Profile
International Journal of Computer & Software Engineering Volume 1 (2016), Article ID 1:IJCSE-101, 10 pages
https://doi.org/10.15344/2456-4451/2016/101
Research Article
Saline Water Desalination with Single-pass Ion-exchange Membrane Electrodialysis - Computer Simulation

Yoshinobu Tanaka

IEM Research, 1-46-3 Kamiya, Ushiku-shi, Ibaraki 300-1216, Japan
Dr. Yoshinobu Tanaka, IEM Research, 1-46-3 Kamiya, Ushiku-shi, Ibaraki 300-1216, Japan, Tel: +81-29-874-5400; E-mail: fwis1202@mb.infoweb.ne.jp
06 January 2016; 08 May 2016; 10 May 2016
Tanaka Y (2016) Saline Water Desalination with Single-pass Ionexchange Membrane Electrodialysis - Computer Simulation. Int J Comput Softw Eng 1: 101. doi: https://doi.org/10.15344/2456-4451/2016/101

References

  1. Belfort G, Daly JA (1970) Optimization of an electrodialysis plant. Desalination 8: 153-166. View
  2. Avriel M, Zelighter N (1972) A computer method for engineering and economic evaluation of electrodialysis plant. Desalinaeion 10: 113-146. View
  3. Lee HJ, Sarfert F, Strathmann H, Moon SH (2002) Designing of an electrodialysis desalination plant. Desalination 142: 267-285. View
  4. Moon P, Sandi G, Stevens D, Kizilel R (2004) Computational modeling of ionic transport in continuous and batch electrodialysis. Sep Sci Technol 29: 2531-2555. View
  5. Fidaleo M, Moresi M (2005) Optimal strategy to model the electrodialytic recovery of a strong electrolyte. J Membr Sci 260: 90-111. View
  6. Sadrzadeh M, Kaviani A, Mohammadi T (2007) Methematical modeling of desalination by electrodialysis. Desalination 206: 534-549. View
  7. Nikonenko VV, Pismenskaya ND, Itoshin AG, Zabolotsky VI, Shudrenko AA (2008) Description of mass transfer characteristics of ED and EDI apparatus by using the similarity theory and computation method. Chem Eng Process 47: 1118-1127. View
  8. Brauns E, De Wide W, Van den Bosch B, Lens P, Pinoy L, Empsten M (2009) On the experimental verification of an electrodialysis simulation model for optimal stack configuration design through solver software. Desalination 249: 1030-1038. View
  9. Tanaka Y (2014) Development of a computer simulation program of feed-and-bleed ion-exchange membrane electrodialysis for saline water desalination. Desalination 342: 126-138. View
  10. Tanaka Y (2013) Development of a computer simulation program of batch ion-exchange membrane electrodialysis. Desalination 320: 118-133. View
  11. Tanaka Y (2012) Ion-exchange membrane electrodialysis program and its application to multi-stage continuous saline water desalination. Desalination 301: 10-25. View
  12. Tanaka Y (2015) Ion Exchange Membranes. Fundamentals and Applications 2nd edition. Elsevier, Amsterdam, pp. 295-322. View
  13. Tanaka Y (2006) Irreversible thermodynamics and overall mass transport in ion-exchange membrane electrodialysis. J Membr Sci 281: 517-531. View
  14. Tanaka Y (2011a) Ion-exchange membrane electrodialysis of saline water and its numerical analysis. Ind Eng Chem Res 50: 10765-10777. View
  15. Tanaka Y (2011b) Ion-exchange membrane electrodialysis for saline water desalination and its application to seawater concentration. Ind Eng Chem Res 50: 7494-7503. View
  16. Tanaka Y, Ehara R, Itoi S, Goto T (2003) Ion-exchange membrane salt production using brine discharged from a reverse osmosis seawater desalination plant. J Membr Sci 222: 71-86. View
  17. Tanaka Y (2000) Current density distribution and limiting current density in ion-exchange membrane electrodialysis. J Membr Sci 173: 179-190. View
  18. Tanaka Y (2002) Current density distribution, limiting current density and saturation current density in an ion-exchange membrane electrodialyzer. J Membr Sci 210: 65-75. View
  19. Zimmerer CC, Kottke V (1996) Effects of spacer geometry on pressure drop, mass transfer, mixing behavior, and residence time distribution. Desalination 104: 129-134. View
  20. Tsiakis P, Papageorgiou LG (2005) Optimal design of an electrodialysis brackish water desalination plant. Desalination 173: 173-186. View
  21. Wilson JR (1960) Demineralization by Electrodialysis. Buther-worths Scientific Publication, London, pp. 265-274.