487
Views
58
CrossRef citations to date
0
Altmetric
Articles

Status of membrane distillation for water and wastewater treatment—A review

, , &
Pages 5199-5218 | Received 16 May 2012, Accepted 13 May 2013, Published online: 25 Jun 2013

References

  • S. Otles, S. Otles, Desalination techniques. Electron. J. Environ. Agric. Food Chem. 4 (2004) 963–969.
  • L. Muthumariappan, Energy Conservation Systems in Reverse Osmosis Desalination Plants, TWAD Technical Newsletter, January 2004.
  • B. Van der Bruggen, C. Vandecasteele, Distillation vs. membrane filtration: Overview of process evolutions in seawater desalination. Desalination 143 (2002) 207–218.
  • S.R. Pinappu, Composite Membranes for Membrane Distillation Desalination Process, Final Report, New Mexico State University, 2010.
  • O.T. Komeslia, K. Teschnerb, W. Hegemannb, C.F. Gokcay, Vacuum membrane applications in domestic wastewater reuse. Desalination 215 (2007) 22–28.
  • G.W. Meindersma, C.M. Guijt, A.B. de Haan, Desalination and water recycling by air gap membrane distillation. Desalination 187 (2006) 291–301.
  • J.P. Mericq, S. Laborie, C. Cabasuud, Vacuum membrane distillation for an integrated seawater desalination process. Desalin. Water Treat. 9 (2009) 293–302.
  • T. Mohammadi, M.A. Safavi, Application of Taguchi method in optimization of desalination by vacuum membrane distillation. Desalination 249 (2009) 83–89.
  • D. Wirth, C. Cabassud, Water desalination using membrane distillation: Comparison between inside/out and outside/in permeation. Desalination 147 (2002) 139–145.
  • M. Safavi, T. Mohammadi, High–salinity water desalination using VMD. Chem. Eng. J. 149 (2009) 191–195.
  • M. Busch, R. Chu, U. Kolbe, Q. Meng, S. Li, Ultrafiltration pretreatment to reverse osmosis for seawater desalination—three years field experience in the Wangtan Datang power plant. Desalin. Water Treat. 10 (2009) 1–20.
  • C. Bartels, M. Hirose, S. Rybar, R. Frabks, Optimum RO system design with high area spiral wound elements. Desalin. Water Treat. 10 (2009) 21–26.
  • T. Janus, P. Paul, B. Ulanicki, Modelling and simulation of short and long term membrane filtration experiments. Desalin. Water Treat. 8 (2009) 37–47.
  • C. Tansakul, S. Laborie, C. Cabassud, Membrane hybrid processes for pretreatment before seawater reverse osmosis desalination. Desalin. Water Treat. 9 (2009) 279–286.
  • B. Nicolaisen, Development in membrane technology for water treatment. Desalination 153 (2002) 355–360.
  • Z. Jin, D. Yang, S. Zhang, X. Jian, Hydrophobic modification of poly (phthalazinone ether sulfone ketone) hollow fiber membrane for vacuum membrane distillation. J. Membr. Sci. 310 (2008) 20–27.
  • T. Mohammadi, M. Akbarabadi, Separation of ethylene glycol solution by vacuum membrane distillation (VMD). Desalination 181 (2005) 35–41.
  • J. Li, Z. Xu, Z. Liu, W. Yuan, H. Xiang, S. Wang, Y. Xu, Micro porous polypropylene and polyethylene hollow fiber membranes: Part 3, Experimental studies on membrane distillation for desalination. Desalination 155 (2003) 153–156.
  • Y. Xu, B. Zhu, Y. Xu, Pilot test of vacuum membrane distillation for desalination on a ship. Desalination 189 (2006) 165–169.
  • M. Gryta, Desalination of thermally softened water by membrane distillation process. Desalination 257 (2010) 30–35.
  • N. Tang, Q. Jia, H. Zhang, J. Li, S. Cao, Preparation and morphological characterization of narrow pore size distributed polypropylene hydrophobic membranes for vacuum membrane distillation via thermally induced phase separation. Desalination 256 (2010) 27–36.
