References
- Z.-Q. Yan, L.-M. Zeng, Q. Li, T.-Y. Liu, H. Matsuyama,
X.-L. Wang, Selective separation of chloride and sulfate by
nanofiltration for high saline wastewater recycling, Sep. Purif.
Technol., 166 (2016) 135–141.
- Z. Chen, J. Luo, Y. Wang, W. Cao, B. Qi, Y. Wan, A novel
membrane-based integrated process for fractionation and
reclamation of dairy wastewater, Chem. Eng. J., 313 (2017)
1061–1070.
- D.L. Oatley-Radcliffe, M. Walters, T.J. Ainscough, P.M. Williams,
A.W. Mohammad, N. Hilal, Nanofiltration membranes and
processes: a review of research trends over the past decade,
J. Water Process Eng., 19 (2017) 164–171.
- Cs.Zs. Torma, E. Cséfalvay, Nanofiltration: a final step in
industrial process water treatment, Period. Polytech. Chem.
Eng., 62 (2018) 68–75.
- E. Bet-Moushoul, Y. Mansourpanah, K. Farhadi, M. Tabatabaei,
TiO2 nanocomposite based polymeric membranes: a review on
performance improvement for various applications in chemical
engineering processes, Chem. Eng. J., 283 (2016) 29–46.
- S.T. Muntha, A. Kausar, M. Siddiq, Advances in polymeric
nanofiltration membrane: a review, Polymer Plast. Technol.
Eng., 56 (2017) 841–856.
- A.W. Mohammad, Y.H. Teow, W.L. Ang, Y.T. Chung, D.L. Oatley-
Radcliffe, N. Hilal, Nanofiltration membranes review: recent
advances and future prospects, Desalination, 356 (2015) 226–254.
- Z. Chen, J. Luo, X. Hang, Y. Wan, Physicochemical
characterization of tight nanofiltration membranes for dairy
wastewater treatment, J. Membr. Sci., 547 (2018) 51–63.
- J. Lin, C.Y. Tang, C. Huang, Y.P. Tang, W. Ye, J. Li, J. Shen,
R. Van den Broeck, J. Van Impe, A. Volodin, C. Van Haesendonck,
A. Sotto, P. Luis, B. Van der Bruggen, A comprehensive
physico-chemical characterization of superhydrophilic loose
nanofiltration membranes, J. Membr. Sci., 501 (2016) 1–14.
- T.-Y. Liu, L.-X. Bian, H.-G. Yuan, B. Pang, Y.-K. Lin, Y. Tong,
B. Van der Bruggen, X.-L. Wang, Fabrication of a high-flux
thin film composite hollow fiber nanofiltration membrane for
wastewater treatment, J. Membr. Sci., 478 (2015) 25–36.
- A.I. Schäfer, I. Akanyeti, A.J.C. Semião, Micropollutant sorption
to membrane polymers: a review of mechanisms for estrogens,
Adv. Colloid Interface Sci., 164 (2011) 100–117.
- A.J.C. Semião, A.I. Schäfer, Removal of adsorbing estrogenic
micropollutants by nanofiltration membranes. Part A –
Experimental evidence, J. Membr. Sci., 431 (2013) 244–256.
- 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.
- J. Luo, Y. Wan, Effects of pH and salt on nanofiltration – a
critical review, J. Membr. Sci., 438 (2013) 18–28.
- D.J. Johnson, D.L. Oatley-Radcliffe, N. Hilal, State of the art
review on membrane surface characterisation: visualisation,
verification and quantification of membrane properties,
Desalination, 434 (2018) 12–36.
- D. Johnson, S. Al Malek, B. Al-Rashdi, N. Hilal, Atomic force
microscopy of nanofiltration membranes: effect of imaging
mode and environment, J. Membr. Sci., 389 (2012) 486–498.
- A. Matin, H. Shafi, Z. Khan, M. Khaled, R. Yang, K. Gleason,
F. Rehman, Surface modification of seawater desalination
reverse osmosis membranes: characterization studies &
performance evaluation, Desalination, 343 (2014) 128–139.
- V. Kochkodan, Y. Manawi, D. Johnson, A. Kayvani Fard,
M. Atieh, Surface modification of polyamide membranes using
the layer-by-layer technique: characterization and antifouling
potential, Desal. Wat. Treat., 69 (2017) 84–92.
- E. Guillen-Burrieza, R. Thomas, B. Mansoor, D. Johnson,
N. Hilal, H. Arafat, Effect of dry-out on the fouling of PVDF
and PTFE membranes under conditions simulating intermittent
seawater membrane distillation (SWMD), J. Membr. Sci., 438
(2013) 126–139.
- N. Park, B. Kwon, I.S. Kim, J. Cho, Biofouling potential of
various NF membranes with respect to bacteria and their soluble
microbial products (SMP): characterizations, flux decline, and
transport parameters, J. Membr. Sci., 258 (2005) 43–54.
- D. Johnson, F. Galiano, S.A. Deowan, J. Hoinkis, A. Figoli,
N. Hilal, Adhesion forces between humic acid functionalized
colloidal probes and polymer membranes to assess fouling
potential, J. Membr. Sci., 484 (2015) 35–46.
- M. Khayet, C. Feng, K. Khulbe, T. Matsuura, Preparation
and characterization of polyvinylidene fluoride hollow fiber
membranes for ultrafiltration, Polymer, 43 (2002) 3879–3890.
- S. Kim, P.A. Thiessen, E.E. Bolton, J. Chen, G. Fu, A. Gindulyte,
L. Han, J. He, S. He, B.A. Shoemaker, J. Wang, B. Yu, J. Zhang,
S.H. Bryant, PubChem substance and compound databases,
Nucleic Acids Res., 4 (2016) D1202–D1213.
- J. Bohdziewicz, E. Kudlek, M. Dudziak, Influence of the
catalyst type (TiO2 and ZnO) on the photocatalytic oxidation of
pharmaceuticals in the aquatic environment, Desal. Wat. Treat.,
57 (2016) 1552–1563.
- N. Hilal, A.F. Ismail, T. Matsuura, D. Oatley-Radcliffe,
Membrane Characterization, Elsevier B.V., Amsterdam, 2017.
- M.R. Teixeira, M.J. Rosa, M. Nyström, The role of membrane charge
on nanofiltration performance, J. Membr. Sci., 265 (2005) 160–166.
- A.E. Childress, M. Elimelech, Effect of solution chemistry on the
surface charge of polymeric reverse osmosis and nanofiltration
membranes, J. Membr. Sci., 119 (1996) 253–268.
- M. Hirose, H. Ito, Y. Kamiyama, Effect of skin layer surface
structures on the flux behaviour of RO membranes, J. Membr.
Sci., 121 (1996) 209–215.
- A.L. Carvalho, F. Maugeri, V. Silva, A. Hernández, L. Palacio,
P. Pradanos, AFM analysis of the surface of nanoporous
membranes: application to the nanofiltration of potassium
clavulanate, J. Mater. Sci., 46 (2011) 3356–3369.
- P. Izák, M.H. Godinho, P. Brogueira, J.L. Figueirinhas,
J.G. Crespo, 3D topography design of membranes for enhanced
mass transport, J. Membr. Sci., 321 (2008) 337–343.
- D. Dolar, A. Vuković, D. Asperger, K. Kosutić, Effect of
water matrices on removal of veterinary pharmaceuticals by
nanofiltration and reverse osmosis membranes, J. Environ. Sci.
(China), 23 (2011) 1299–1307.