References
- P.H. Gleick, Ed., Water in Crisis: A Guide to the World’s Fresh
Water Resources, Oxford University Press, Oxford, United
Kingdom, 1993.
- Food and Agriculture Organization of the United Nations,
Water Scarcity. Available at: http://www.fao.org/land-water/water/water-scarcity/en/; 12, (Retrieved May 12, 2019).
- WWAP UNESCO, The United Nations World Water Development
Report 2019, Leaving No One Behind, World Water
Assessment Programme, ISBN 978–92–3-100309–7, Paris, 2019,
pp. 186.
- UN Sustainable Development Goals. Available at: https://www.
undp.org/content/undp/en/home/sustainable-developmentgoals.
html
- Water Scarcity in Egypt, Ministry of Water Resources and
Irrigation, Egypt, 2014. Available at: http://www.mfa.gov.eg/SiteCollectionDocuments/Egypt%20Water%20Resources%20
Paper_2014.pdf
- A. Cipollina, G. Micale, L. Rizzuti, Eds., Seawater Desalination,
Conventional, and Renewable Energy Processes, Springer-Verlag Berlin Heidelberg, 2009.
- J. Kucera, Reverse Osmosis, Design, Processes, and Applications
for Engineers, Scrivener Publishing LLC, Mass., USA, 2010.
- S. Porada, R. Zhao, A. van der Wal, V. Presser, P.M. Biesheuvel,
Review on the science and technology of water desalination by
capacitive deionization, Prog. Mater. Sci., 58 (2013) 1388–1442.
- F.A. AlMarzooqi, A.A. Al Ghaferi, I. Saadat, N. Hilal, Application
of capacitive deionization in water desalination:
a review, Desalination, 342 (2014) 3–15.
- R. Zhao, Theory and operation of capacitive deionization
systems. 2013.
- M. Elshafei1, A. Seleym, Potential of solar-driven CDI technology
for water desalination in Egypt, J. Renewable Energy
Sustainable Dev., 3 (2017) 2356–8569.
- A.M. Pernia, F.J. Alvarez-Gonzalez, M.A.J. Prieto, P.J. Villegas,
F. Nuno, New control strategy of an up–down converter for
energy recovery in a CDI desalination system, IEEE Trans.
Power Electron., 29 (2014) 3573–3581.
- K. Laxmana, M. Myinta, M. Al Abric, Efficient desalination of
brackish groundwater via a novel capacitive deionization cell
using nanoporous activated carbon cloth electrodes, J. Eng.
Res., 12 (2015) 22–31.
- F. Ahmad, S.J. Khan, Y. Jamal, H. Kamran, A. Ahsan, M. Ahmad,
A. Khan, Desalination of brackish water using capacitive
deionization (CDI) technology, Desal. Water Treat., 57 (2015)
7659–7666.
- A. Campione, L. Gurreri, M. Ciofalo, G. Micale, A. Tamburini,
A. Cipollina, Electrodialysis for water desalination: a critical
assessment of recent developments on process fundamentals,
models and applications, Desalination, 434 (2018) 121–160.
- M. Hayashi, Temperature-electrical conductivity relation of
water for environmental monitoring and geophysical data
inversion, Environ. Monit. Assess., 96 (2004) 119–128.
- A. Doyen, C. Roblet, L. Beaulieu, L. Saucier, Y. Pouliot, L. Bazinet,
Impact of water splitting phenomenon during electrodialysis
with ultrafiltration membranes on peptide selectivity and
migration, J. Membr. Sci., 428 (2013) 349–356.