References
- A. Maher, M. Sadeghi, A. Moheb, Heavy metal elimination from
drinking water using nanofiltration membrane technology and
process optimization using response surface methodology,
Desalination, 352 (2014) 166–173.
- Y.-l. Liu, X.-m. Wang, H.-w. Yang, Y.F. Xie, X. Huang,
Preparation of nanofiltration membranes for high rejection of
organic micropollutants and low rejection of divalent cations,
J. Membr. Sci., 572 (2019) 152–160.
- K. Sutherland, Drinking and other pure water production:
filtration and sedimentation in clean water production, Filtr.
Sep., 51 (2014) 24–27.
- N. Hilal, H. Al-Zoubi, N.A. Darwish, A.W. Mohamma, M. Abu
Arabi, A comprehensive review of nanofiltration membranes:
treatment, pretreatment, modelling, and atomic force microscopy,
Desalination, 170 (2004) 281–308.
- Y. Lv, H.-C. Yang, H.-Q. Liang, L.-S. Wan, Z.-K. Xu,
Nanofiltration membranes via co-deposition of polydopamine/
polyethylenimine followed by cross-linking, J. Membr. Sci.,
476 (2015) 50–58.
- X. Wei, X. Kong, S. Wang, H. Xiang, J. Wang, J. Chen, Removal
of heavy metals from electroplating wastewater by thin-film
composite nanofiltration hollow-fiber membranes, Ind. Eng.
Chem. Res., 52 (2013) 17583–17590.
- S. Wang, Y. Zhou, C. Gao, Novel high boron removal polyamide
reverse osmosis membranes, J. Membr. Sci., 554 (2018) 244–252.
- A. Zhang, R. Ma, Y. Xie, B. Xu, S. Xia, N. Gao, Preparation
polyamide nanofiltration membrane by interfacial polymerization,
Desal. Water. Treat., 37 (2012) 238–243.
- P. Mou, S.D. Jons, Chemistry and fabrication of polymeric
nanofiltration membranes: a review, Polymer, 103 (2016)
417–456.
- S. Benedetti, E.S. Prudêncio, J.M.G. Mandarino, K. Rezzadori,
J.C.C. Petrus, Concentration of soybean isoflavones by
nanofiltration and the effects of thermal treatments on the
concentrate, Food. Res. Int.,50 (2013) 625–632.
- N. Ghaemi, P. Daraei, F.S. Akhlaghi, Polyethersulfone
nanofiltration membrane embedded by chitosan nanoparticles:
fabrication, characterization and performance in nitrate
removal from water, Carbohydr. Polym., 191 (2018) 142–151.
- P.S. Zhong, N. Widjojo, T.-S. Chung, M. Weber, C. Maletzko,
Positively charged nanofiltration (NF) membranes via UV
grafting on sulfonated polyphenylenesulfone (sPPSU) for
effective removal of textile dyes from wastewater, J. Membr.
Sci., 417 (2012) 52–60.
- A.J. Hargreaves, P. Vale, J. Whelan, L. Alibardi, C. Constantino,
G. Dotro, E. Cartmell, P. Campo, Impacts of coagulationflocculation
treatment on the size distribution and bioavailability
of trace metals (Cu, Pb, Ni, Zn) in municipal
wastewater, Water Res., 128 (2018) 120–128.
- A.Y. Zahrim, C. Tizaoui, N. Hilal, Coagulation with polymers
for nanofiltration pre-treatment of highly concentrated dyes:
a review, Desalination, 266 (2011) 1–16.
- F. Salehi, Current and future applications for nanofiltration
technology in the food processing, Food Bioprod. Process.,
92 (2014) 161–177.
- J. Zhu, S. Yuan, A. Uliana, J. Hou, J. Li, X. Li, M. Tian, Y. Chen,
A. Volodin, B.V. der 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.
- A. Cihanoğlu, S. Alsoy Altinkaya, A facile approach for
preparation of positively charged nanofiltration membranes
by in-situ crosslinking between polyamide-imide and polyethylenimine,
Sep. Purif. Technol., 207 (2018) 353–362.
- J.M. Gohil, P. Ray, A review on semi-aromatic polyamide TFC
membranes prepared by interfacial polymerization: potential
for water treatment and desalination, Sep. Purif. Technol.,
181 (2017) 159–182.
- M. Fathizadeh, A. Aroujalian, A. Raisi, Effect of lag time in
interfacial polymerization on polyamide composite membrane
with different hydrophilic sub layers, Desalination, 284 (2012)
32–41.
- H. Karimi, A. Rahimpour, M.R. Shirzad Kebria, Pesticides
removal from water using modified piperazine-based
nanofiltration (NF) membranes, Desal. Water. Treat., 57 (2016)
24844–24854.
- C. Su, C. Lu, H. Cao, K. Tang, J. Chang, F. Duan, X. Ma, Y. Li,
Fabrication and post-treatment of nanofibers-covered hollow
fiber membranes for membrane distillation, J. Membr. Sci.,
562 (2018) 38–46.
