References
- F.A. Banat, J. Simandi, Theoretical and experimental study in
membrane distillation, Desalination, 95 (1994) 39–52.
- S. Bandini, G.C. Sarti, Heat and ass transport resistances in
membrane distillation per drop, J. Membr. Sci., 45 (1999)
1422–33.
- O. Miyatake, H. Iwashita, Laminar-flow heat transfer to a fluid
flowing axially between cylinders with a uniform wall heat
flux, Int. J. Heat Mass Transfer, 34 (1991) 322–327.
- U. Dehesa-Carrasco, C.A. Perez-Rabago, C.A. Arancibia-Bulnes,
Experimental evaluation and modeling of internal temperatures
in an air gap membrane distillation unit, Desalination, 326
(2013) 47–54.
- A. Alkhudhiri, N. Hilal, Air gap membrane distillation:
a detailed study of high saline solution, Desalination, 423 (2017)
179–86.
- K.W. Lawson, D.R. Lloyd, Membrane distillation, J. Membr.
Sci., 124 (1997) 1–25.
- M. Gryta, M. Tomaszewska, J. Grzechulska, A.W. Morawski,
Membrane distillation of NaCl solution containing natural
organic matter, J. Membr. Sci., 181 (2001) 279–287.
- E. Drioli, A. Ali, F. Macedonio, Membrane distillation: recent
developments and perspectives, Desalination, 356 (2015) 56–84.
- Y.C. Woo, L.D. Tijing, W.G. Shim, J.S. Choi, S.H. Kim, T. He,
E. Drioli, H.K. Shon, Water desalination using grapheneenhanced
electro spun nanofiber membrane via air gap
membrane distillation, J. Membr. Sci., 520 (2016) 99–110.
- A. Khalifa, D. Lawal, M. Antar, M. Khayet, Experimental and
theoretical investigation on water desalination using air gap
membrane distillation, Desalination, 376 (2015) 94–108.
- L. García-Fernández, B. Wang, M.C. García-Payo, K. Lib,
M. Khayet, Morphological design of alumina hollow fiber
membranes for desalination by air gap membrane distillation,
Desalination, 420 (2017) 226–240.
- A.E. Khalifa, S.M. Alawad, Air gap and water gap multistage
membrane distillation for water desalination, Desalination,
437 (2018) 175–183.
- H.C. Duong, M. Duke, S. Gray, P. Cooper, L.D. Nghiem,
Membrane scaling and prevention techniques during seawater
desalination by air gap membrane distillation, Desalination,
397 (2016) 92–100.
- A. Alkhudhiri, N. Darwish, N. Hilal, Membrane distillation:
a compressive review, Desalination, 287 (2012) 2–18.
- M.E. Findley, Vaporization through porous membranes, Ind.
Eng. Chem. Process Des. Dev., 6 (1967) 226–230.
- Y. Henderyckx, Evaporation-Condensation Recovery of a
Solution Component Using Vapor-per-Meable Wall Spaced
from a Cold Wall, US Patent 3563860 A, United States Patent
Office, 1971.
- J. Koschikowski, M. Wieghaus, M. Rommei, Solar thermaldriven
desalination plants based on membrane distillation,
Desalination, 156 (2003) 295–304.
- K. Yao, Y. Qin, Y. Yuan, L. Liu, F. He, Y. Wu, A continuous-effect
membrane distillation process based on hollow fiber AGMD
module with internal latent-heat recovery, AIChE J., 59 (2013)
1278–1297.
- C.M. Guijt, G.W. Meindersma, T. Reith, A.B. de Haan, Air gap
membrane distillation: 2. Model validation and hollow fiber
module analysis, Sep. Purif. Technol., 43 (2005) 245–255.
- B.G. Im, J.G. Lee, Y.D. Kim, W.S. Kim, Theoretical modeling and
simulation of AGMD and LGMD desalination processes using
a composite membrane, J. Membr. Sci., 565 (2018) 14–24.
- S. Al-Obaidani, E. Curcio, F. Macedonio, G.D. Profio,
H. Al-Hinai, E. Drioli, Potential of membrane distillation in
seawater desalination: thermal efficiency, sensitivity study and
cost estimation, J. Membr. Sci., 323 (2008) 85–98.
- R.W. Schofield, A.G. Fane, C.J.D. Fell, Heat and mass transfer
in membrane distillation, J. Membr. Sci., 33 (1987) 299–313.
- L. Martı́nez-Dı́ez, M.I. Vázquez-González, Effects of polarization
on mass transport through hydrophobic porous membranes,
Ind. Eng. Chem. Res., 37 (1998) 4128–4135.
- A. Ruiz-Aguirre, J.A. Andrés-Mañas, J.M. Fernández-Sevilla,
G. Zaragoza, Experimental characterization and optimization
of multi-channel spiral wound air gap membrane distillation
modules for seawater desalination, Sep. Purif. Technol., 205
(2018) 212–222.