  • M.A. Izquierdo-Gil, G. Jonsson, Factors affecting flux and ethanol separation performance in vacuum membrane distillation. J. Membr. Sci. 214 (2003) 113–130.
  • D.E. Suk, T. Matsuura, H.B. Park, Y.M. Lee, Development of novel surface modified phase inversion membranes having hydrophobic surface-modifying macromolecule for vacuum membrane distillation. Desalination 261 (2010) 300–312.
  • M. Gryta, Application of membrane distillation process for tap water purification. Membr. Water Treat. 1 (1) (2010) 1–12.
  • A Solar Desalination System Using the Membrane Distillation Process, CADDET renewable energy, Harwell, Tech. Boucher No. 46, 1996.
  • Y. Yun, R. Ma, W. Zhang, A.G. Fane, J. Li, Direct contact membrane distillation mechanism for high concentration NaCl solutions. Desalination 188 (2006) 251–262.
  • M. Khayet, M.P. Godini, J.I. Mengual, Theoretical and experimental studies on desalination using the sweeping gas membrane distillation method. Desalination 157 (2003) 297–305.
  • A.M. Islam, Membrane Distillation Process for Pure Water and Removal of Arsenic, MSc Thesis, 2004.
  • M. Tomaszewska, Membrane distillation: Examples of application in technology and environmental protection. Pol. J. Environ. Stud. 9 (1) (2000) 27–36.
  • N. Dow, J. Zhang, M. Duke, J. Li, S.R. Gray, E. Ostarcevic, Membrane Distillation of Brine Wastes, Research Report 63, Water Quality Research Australia Ltd, 2008.
  • A.M. Alklaibi, The potential of membrane distillation as a stand-alone desalination process. Desalination 223 (2008) 375–385.
  • J. Barth, J. Mays, Modern Methods of Polymer Characterization. Wiley, New York, NY, 1991 . 208–222.
  • Recording Membrane Osmometer Instruction Manual Model 231, Jupiter Inst. Co., Florida, USA.
  • F.A. Banat, Membrane Distillation for Desalination and Removal of Volatile Organic Compounds from Water, PhD Thesis, 1994.
  • M. Khayet, Membranes and theoretical modeling of membrane distillation: A review. Adv. Colloid Interface Sci. 164 (2011) 56–88.
  • M.M. Teoh, T.S. Chung, Membrane distillation with hydrophobic micro void free PVDF-PTFE hollow fiber membrane. Sep. Purif. Technol. 66 (2) (2009) 229–236.
  • M. Gryta, M. Barancewicz, Influence of morphology of PVDF capillary membranes on the performance of DCMD. J. Membr. Sci. 358 (2010) 158–167.
  • M. Qtaishat, T. Matsuura, M. Khayet, K.C. Khulbe, Comparing the desalination performance of SMM blended polyethersulfone to SMM blended polyetherimide membranes by direct contact membrane distillation. Desalin. Water Treat. 5 (2009) 91–98.
  • M. Khayet, J.I. Mengual, T. Matsuura, Porous hydrophobic/hydrophilic composite membranes: Application in desalination using direct contact membrane distillation. J. Membr. Sci. 252 (2005) 101–113.
  • M. Khayet, T. Matsuura, J.I. Mengual, M. Qtaishat, Design of novel direct contact membrane distillation membranes. Desalination 192 (2006) 105–111.
  • M. Khayet, T. Matsuura, M.R. Qtaishat, J.I. Mengual, Porous hydrophobic/hydrophilic composite membranes: Preparation and application in DCMD desalination at higher temperatures. Desalination 199 (2006) 180–181.
  • M. Khayet, T. Matsuura, Application of surface modifying macromolecules for the preparation of membranes for membrane distillation. Desalination 158 (2003) 51–56.
  • M. Khayet, D.E. Suk, R.M. Narbaitz, J.P. Santerre, T. Matsuura, Study on surface modification by surface-modifying macromolecules and its applications in membrane-separation processes. J. Appl. Polym. Sci. 89 (2003) 2902–2916.
