References
- M.A. Hanaa, I.H. Azza, M.A.K. Maaly, G. Hanaa, S. Rania, S.A.
Sahar, A.G. Gadallah, Techno-economic evaluation of forward/
reverse osmosis hybrid system for saline water desalination,
Desal. Wat. Treat., 98 (2017) 66–77.
- A.G. Pervov, A.P. Andrianov, Assessment of the effectiveness of
new “green” scale inhibitors used in reverse-osmosis seawater
desalination, Petrol. Chem., 57 (2017) 139–152.
- Y. Pan, Q. Li, Seawater desalination technology and its
application, North China Electric. Power Tech., 10 (2003) 49–52.
- Q. Zhao, N. Chen, D. Zhao, X. Lu, Thermoresponsive magnetic
nanoparticles for seawater desalination, ACS Appl. Mater.
Interfaces, 5 (2013) 11453–11461.
- J. Han, C. Lin, F. Li, K. Feng, Z. Pan, C. Lin, W. Wei, X. Hai,
A Visio-Based Simulation Training System for Substation
Secondary Circuits , Pow. Syst. Techn., 8 (2012) 047.
- K. Tschungil, T. Tatek, P. Hyunju, H. Mooyoung, Physical
characteristics of bubbles in dissolved air flotation processes
in seawater reverse osmosis desalination plants, Desal. Wat.
Treat., 70 (2017) 19–23.
- Y. Wang, W. He, H. Zhu, Computational fluid dynamics (CFD)
based modelling of osmotic energy generation using pressure
retarded osmosis (PRO), Desalination, 389 (2016) 98–107.
- K.M. Gupta, Z. Qiao, K. Zhang, J. Jiang, Seawater pervaporation
through zeolitic imidazolate framework membranes: atomistic
simulation study, ACS Appl. Mater. Interfaces, 8 (2016)
13392–13399.
- K.M. Gupta, K. Zhang, J. Jiang, Water desalination through
zeolitic imidazolate framework membranes: significant role of
functional groups, Langmuir, 31 (2015) 13230–13237.
- I. Pikaar, K.R. Sharma, S. Hu, Reducing sewer corrosion
through integrated urban water management, Science, 345
(2014) 812–814.