References
- A. Schäfer, I. Akanyeti, A. Semiӑo, Micropollutant sorption to
membrane polymers: a review of mechanisms for estrogens,
Adv. Colloid Interface Sci., 164 (2011) 100–117.
- M. Dudziak, Retention of mycoestrogens in nanofiltration.
Impact of feed water chemistry, membrane properties and
operating process conditions, Environ. Prot. Eng., 38 (2012)
5–17.
- M. Dudziak, E. Burdzik-Niemiec, Ultrafiltration in the treatment
of 17 beta-estradiol and bisphenol A-containing wastewaters
through modified membranes, Chem. Rev., 2 (2017) 448–452.
- K. Niedergall, M. Bach, T. Hirth, G. Tovar, T. Schiestel, Removal
of micropollutants from wastewater by nanocomposite
membrane adsorbers, Sep. Purif. