Références
79
Dawoud, M. A. (2012). Environmental impacts of seawater desalination: Arabian Gulf case
study. International
Journal
of
Environment
and
Sustainability, 1,
pp.3.
doi: 10.24102/ijes.v1i3.96
Décret exécutif n° 06-141 du 20 Rabie El Aouel 1427 correspondant au 19 avril 2006
définissant les valeurs limites des rejets d’effluents liquides industriels.
Dif, N., Moutarfi, S. (2018). Optimisation de l’énergie électrique dans les stations de
dessalement des eaux de mer par osmose inverse, cas de la station Palm Beach. Mémoire de
Master, Génie civil. Tizi-Ouzou : université Mouloud Mammeri, pp. 67.
Einav, R. and Lockiec, F., (2003). Environmental aspects of a desalination plant in
Ashkelon. Desalination, 156, pp. 79–85. doi.org/10.1016/S0011-9164(02)01057-3
Elsaid, K., Sayed, E. T., Abdelkareem, M. A., Baroutaji, A., & Olabi, A. G. (2020).
Environmental impact of desalination processes: Mitigation and control strategies. Science of
the Total Environment, 740, pp. 140-125. https://doi.org/10.1016/j.scitotenv.2020.140125
Fernandez-Torquemada, Y., et al. (2011). Responses of two Mediterranean seagrasses to
experimental
changes
in
salinity.
Hydrobiologia
669,
pp.
21–33.
https://doi.org/10.1007/s10750-011-0644-1.
Fuentes-Bargues, J. L. (2014). Analysis of the process of environmental impact assessment
for seawater desalination plants in Spain. Desalination, 347, pp. 166-174.
https://doi.org/10.1016/j.desal.2014.05.032
GAUJOUS D. (1995). La pollution des milieux aquatiques : aide-mémoire. Tec & Doc
Lavoisier, Paris : pp. 217
Gálvez, J.B., Rodríguez, S.M., et al. (2010). Solar Energy Conversion And Photoenergy
Systems: Thermal Systems and Desalination Plants. Volume IV. EOLSS Publications.
Gao, L., Zhang, J., & Liu, G. (2021). Life cycle assessment for algae-based desalination
system. Desalination, 512, 115148. doi:10.1016/j.desal.2021.115148 .
Garrote-Moreno, A., Sandoval-Gil, J.M., et al. (2015). Plant Water Relations and Ion
Homoeostasis of Mediterranean Seagrasses (Posidonia oceanica and Cymodocea nodosa) in
Response
to
Hypersaline
Stress.
Mar.
Biol.
162,
pp.
55–68.
https://link.springer.com/article/10.1007%2Fs00227-014-2565-9
Gilron, J., Folkman, Y. et al. (2003). WAIV — wind aided intensified evaporation for
reduction of desalination brine volume, Desalination, 158, pp. 205–214.
https://doi.org/10.1016/S0011-9164(03)00453-3
Précédent

Caractérisation des rejets de saumure des stations de dessalement et leur impact sur le milieu récepteur: - 91/115

Suivant