  • R.T. Huo, Z.Y. Gu, K.J. Zuo, G.M. Zhao, Fouling resistance of PVDF-fabric composite membrane in membrane distillation desalination. Adv. Mater. Res. 150–151 (2011) 334–339.
  • M. Qtaishat, D. Rana, T. Matsuura, M. Khayet, Effect of surface modifying macromolecules stoichiometric ratio on composite hydrophobic/hydrophilic membranes characteristics and performance in direct contact membrane distillation. AIChE J. 55 (2009) 3145–3151.
  • M. Qtaishat, M. Khayet, T. Matsuura, Novel porous composite hydrophobic/hydrophilic polysulfone membranes for desalination by direct contact membrane distillation. J. Membr. Sci. 341 (2009) 139–148.
  • D.E. Suk, T. Matsuura, H.B. Park, Y.M. Lee, Synthesis of a new type of surface modifying macromolecules (nSMM) and characterization and testing of nSMM blended membranes for membrane distillation. J. Membr. Sci. 277 (2006) 177–185.
  • Z.D. Hendren, J. Brant, M.R. Wiesner, Surface modification of nanostructured ceramic membranes for direct contact membrane distillation. J. Membr. Sci. 331 (2009) 1–10.
  • P. Peng, A.G. Fane, X. Li, Desalination by membrane distillation adopting a hydrophilic membrane. Desalination 173 (2005) 45–54.
  • K. Ohta, I. Hayano, T. Okabe, T. Goto, S. Kimura, H. Ohya, Membrane distillation with fluoro-carbon membranes. Desalination 81 (1991) 107–115.
  • S. Cerneaux, I. Stuzynska, W.M. Kujawski, M. Persin, A. Larbot, Comparison of various membrane distillation methods for desalination using hydrophobic ceramic membranes. J. Membr. Sci. 337 (2009) 55–60.
  • M.C. Carcia-Payo, M. Essalhi, M. Khayet, Preparation and characterization of PVDF–HFP copolymer hallow Preparation and characterization of PVDF–HFP copolymer hallow fiber membrane distillation membrane distillation. Desalination 245 (2009) 469–473.
  • M.C. Carcia-Payo, M. Essalhi, M. Khayet, Effect of PVDF–HFP concentration on membrane distillation performance and structural morphology of hallow fiber membranes. J. Membr. Sci. 347 (2010) 209–219.
  • S. Bonyadi, T.S. Chung, Highly porous and macrovoid-free PVDF hallow fiber membranes for membrane distillation by a solvent-dope solution co-extrusion approach. J. Membr. Sci. 331 (2009) 66–74.
  • M. Khayet, C. Cojocaru, M.C. Garcia-Payo, Experimental design and optimization of asymmetric flat sheet membranes prepared for direct contact membrane distillation. J. Membr. Sci. 351 (2010) 234–245.
  • C. Feng, B. Shi, G. Li, Y. Wu, Preliminary research on microporous membrane from F2.4 for membrane distillation. Sep. Purif. Technol. 39 (2004) 221–228.
  • C. Feng, K.C. Khulbe, T. Matsuura, R. Gopal, S. Kaur, S. Ramakrishna, M. Khayet, Production of drinking water from saline water by air gap membrane distillation using PVDF nanofiber membrane. J. Membr. Sci. 311 (2008) 1–6.
  • L.F. Dumee, K. Sears, J. Schutz, N. Finn, C. Huynh, S. Hawkins, M. Duke, S. Gray, Characterization and evolution of carbon nanotube Bucky-Paper membranes for direct contact membrane distillation. J. Membr. Sci. 351 (2010) 36–43.
  • K. Gethard, O. Sae-Khow, S. Mitra, Water desalination using carbon-nanotube-enhanced membrane distillation. ACS Appl. Mater. Interfaces 3 (2) (2011) 110–114.
  • L. Dumee, K. Sears, J. Schutz, N. Finn, M. Duke, S. Gray, Carbon nanotube based composite membranes for water desalination by membrane distillation. Desalin. Water Treat. 17 (2010) 72–79.
