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Articles

Analysis of brine desalination with different channels by vacuum membrane distillation

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Pages 6498-6506 | Received 13 Nov 2012, Accepted 08 Jan 2013, Published online: 11 Feb 2013

References

  • F. Banat, S. A1-Asheh, Q.M. Taishat, Treatment of waters colored with methylene blue dye by vacuum membrane distillation. Desalination 174 (2005) 87–96.
  • A. Criscuoli, J. Zhong, A. Figoli, M.C. Carnevale, R. Huang, E. Drioli, Treatment of dye solutions by vacuum membrane distillation. Water Res. 42 (2008) 5031–5037.
  • M.S. EL-Bourawi, M. Khayet, R. Ma, Z. Ding, Z. Li, X. Zhang, Application of vacuum membrane distillation for ammonia removal. J. of Mem. Sci. 301 (2007) 200–209.
  • S. Al-Asheh, F. Banat, M. Qtaishat, M. Al-Khateeb, Concentration of sucrose solutions via vacuum membrane distillation. Desalination 195 (2006) 60–68.
  • Z.P. Zhao, F.W. Ma, W.F. Liu, D.-Z. Liu, Concentration of ginseng extracts aqueous solution by vacuum membrane distillation (1) Effects of operating conditions. Desalination 234 (2008) 152–157.
  • S.D. Hananjay, K.S. Kamalesh, Desalination of brine and produced water by direct contact membrane distillation at high temperatures and pressures. J. of Memb. Sci. 389 (2012) 380–388.
  • F. Stephanie, K.S. Kamalesh, A mathematical model of an aqueous–organic partition-based controlled release system using microporous membranes. J. Controlled Release 61 (1999) 345–360.
  • F. Stephanie, K.S. Kamalesh, Mathematical model of a hybrid dispersed network-membrane-based controlled release system. J. Controlled Release 70 (2001) 51–61.
  • X.Y. Wang, L. Zhang, H.J. Yang, H.L. Chen, Feasibility research of potable water production via solar-heated hollow fiber membrane distillation system. Desalination 247 (2009) 403–411.
  • M. Jean-Pierre, L. Stéphanie, Corinne Cabassud, Vacuum membrane distillation of brine reverse osmosis brines. Water Res. 44 (2010) 5260–5273.
  • A.M. Alklaibi, N. Lior, Transport analysis of air-gap membrane distillation. J. Membr. Sci. 255 (2005) 239–253.
  • A.M. Alklaibi, N. Lior, Heat and mass transfer resistance analysis of membrane distillation. J. Membr. Sci. 282 (2006) 362–369.
  • M. Qtaishat, T. Matsuura, B. Kruczeka, M. Khayet, Heat and mass transfer analysis in direct contact membrane distillation. Desalination 219 (2008) 272–292.
  • Z.Y. Guo, D.Y. Li, B.X. Wang, A novel concept for convective heat transfer enhancement. Int. J. Heat Mass Transfer 41 (1998) 2221–2225.
  • Z.Y. Guo, S. Wang. Novel concept and approaches of heat transfer enhancement, in: P. Cheng (Ed.), Proc. of Symposium on Energy and Engineering, Hong Kong, 2000, New York, Begel House, 2000, 11–15.
  • D.L. Gao, Master thesis, A Preliminary Study of Field Synergy on Treatment of Brine Using Vacuum Membrane Distillation. Beijing Institute of Technology, Beijing, 2011.
  • X.S. Wang, Reverse Osmosis Membrane Technology and its Application in Chemical Industry and Environmental Protection, Chemical industry press, Beijing, 1988.
  • J. Shi, Q. Yuan, C.J. Gao. Membrane Technology Handbook, Chemical Industry Press, Beijing, 2001.

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