- A.C. Sun, W. Kosar, Y. Zhang, X. Feng, Vacuum membrane
distillation for desalination of water using hollow fiber
membranes, J. Membr. Sci., 455 (2014) 131–142.
- Y. Zhang, J. Wang, F. Gao, H. Tao, Y. Chen, H. Zhang,
Impact of sodium hypochlorite (NaClO) on polysulfone
(PSF) ultrafiltration membranes: the evolution of membrane
performance and fouling behavior, Sep. Purif. Technol.,
175 (2017) 238–247.
- X. Wei, X. Kong, C. Sun, J. Chen, Characterization and
application of a thin-film composite nanofiltration hollow fiber
membrane for dye desalination and concentration, Chem. Eng.
J., 223 (2013) 172–182.
- X. Li, C. Zhang, S. Zhang, J. Li, B. He, Z. Cui, Preparation and
characterization of positively charged polyamide composite
nanofiltration hollow fiber membrane for lithium and magnesium
separation, Desalination, 369 (2015) 26–36.
- B.-W. Zhou, H.-Z. Zhang, Z.-L. Xu, Y.-J. Tang, Interfacial
polymerization on PES hollow fiber membranes using mixed
diamines for nanofiltration removal of salts containing
oxyanions and ferric ions, Desalination, 394 (2016) 176–184.
- G.M. Geise, H.B. Park, A.C. Sagle, B.D. Freeman, J.E. McGrath,
Water permeability and water/salt selectivity tradeoff in
polymers for desalination, J. Membr. Sci., 369 (2011) 130–138.
- O. Labban, C. Liu, T.H. Chong, J.H. Lienhard, Relating
transport modeling to nanofiltration membrane fabrication:
Navigating the permeability-selectivity trade-off in desalination
pretreatment, J. Membr. Sci., 554 (2018) 26–38.
- A. Bera, J.S. Trivedi, S.B. Kumar, A.K.S. Chandel, S. Haldar,
S.K. Jewrajka, Anti-organic fouling and anti-biofouling
poly(piperazineamide) thin film nanocomposite membranes
for low pressure removal of heavy metal ions, J. Hazard. Mater.,
343 (2018) 86–97.
- R. Krachler, R.F. Krachler, G. Wallner, P. Steier, Y. El Abiead,
H. Wiesinger, F. Jirsa, B.K. Keppler, Sphagnum-dominated
bog systems are highly effective yet variable sources of bioavailable
iron to marine waters, Sci. Total Environ., 556 (2016)
53–62.
- W.-P. Zhu, S.-P. Sun, J. Gao, F.-J. Fu, T.-S. Chung, Dual-layer
polybenzimidazole/polyethersulfone (PBI/PES) nanofiltration
(NF) hollow fiber membranes for heavy metals removal from
wastewater, J. Membr. Sci., 456 (2014) 117–127.
- T. Yang, C.F. Wan, J.Y. Xiong, T.-S. Chung, Pre-treatment
of wastewater retentate to mitigate fouling on the pressure
retarded osmosis (PRO) process, Sep. Purif. Technol., 215 (2019)
390–397.
- Y. Zhang, C. Xiao, E. Liu, Q. Du, X. Wang, H. Yu, Investigations
on the structures and performances of a polypiperazine amide/polysulfone composite membrane, Desalination, 191 (2006)
291–295.
- B.A.M. Al-Rashdi, D.J. Johnson, N. Hilal, Removal of heavy
metal ions by nanofiltration, Desalination, 315 (2013) 2–17.
- S. Ilyas, S.M. Abtahi, N. Akkilic, H.D.W. Roesink, W.M. de Vos,
Weak polyelectrolyte multilayers as tunable separation layers
for micro-pollutant removal by hollow fiber nanofiltration
membranes, J. Membr. Sci., 537 (2017) 220–228.
- K. Hendrix, K. Vanherck, I.F.J. Vankelecom, Optimization of
solvent resistant nanofiltration membranes prepared by the
in-situ diamine crosslinking method, J. Membr. Sci., 421–422
(2012) 15–24.
- W. Li, C. Shi, A. Zhou, X. He, Y. Sun, J. Zhang, A positively
charged composite nanofiltration membrane modified by
EDTA for LiCl/MgCl2 separation, Sep. Purif. Technol., 186 (2017)
233–242.
- H. Li, W. Shi, Y. Zhang, Q. Du, X. Qin, Y. Su, Improved
performance of poly(piperazine amide) composite nanofiltration
membranes by adding aluminum hydroxide nanospheres, Sep.
Purif. Technol., 166 (2016) 240–251.
- S.-M. Xue, Z.-L. Xu, Y.-J. Tang, C.-H. Ji, Polypiperazine-amide
nanofiltration membrane modified by different functionalized
multiwalled carbon nanotubes (MWCNTs), ACS Appl. Mater.