  • M.A. Tofighy, Y. Shirazi, T. Mohammadi, A. Pak, Salty water desalination using carbon nanotubes membrane. Chem. Eng. J. 168 (2011) 1064–1072.
  • K.Y. Wang, S.W. Foo, T.S. Chung, Mixed matrix PVDF hallow fiber membranes with nanoscale pores for desalination through direct contact membrane distillation. Ind. Eng. Chem. Res. 48 (2009) 4474–4483.
  • L. Martinez, J.M. Rodriguez-Maroto, Effects of membrane and module design improvements on flux in direct contact membrane distillation. Desalination 205 (2007) 97–103.
  • M. Gryta, Effect of iron oxides scaling on the MD process performance. Desalination 216 (2007) 88–102.
  • M. Gryta, Alkaline scaling in the membrane distillation process. Desalination 228 (2008) 128–134.
  • M. Khayet, J.I. Mengal, G. Zakrzewska-Trznadel, Direct contact membrane distillation for nuclear desalination: Part I. Int. J. Nucl. Desalin. 1 (4) (2005) 435–449.
  • J. Xu, M. Furuswa, A. Ito, Air-sweep vacuum membrane distillation using fine silicone rubber, hallow–fiber membranes. Desalination 191 (2006) 223–231.
  • N. Diban, O. Voinea, A. Urtiaga, I. Ortiz, Vacuum membrane distillation of the main pear aroma compound: Experimental study and mass transfer modeling. J. Membr. Sci. 326 (2009) 64–75.
  • B. Li, K.K. Sirkar, Novel membrane and device for vacuum membrane distillation-based desalination process. J. Membr. Sci. 257 (2005) 60–75.
  • C. Liu, Y. Chen, W. Junn, C. Wang, Effect of flow deflector on the flux improvement in direct contact membrane distillation. Desalination 253 (2010) 16–21.
  • A.M. Alklaibi, N. Lior, Membrane–distillation desalination: Status and potential. Desalination 171 (2004) 111–131.
  • Y. Li, K. Tian, Application of vacuum membrane distillation in water treatment. J. Sustainable Dev. 2 (3) (2009) 183–186.
  • A.S. Al-Amoudi, Factors affecting natural organic matter (NOM) and scaling fouling in NF membranes: A review. Desalination 259 (2010) 1–10.
  • S. Shirazi, C. Lin, D. Chen, Inorganic fouling of pressure-driven membrane processes: A critical review. Desalination 250 (2010) 136–248.
  • A. Kullab, A. Martin, Membrane distillation and applications for water purification in thermal cogeneration plants. Sep. Purif. Technol. 76 (2011) 231–237.
  • S. Srisurichan, R. Jiraratananon, A.G. Fane, Mass transfer mechanisms and transport resistance in direct contact membrane distillation process. J. Membr. Sci. 277 (2006) 186–194.
  • M. Gryta, Fouling in DCMD process. J. Membr. Sci. 325 (2008) 383–394.
  • M. Gryta, Osmotic MD and other membrane distillation variants. J. Membr. Sci. 246 (2005) 145–156.
  • M. Qtaishat, T. Matsuura, B. Kruczek, M. Khayet, Heat and mass transfer analysis in direct contact membrane distillation. Desalination 219 (2008) 272–292.
  • F. Banat, F. Abu Al-Rub, K. Bani-Melhem, Desalination by vacuum membrane distillation: Sensitivity analysis. Sep. Purif. Technol. 33 (2003) 75–87.
  • J.I. Mengual, M. Khayet, M.P. Godino, Heat and mass transfer in vacuum membrane distillation. Int. J. Heat Mass Transfer 47 (2004) 865–875.
  • K. Charfi, M. Khayet, M.J. Safi, Numerical simulation and experimental studies on heat and mass transfer using sweeping gas membrane distillation. Desalination 259 (2010) 84–96.