- R. Bahar, M.N.A. Hawlader, T.F. Ariff, Channeled coolant
plate: a new method to enhance freshwater production from
an air gap membrane distillation (AGMD) desalination unit,
Desalination, 359 (2015) 71–81.
- X. Yang, H. Yu, R. Wang, A.G. Fane, Analysis of the effect of
turbulence promoters in hollow fiber membrane distillation
modules by computational fluid dynamic (CFD) simulations,
J. Membr. Sci., 415–416 (2012) 758–769.
- T. Wang, Z. Zhang, X. Ren, L. Qin, D. Zheng, J. Li, Direct
observation of single- and two-phase flows in spacer filled
membrane modules, Sep. Purif. Technol., 125 (2014) 275–283.
- L.H. Cheng, Y.H. Lin, J.H. Chen, Enhanced air gap membrane
desalination by novel finned tubular membrane modules,
J. Membr. Sci., 378 (2011) 398–406.
- C.D. Ho, H. Chang, C.L. Chang, C.H. Huang, Theoretical and
experimental studies of flux enhancement with roughened
surface in direct contact membrane distillation desalination,
J. Membr. Sci., 433 (2013) 160–166.
- H.M. Yeh, Enrichment of heavy water in rotated wired
concentric-tube thermal diffusion columns, Sep. Purif. Technol.,
40 (2004) 321–325.
- A.S. Jönsson, R. Wimmerstedt, A.C. Harrysson, Membrane
distillation - a theoretical study of evaporation through
microporous membranes, Desalination, 56 (1985) 237–249.
- A.S. Alsaadi, N. Ghaffour, J.D. Li, S. Gray, L. Francis, H. Maab,
G.L. Amy, Modelling of air-gap membrane distillation process:
a theoretical and experimental study, J. Membr. Sci., 445 (2013)
53–65.
- F.A. Banat, J. Simandl, Membrane distillation for dilute ethanol
Separation from aqueous streams, J. Membr. Sci., 163 (1999)
333–348.
- H.M. Yeh, H.C. Ward, The improvement in separation
concentric-tube thermal diffusion column, Chem. Eng. Sci.,
26 (1971) 937–947.
- T.A. Washall, F.W. Melpolder, Improving the separation
efficiency of liquid thermal diffusion columns, Ind. Eng. Chem.
Process Des. Dev., 1 (1962) 26–28.
- H. Geng, H. Wu, P. Li, Q. He, Study on a new air-gap membrane
distillation module for distillation, Desalination, 334 (2014)
29–38.
- P. Poskas, V. Simonis, Heat transfer in initial part of thermal
stabilization of helical channels in air flow, Heat Transfer Res.,
43 (2012) 443–460.
- G.L. Liu, C. Zhu, C.S. Cheung, C.W. Leung, Theoretical and
experimental studies on air gap membrane distillation, Heat
Mass Transfer, 34 (1998) 329–335.
- M.A. Izquierdo-Gil, M.C. Garcı́a-Payo, C. Fernández-Pineda,
Air gap membrane distillation of aqueous alcohol solutions,
J. Membr. Sci., 169 (2000) 61–80.
- S.B. Warner, Fiber Science, Princeton-Hall, Englewood Cliffs,
NJ, 1995.
- K.W. Lawson, D.R. Lloyd, Membrane distillation, J. Membr.
Sci., 124 (1997) 1–25.
- R.W. Schofield, A.G. Fane, C.J.D. Fell, Gas and vapor transport
through microporous membranes, I. Knudsen-Poiseuille
transition, J. Membr. Sci., 53 (1990) 159–171.
- J. Phattaranawik, R. Jiraratananon, A.G. Fane, Heat transport
and membrane distillation coefficient in direct contact
membrane distillation, J. Membr. Sci., 212 (2002) 177–193.
- S.G. Kandlikar, D. Schmitt, Characterization of surface
roughness effects on pressure drop in single-phase flow in
minichannels, Phys. Fluids, 17 (2005) 100606–100606–11,
doi: 10.1063/1.1896985.
- H.M. Yeh, F.K. Ho, A study of the separation efficiency of wired
thermal diffusion columns with tubes rotating in opposite
directions, Chem. Eng. Sci., 75 (1975) 1381–1385.
- C.D. Ho, L. Chen, F.C. Tsai, G.H. Lin, J.W. Lim, Distillate flux
enhancement of the concentric circular direct contact membrane
distillation module with spiral wired flow channel, J. Taiwan
Inst. Chem. Eng., 94 (2019) 70–80.
- H. Chang, C.Y. Hung, C.L. Chang, T.W. Cheng, C.D. Ho,
Optimization of three small-scale solar membrane distillation
desalination systems, Membr. Water Treat., 6 (2015) 451–476.