References
- D. Butler, Global challenges: water, Global Chall., 1 (2017)
61–62.
- M. Ahmad, P. Williams, Assessment of desalination technologies
for high saline brine applications, Desalination, 30 (2011) 22–36.
- OECD, The organization for economic co-operation and
development, OECD, Environmental Outlook to 2030, OECD
Publishing, 2008, pp. 1–13, https://www.oecd.org/environment/
indicators-modelling-outlooks/40200582.pdf.
- P.G. Youssef, R.K. AL-Dadah, S.M. Mahmoud, Comparative
analysis of desalination technologies, Energy Procedia, 61
(2014) 2604–2607.
- A. Rodrıguez-Calvo, G.A. Silva-Castro, F. Osorio, J. González-López, C. Calvo, Reverse osmosis seawater desalination:
current status of membrane systems, Desal. Wat. Treat., 56
(2014) 849–861.
- Y. Ghalavand, M.S. Hatamipour, A. Rahimi, A review on energy
consumption of desalination processes, Desal. Wat. Treat., 54
(2014) 1526–1541.
- K. Mohanty, M.K. Purkait, Membrane Technologies and
Applications, 1st ed., CRC Press Book, Taylor & Francis Group,
2011, pp. 238–522, https://www.crcpress.com/Membrane-Tech
nologies-and-Applications/Mohanty-Purkait/p/book/97814
39805268.
- R.W. Baker, Membrane Technology and Applications, 3rd
ed., Membrane Technology and Research, Inc., Menlo Park,
California, 2012, pp. 1–538.
- J. Zhu, S. Yuan, A. Uliana, J. Hou, J. Li, X. Li, M. Tian, Y. Chen,
A. Volodin, B.V.D. Bruggen, High-flux thin film composite
membranes for nanofiltration mediated by a rapid co-deposition
of polydopamine/piperazine, J. Membr. Sci., 554 (2018) 97–108.
- D. Zhao, S. Yu, A review of recent advance in fouling mitigation
of NF/RO membranes in water treatment: pretreatment,
membrane modification, and chemical cleaning, Desal. Wat.
Treat., 55 (2015) 870–891.
- S.G. Kim, D.H. Hyeon, J.H. Chun, B.-H.C.S.H. Kim, Novel thin
nanocomposite RO membranes for chlorine resistance, Desal.
Wat. Treat., 51 (2013) 6338–6345.
- J.R. Werber, A. Deshmukh, M. Elimelech, The critical need
for increased selectivity, not increased water permeability, for
desalination membranes, Environ. Sci. Technol. Lett., 3 (2016)
112–120.
- T.K. Dey, R.C. Bindal, S. Prabhakar, P.K. Tewari, Development,
characterization and performance evaluation of positivelycharged
thin film-composite nanofiltration membrane
containing fixed quaternary ammonium moieties, Sep. Sci.
Technol., 46 (2011) 933–943.
- R. Han, J. Zenga, Y. Wangb, Q. Changb, X. Zhangb, J. Zhou,
Preparation and application of positively charged quaternized
chitosan/PEI composite nanofiltration membranes, Desal. Wat.
Treat., 52 (2014) 5790–5795.
- S.H. Maruf, D.U. Ahn, J. Pellegrino, J.P. Killgore, A.R. Greenberg,
Y. Ding, Correlation between barrier layer Tg and a thin-film
composite polyamide membrane’s performance: effect of
chlorine treatment, J. Membr. Sci., 405–406 (2012) 167–175.
- G.-R. Xu, H.-L. Zhao, S.-B. Wu, Polyamide nanofilm
composite membranes (NCMs) supported by chitosancoated
polyvinyldenefluoride (PVDF) nanofibrous mats
and their separation properties, Desal. Wat. Treat., 57 (2016)
23522–23535.
- W.J. Lau, A.F. Ismail, N. Misdan, M.A. Kassim, A recent progress
in thin film composite membrane: a review, Desalination, 287
(2012) 190–199.
- S.H. Son, J. Jegal, Preparation and characterization of polyamide
reverse-osmosis membranes with good chlorine tolerance,
J. Appl. Polym. Sci., 120 (2011) 1245–1252.
- A. Sikorski, D.T. Ski, Synthesis and structural characterization
of a cocrystal salt containing acriflavine and 3,5-dinitrobenzoic
acid, Tetrahedron Lett., 55 (2014) 2253–2255.