  • P. Termpiyakua, R. Jiraratananon, S. Srisurichan, Heat and mass transfer characteristics of a direct contact membrane distillation process for desalination. Desalination 177 (2005) 133–141.
  • K.W. Lawson, D.R. Lloyd, Membrane distillation: I. Module design and performance evaluation using vacuum membrane distillation. J. Membr. Sci. 120 (1996) 111–121.
  • D.U. Jun, L.I.U. Zuohua, G.A.N. Lihua, T.A.O. Changyuan, L.I.U. Renlong, A method for experimental determination of mass transfer resistance across membrane in VMD. Desalination 200 (2006) 606–608.
  • F.A. Banat, J. Simandl, Desalination by membrane distillation: A parametric study. Sep. Sci. Technol. 33 (1998) 201–226.
  • S.P. Agashichev, A.V. Sivakov, Modeling and calculation of temperature-concentration polarization in the membrane distillation process. Desalination 93 (1993) 245–258.
  • S. Bouguecha, R. Chouikh, M. Dhahbi, Numerical study of the coupled heat and mass transfer in membrane distillation. Desalination 152 (2002) 245–252.
  • M. Khayet, A.O. Imdakm, T. Matsuura, Monte Carlo simulation and experimental heat and mass transfer in direct contact membrane distillation. Int. J. Heat Mass Transfer 53 (2010) 1249–1259.
  • T.Y. Cath, V.D. Adams, A.E. Childress, Experimental study of desalination using direct contact membrane distillation: A new approach to flux enhancement. J. Membr. Sci. 228 (2004) 5–16.
  • A. Criscuoli, M.C. Carnevale, E. Drioli, Energy requirements in membrane distillation: Evaluation and optimization. Desalination 200 (2006) 586–587.
  • F. Macedonio, E. Curcio, E. Drioli, Integrated membrane systems for seawater desalination: Energetic and exergetic analysis, economic evaluation, experimental study. Desalination 203 (2007) 260–276.
  • A. Criscuoli, M.C. Carnevale, E. Drioli, Evaluation of energy requirements in membrane distillation. Chem. Eng. Process. 47 (2008) 1098–1105.
  • C. Cabassud, D. Wirth, Membrane distillation for water desalination: How to choose an appropriate membrane? Desalination 157 (2003) 307–314.
  • P. Meher Vineela, A. Bhargavi, Solar Desalination System Using MD Process, IDA Worldwide Desalting Plants Inventory, Report No 18, 2004.
  • J.H. Hanemaaijer, Memstill®: Low cost membrane distillation technology for seawater desalination. Desalination 168 (2004) 355–356.
  • J.H. Hanemaaijer, J. van Medevoort, A.E. Jansen, C. Dotremont, E. van Sonsbeek, T. Yuan, L. De Ryck, Memstill membrane distillation: A future desalination technology. Desalination 199 (2006) 175–176.
  • C. Dotremont, B. Kregersman, R. Sih, K.C. Lai, K. Koh, H. Seah, Seawater desalination with memstill technology: A sustainable solution for the industry. Water Pract. Technol. 5 (2) (2010) 1–7.
  • A. Jansen, J.H. Hanemaaijer, J.W. Assink, E. Van Sonsbeek, C. Dotremont, J. Van Medevoort, Pilot Plants Prove Feasibility of a New Desalination Technique, Asian Water, 22 March 2010.
  • K.K. Sirkar, Y. Qin, Novel Membrane and Device for Direct Contact Membrane Distillation Based Desalination Process, Desalination and Water Purification Research and Development Program Report No. 87, March 2001.
  • L. Cheng, P. Wu, C. Kong, J. Chen, Spatial variations of DCMD performance for desalination through countercurrent hollow fiber module. Desalination 234 (2008) 323–334.
  • V.A. Bui, L.T.T. Vu, M.H. Nguyen, Simulation and optimization of direct contact membrane distillation for energy efficiency. Desalination 259 (2010) 29–37.
  • L.R. Evans, J.E. Miller, Sweeping Gas Membrane Desalination Using Commercial Hydrophobic Hollow Fiber Membranes, SAND Report, 2002.