Interfaces, 8 (2016) 19135–19144.
- C.Y. Tang, Y.N. Kwon, J.O. Leckie, Effect of membrane chemistry
and coating layer on physiochemical properties of thin film
composite polyamide RO and NF membranes: I. FTIR and XPS
characterization of polyamide and coating layer chemistry,
Desalination, 242 (2009) 149–167.
- M. Fathizadeh, H.N. Tien, K. Khivantsev, Z. Song, F. Zhou,
M. Yu, Polyamide/nitrogen-doped graphene oxide quantum
dots (N-GOQD) thin film nanocomposite reverse osmosis
membranes for high flux desalination, Desalination, 451 (2019)
125–132.
- W.-P. Zhu, J. Gao, S.-P. Sun, S. Zhang, T.-S. Chung,
Poly(amidoamine) dendrimer (PAMAM) grafted on thin
film composite (TFC) nanofiltration (NF) hollow fiber
membranes
for heavy metal removal, J. Membr. Sci., 487 (2015)
117–126.
- L. Setiawan, L. Shi, R. Wang, Dual layer composite nanofiltration
hollow fiber membranes for low-pressure water softening,
Polymer, 55 (2014) 1367–1374.
- W. Fang, L. Shi, R. Wang, Mixed polyamide-based composite
nanofiltration hollow fiber membranes with improved lowpressure
water softening capability, J. Membr. Sci., 468 (2014)
52–61.
- Q. Shi, L. Ni, Y. Zhang, X. Feng, Q. Chang, J. Meng, Poly(pphenylene
terephthamide) embedded in a polysulfone as the
substrate for improving compaction resistance and adhesion of
a thin film composite polyamide membrane, J. Mater. Chem. A,
5 (2017) 13610–13624.
- K. Linde, A.-S. Jönsson, Nanofiltration of salt solutions and
landfill leachate, Desalination, 103 (1995) 223–232.
- S. Bouranene, P. Fievet, A. Szymczyk, M.E.-H. Samar,
A. Vidonne, Influence of operating conditions on the rejection
of cobalt and lead ions in aqueous solutions by a nanofiltration
polyamide membrane, J. Membr. Sci., 325 (2008) 150–157.
- C.-V. Gherasim, J. Cuhorka, P. Mikulášek, Analysis of lead (II)
retention from single salt and binary aqueous solutions by a
polyamide nanofiltration membrane: experimental results and
modelling, J. Membr. Sci., 436 (2013) 132–144.
- H. Wang, Q. Zhang, S. Zhang, Positively charged nanofiltration
membrane formed by interfacial polymerization of
3,3',5,5'-biphenyl tetraacyl chloride and piperazine on a
poly (acrylonitrile) (PAN) support, J. Membr. Sci., 378 (2011)
243–249.
- G. Yang, I. Neretnieks, M. Holmboe, Atomistic simulations
of cation hydration in sodium and calcium montmorillonite
nanopores, J. Chem. Phys., 147 (2017) 084705.
- Z. Wang, G. Liu, Z. Fan, X. Yang, J. Wang, S. Wang,
Experimental study on treatment of electroplating wastewater
by nanofiltration, J. Membr. Sci., 305 (2007) 185–195.
- L.B. Chaudhari, Z.V. Murthy, Separation of Cd and Ni from
multicomponent aqueous solutions by nanofiltration and
characterization of membrane using IT model, J. Hazard.
Mater., 180 (2010) 309–315.
- C.-V. Gherasim, P. Mikulášek, Influence of operating variables
on the removal of heavy metal ions from aqueous solutions
by nanofiltration, Desalination, 343 (2014) 67–74.
- Z. Murthy, L.B. Chaudhari, Separation of binary heavy metals
from aqueous solutions by nanofiltration and characterization
of the membrane using Spiegler–Kedem model, Chem. Eng. J.,
150 (2009) 181–187.
- B. Tansel, J. Sager, T. Rector, J. Garland, R.F. Strayer, L. Levine,
M. Roberts, M. Hummerick, J. Bauer, Significance of hydrated
radius and hydration shells on ionic permeability during
nanofiltration in dead end and cross flow modes, Sep. Purif.
Technol., 51 (2006) 40–47.
- V. Freger, T. Arnot, J. Howell, Separation of concentrated
organic/inorganic salt mixtures by nanofiltration, J. Membr.
Sci., 178 (2000) 185–193.
- J. Jin, D. Liu, D. Zhang, Y. Yin, X. Zhao, Y. Zhang, Taurine as an
additive for improving the fouling resistance of nanofiltration
composite membranes, J. Appl. Polym. Sci., 132 (2015), doi:
10.1002/app.41620.
- H. Li, W. Wang, Y. Zhang, Preparation and characterization
of high‐selectivity hollow fiber composite nanofiltration
membrane by two‐way coating technique, J. Appl. Polym. Sci.,
131 (2014), doi: 10.1002/app.41187.