- H.H. Eldaroti, S.A. Gadir, M.S. Refat, A.M. Adam, Charge
transfer complexes of the donor acriflavine and the acceptors
quinol, picric acid, TCNQ and DDQ: synthesis, spectroscopic
characterizations and antimicrobial studies, Int. J. Electrochem.
Sci., 8 (2013) 5774–5800.
- H.K. Can, G. Karakus, N. Tuzcu, Synthesis, characterization
and in vitro antibacterial assessments of a novel modified
poly[maleic anhydride-alt-acrylic acid]/acriflavine conjugate,
Polym. Bull., 71 (2014) 2903–2921.
- M. Kawai, J. Yamagishi, Mechanisms of action of acriflavine:
electron microscopic study of cell wall changes induced in
Staphylococcus aureus by acriflavine, Microbiol. Immunol., 53
(2009) 481–486.
- W. Xie, G.M. Geise, B.D. Freemana, H.-S. Lee, G. Byun,
J.E. McGrath, Polyamide interfacial composite membranes
prepared from m-phenylene diamine, trimesoyl chloride and
a new disulfonated diamine, J. Membr. Sci., 403–404 (2012)
152–161.
- P. Moradihamedani, N.A. Ibrahim, W.M.Z.W. Yunus,
N.A. Yusof, Study of morphology and gas separation properties
of polysulfone/titanium dioxide mixed matrix membranes,
Polym. Eng. Sci., 55 (2015) 367–374.
- H.A. Shawky, S.-R. Chae, S. Lin, M.R. Wiesner, Synthesis and
characterization of a carbon nanotube/polymer nanocomposite
membrane for water treatment, Desalination, 272 (2011) 46–50.
- R.S. Hebbar, A.M. Isloor, B. Prabhu, I.A.M. Asiri, A.F. Ismail,
Removal of metal ions and humic acids through polyetherimide
membrane with grafted bentonite clay, Sci. Rep., 8 (2018) 1–15.
- B. Khorshidi, I. Biswas, T. Ghosh, T. Thundat, M. Sadrzadeh,
Robust fabrication of thin film polyamide-TiO2 nanocomposite
membranes with enhanced thermal stability and anti-biofouling
propensity, Sci. Rep., 8 (2018) 1–10.
- J. Wei, C. Qiu, C.Y. Tang, R. Wang, A.G. Fane, Synthesis and
characterization of flat-sheet thin film composite forward
osmosis membranes, J. Membr. Sci., 372 (2011) 292–302.
- W.J. Lau, A.F. Ismail, P.S. Goh, N. Hilal, B.S. Ooi, Characterization
methods of thin film composite nanofiltration membranes, Sep.
Purif. Rev., 44 (2015) 135–156.
- B.S. Lalia, V. Kochkodan, R. Hashaikeh, N. Hilal, A review on
membrane fabrication: structure, properties and performance
relationship, Desalination, 326 (2013) 77–95.
- M. Ghanbari, D. Emadzadeh, W.J. Lau, T. Matsuura,
A.F. Ismail, Synthesis and characterization of novel thin film
nanocomposite reverse osmosis membranes with improved
organic fouling properties for water desalination, RSC Adv., 5
(2015) 21268–21276.
- R.S. Hebbar, A.M. Isloor, A. Ismail, S.J. Shilton, A. Obaid,
H.-K. Fun, Probing the morphology and anti-organic fouling
behaviour of a polyetherimide membrane modified with
hydrophilic organic acids as additives, New J. Chem., 39 (2015)
6141–6150.
- M. Peyravi, M. Jahanshahi, A. Rahimpour, A. Javadi, S. Hajavi,
Novel thin film nanocomposite membranes incorporated
with functionalized TiO2 nanoparticles for organic solvent
nanofiltration, Chem. Eng. J., 241 (2014) 155–166.
- H.M. Krieg, S.J. Modise, K. Keizer, H.W.J.P. Neomagus, Salt
rejection in nanofiltration for single and binary salt mixtures in
view of sulphate removal, Desalination, 171 (2004) 205–215.