  • T. Mohammadi, O. Bakhteyari, Concentration of L-lysine monohydrochloride (L-lysine–HCl) syrup using vacuum membrane distillation. Desalination 200 (2006) 591–594.
  • S. Bandini, A. Saavedra, G.C. Sarti, Vacuum membrane distillation: Experiments and modeling. AIChE J. 43 (2) (1997) 398–408.
  • S. Bandini, C. Gostoli, G.C. Sarti, Separation efficiency in vacuum membrane distillation. J. Membr. Sci. 73 (1992) 217–229.
  • L. Martinez-Diez, F.J. Florido-Diaz, Desalination of brines by membrane distillation. Desalination 137 (2001) 267–273.
  • M. Gryta, M. Tomaszewska, K. Karakulski, Wastewater treatment by membrane distillation. Desalination 198 (2006) 67–73.
  • H. Zhao, H. Sun, Study on the experiment of concentrating coking wastewaters by air-blowing vacuum membrane distillation. Appl. Phy. Res. 1 (2) (2009) 53–58.
  • A. Hafez, M. Khedr, K. El-Khatib, H. Gadallah, Pilot scale investigation of low pressure nanofiltration and reverse osmosis membrane techniques for the treatment of El-salaam Canal water, Sinai, Egypt. Desalin. Water Treat. 8 (2009) 279–285.
  • G.L. Liu, C. Zhu, C.S. Cheung, C.W. Leung, Theoretical and experimental studies on air gap membrane distillation. Heat Mass Transf. 34 (1998) 329–335.
  • C.M. Guijit, I.G. Racz, J.W. van Heuven, T. Reith, A.B. de Haan, Modeling of a transmembrane evaporation module for desalination of seawater. Desalination 126 (1999) 119–125.
  • M. Celere, C. Gostoli, The heat and mass transfer phenomena in osmotic membrane distillation. Desalination 147 (2002) 133–138.
  • K. Karakulski, M. Gryta, A. Morawski, Membrane processes used for potable water quality improvement. Desalination 145 (2002) 315–319.
  • S. Nene, S. Kaur, K. Sumod, B. Joshi, K.S.M.S. Raghavarao, Membrane distillation for the concentration of raw cane-sugar syrup and membrane clarified sugarcane juice. Desalination 147 (2002) 157–160.
  • V. Calabro, B.L. Jiao, E. Drioli, Theoretical and experimental study on membrane distillation in the concentration of orange juice. Ind. Eng. Chem. Res. 33 (1994) 1803–1808.
  • F. Lagana, G. Barbieri, E. Drioli, Direct contact membrane distillation: Modeling and concentration experiments. J. Membr. Sci. 166 (2000) 1–11.
  • M. Matheswaran, T.O. Kwon, J.W. Kim, S. Moon, Factors affecting flux and water separation performance in air gap membrane distillation. J. Ind. Eng. Chem. 13 (6) (2007) 965–970.
  • C. Boi, S. Bandini, G.C. Sarti, Pollutants removal from wastewaters through membrane distillation. Desalination 183 (2005) 383–394.
  • S. Bonyadi, T.S. Chung, Flux enhancement in membrane distillation by fabrication of dual layer hydrophilic-hydrophobic hollow fiber membranes. J. Membr. Sci. 306 (2007) 134–146.
  • L. Song, B. Li, K.K. Sirkar, J.L. Gilron, Direct contact membrane distillation-based desalination: Novel membranes, devices, larger scale studies, and a model. Ind. Eng. Chem. Res. 46 (2007) 2307–2323.
  • M. Qtaishat, M. Khayet, T. Matsuura, Guidelines for preparation of higher flux hydrophobic/hydrophilic composite membranes for membrane distillation. J. Membr. Sci. 329 (2009) 193–200.
  • A. Mourgues, N. Heng, M.P. Belleville, D. Paolucci-Jeanjean, J. Sanchez, Study of a new membrane evaporator with a hydrophobic metallic membrane. J. Membr. Sci. 355 (2010) 112–125.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.