatment, Pretreatment, Modelling, and Atomic Force Microscopy . Desalination , 170 : 281 – 308 .
  • Van der Bruggen , B. and Vandecasteele , C. 2003 . Removal of pollutants from surface water and groundwater by nanofiltration: overview of possible applications in the drinking water industry . Environ. Poll. , 122 : 435 – 445 .
  • Chellam , S. and Taylor , J. 2001 . Simplified analysis of contaminant rejection during ground‐ and surface water nanofiltration under the information collection rule . Water Res. , 35 : 2460 – 2474 .
  • Van der Bruggen , B. , Schaep , J. , Wilms , D. and Vandecasteele , C. 1999 . Influence of molecular size, polarity and charge on the retention of organic molecules by nanofiltration . J. Membr. Sci. , 156 : 29 – 41 .
  • Peeters , J. M.M. , Boom , J. P. , Mulder , M. H.V. and Strathmann , H. 1998 . Retention measurements of nanofiltration membranes with electrolyte solutions . J. Membr. Sci. , 145 : 199 – 209 .
  • Bowen , W. and Mukhtar , H. 1996 . Characterisation and prediction of separation performance of nanofiltration membranes . J. Membr. Sci. , 112 : 263 – 274 .
  • Wang , X. , Tsuru , T. , Nakao , S. and Kimura , S. 1997 . The electrostatic and steric‐hindrance model for the transport of charged solutes through nanofiltration membranes . J. Membr. Sci. , 135 : 19 – 32 .
  • Schaep , J. , Van der Bruggen , B. , Vandecasteele , C. and Wilms , D. 1998 . Influence of ion size and charge in nanofiltration . Separation and Purification Technology , 14 : 155 – 162 .
  • Afonso , M. , Hagmeyer , G. and Gimbel , R. 2001 . Streaming potential measurements to assess the variation of nanofiltration membranes surface charge with the concentration of salt solutions . Separation and Purification Technology , 22–23 : 529 – 541 .
  • Gilron , J. , Gara , N. and Kedem , O. 2001 . Experimental analysis of negative salt rejection in nanofiltration membranes . J. Membr. Sci. , 185 : 223 – 236 .
  • Hagmeyer , G. and Gimbel , R. 1998 . Modelling the salt rejection of nanofiltration membranes for ternary ion mixtures and for single salts at different pH values . Desalination , 117 : 247 – 256 .
  • Ballet , G. , Gzara , L. , Hafina , A. and Dhahbi , M. 2004 . Transport coefficients and cadmium salt rejection in nanofiltration membrane . Desalination , 167 : 369 – 376 .
  • Haddad , R. , Ferjani , E. , Roudesli , M. and Deratani , A. 2004 . Properties of celluose acetate nanofiltration membranes: Application to brackish desalination . Desalination , 167 : 403 – 409 .
  • Bowen , W. R. , Mohammad , A. W. and Hilal , N. 1997 . Characterisation of nanofiltration membranes for predictive purposes use of salts, uncharged solutes and atomic force microscopy . J. Membr. Sci. , 126 : 91 – 105 .
  • Schaep , J. , Vandecasteele , C. , Mohammad , A. W. and Bowen , W. R. 2001 . Modelling the retention of ionic components for different nanofiltration membranes . Separation and Purification Technology , 22–23 ( 1–3 ) : 169 – 179 .
  • Bandini , S. and Vezzani , D. 2003 . Nanofiltration modeling: the role of dielectric exclusion in membrane characterization . Chemical Engineering Science , 58 : 3303 – 3326 .
  • Verissimo , S. , Peinemann , K.‐V. and Bordado , J. 2005 . New composite hollow fiber membrane for nanofiltration . Desalination , 184 : 981 – 991 .
  • Koyuncu , I. and Yazgan , M. 2000 . Application of nanofiltration and reverse osmosis membranes to the salty and polluted surface water . J. Environ. Sci. Health , A36 ( 7 ) : 1321 – 1333 .
  • Diawara , C. , Lo , S. Rumeau , M. 2003 . A phenomenological mass transfer approach in nanofiltration of halide ions for a selective defluorination of brackish drinking water . J. Membr. Sci. , 219 : 103 – 112 .
  • Kedem , O. and Katchalsky , A. 1963 . Permeability of composite membranes, Part I: Electric current, volume flow and flow of solute through membranes . Tans. Faraday Soc. , 59 : 1918 – 1930 .
  • Spiegler , K. S. and Kedem , O. 1966 . Thermodynamics of hyperfiltration (reverse osmosis): Criteria for efficient membranes . Desalination , 1 : 311 – 326 .
  • Hilal , N. , Al‐Zoubi , H. , Darwish , N. A. and Mohammed , A. W. 2005 . Characterisation of nanofiltration membranes using atomic force microscopy . Desalination , 177 : 187 – 199 .
  • Hilal , N. , Al‐Zoubi , H. , Mohammed , A. W. and Darwish , N. A. 2005 . Nanofiltration of highly concentrated salt solutions up to seawater salinity . Desalination , 184 : 1295 – 1306 .
  • Kwak , S. Y. , Yeom , M. O. Roh , I. J. 1997 . Correlations of chemical structure, atomic force microscopy (AFM) morphology, and reverse osmosis (RO) characteristics in aromatic polyester high‐flux RO membranes . J. Membr. Sci. , 132 : 183 – 191 .
  • Vrijenhoek , E. , Hong , S. and Elimelech , M. 2001 . Influence of membrane surface properties on initial rate of colloidal fouling of reverse osmosis and nanofiltration membranes . J. Membr. Sci. , 188 : 115 – 128 .
  • Bowen , W. R. and Doneva , T. A. 2000 . Atomic force microscopy studies of nanofiltration membranes: Surface morphology, pore size distribution and adhesion . Desalination , 129 : 163 – 172 .
  • Ponti , M. , Diawara , C. K. and Rumeau , M. 2002 . Streaming effect of single electrolyte mass transfer in nanofiltration: potential application for the selective defluorination of brackish drinking waters . Desalination , 15 : l267 – 274 .
  • Visser , T. J.K. , Modise , S. J. , Krieg , H. M. and Keizer , K. 2001 . The removal of acid sulphate pollution by nanofiltration . Desalination , 140 : 79 – 86 .
  • Santafe‐Moros , A. , Goza lvez‐Zafrilla , J. M. and Lora‐Garcıa , J. 2005 . Performance of commercial nanofiltration membranes in the removal of nitrate ions . Desalination , 185 : 1707 – 1713 .

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