References
- R.F. Service, Desalination freshens up, Science, 313 (2006)
1088–1090.
- A. Yezza, A.L. Gars, J.L. Sasseville, M. Zaara, Tunisia and the
public model of distribution and exploitation of drinking water:
the role of public-private partnerships, Desalination, 171 (2005)
77–84.
- H. Belhadj, State of Play and Prospects for Desalination
Development in Tunisia, International Congress AEDyR,
Madrid, 2012.
- Organization World Health, Water Quality Assessments: A
Guide to Use of Biota, Sediments and Water in Environmental
Monitoring, UNESCO/WHO/UNEP, 2nd ed., F&FN Spon,
London, 1996.
- L.F. Greenlee, D.F. Lawler, B.D. Freeman, B. Marrot, P. Moulin,
Reverse osmosis desalination: water sources, technology, and
today’s challenges, Water Res., 43 (2009) 2317–2348.
- K.L. Tu, L.D. Nghiem, A.R. Chivas, Boron removal by reverse
osmosis membranes in seawater desalination applications, Sep.
Purif. Technol., 75 (2010) 87–101.
- B. Peñate, L. García-Rodríguez, Seawater reverse osmosis
desalination driven by a solar Organic Rankine Cycle: design
and technology assessment for medium capacity range,
Desalination, 284 (2012) 86–91.
- H. Strathmann, Electrodialysis, a mature technology with a
multitude of new applications, Desalination, 264 (2010) 268–288.
- K. Walha, R.B. Amar, F. Quemeneur, P. Jaouen, Demineralization
of brackish waters in southern Tunisia by electrodialysis or
reverse osmosis, J. Soc. Chim. Tunis., 9 (2007) 133–142.
- K. Walha, R.B. Amar, L. Firdaous, F. Quéméneur, P. Jaouen,
Brackish groundwater treatment by nanofiltration, reverse
osmosis and electrodialysis in Tunisia: performance and cost
comparison, Desalination, 207 (2007) 95–106.
- J. Ayoub R. Alward, Water requirements and remote arid areas:
the need for small-scale desalination, Desalination, 107 (1996)
131–147.
- J.E. Miller, Review of Water Resources and Desalination
Technologies, Sandia National Labs Unlimited Release Report
SAND 2003-0800, 2003.
- V.V. Nikonenko, A.V. Kovalenko, M.K. Urtenov, N.D.
Pismenskaya, J. Han, P. Sistat, G. Pourcelly, Desalination
at overlimiting currents: state-of-the-art and perspectives,
Desalination, 342 (2014) 85–106.
- Y. Zhang, L. Pinoy, B. Meesschaert, B.V. Bruggen, A natural
driven membrane process for brackish and waste water
treatment: photovoltaic powered ED and FO hybrid system,
Environ. Sci. Technol., 47 (2013) 10548–10555.
- M. Chérif, I. Mkacher, L. Dammak, A. Ben Salah, K. Walha, D.
Grande, V. Nikonenko, Water desalination by neutralisation
dialysis with ion-exchange membranes: flow rate and acid/
alkali concentration effects, Desalination, 361 (2015) 13–24.
- M. Igawa, K. Echizenya, T. Hayashita, M. Seno, Donnan dialysis
desalination, Chem. Lett., 15 (1986) 237–238.
- M. Igawa, K. Echizenya, T. Hayashita, M. Seno, Neutralization
dialysis for deionization, Bull. Chem. Soc. Jpn., 60 (1987) 381–383.
- M. Bleha, G.A. Tishchenko, Neutralization dialysis for desalination,
J. Membr. Sci., 73 (1992) 305–311.
- H. Tanabe, H. Okochi, M. Igawa, Separation of weak acids and
bases by neutralization dialysis, Ind. Eng. Chem. Res., 34 (1995)
2450–2454.
- A. Dieye, C. Larchet, B. Auclair, C. Mar-Diop, Elimination des
fluorures par la dialyse ionique croisée, Eur. Polym. J., 34 (1998)
67–75.
- H. Garmes, F. Persin, J. Sandeaux, G. Pourcelly, M. Mountadar,
Defluoridation of groundwater by a hybrid process combining
adsorption and Donnan dialysis, Desalination, 145 (2002) 287–291.
- Y. Çengeloğlu, A. Tor, E. Kir, M. Ersöz, Transport of hexavalent
chromium through anion-exchange membranes, Desalination,
154 (2003) 239–246.
- C.T. Matos, S. Velizarov, J.G. Crespo, M. Reis, Simultaneous
removal of perchlorate and nitrate from drinking water using
the ion exchange membrane bioreactor concept, Water Res.,
40 (2006) 231–240.
- Y. Zhang, S. Paepen, L. Pinoy, B. Meesschaert, B.V. Bruggen,
Selectrodialysis: fractionation of divalent ions from monovalent
ions in a novel electrodialysis stack, Sep. Purif. Technol., 88
(2012) 191–201.
- M. German, A.K. SenGupta, J. Greenleaf, Hydrogen ion (H+)
in waste acid as a driver for environmentally sustainable processes:
opportunities and challenge, Environ. Sci. Technol.,
47 (2013) 2145–2150.
- A.H. Galama, G. Daubaras, O.S. Burheim, H.H.M. Rijnaarts,
J.W. Post, Fractioning electrodialysis: a current induced ion
exchange process, Electrochim. Acta, 136 (2014) 275–265.
- M. Chérif, I. Mkacher, R. Ghalloussi, L. Chaabane, A.B. Salah, K.
Walha, L. Dammak, D. Grande, Experimental investigation of
neutralization dialysis in three-compartment membrane stack,
Desal. Wat. Treat., 56 (2015) 2567–2575.
- S. Velizarov, Transport of arsenate through anion-exchange
membranes in Donnan dialysis, J. Membr. Sci., 425 (2013)
243–250.
- G. Wang, H. Tanabe, M. Igawa, Transport of glycine by neutralization
dialysis, J. Membr. Sci., 106 (1995) 207–211.
- M. Chérif, I. Mkacher, L. Dammak, A.B. Salah, K. Walha, V.
Nikonenko, S. Korchane, D. Grande, Fractional factorial design
of water desalination by neutralization Dialysis process: concentration,
flow rate and volume effects, Desal. Wat. Treat.,
57 (2015) 14403–14413.
- J.A. Wiśniewski, M. Kabsch-Korbutowicz, S. Łakomska, Donnan
dialysis and electrodialysis as viable options for removing bromates
from natural water, Desalination, 281 (2011) 257–262.
- AFNOR, Polymer Ion-exchange Membranes, French Standard,
NF X 45–200, 1995.
- F.G. Donnan, The theory of membrane equilibrium in presence of
a non-dialyzable electrolyte, Z. Electrochem., 17 (1911) 572–581.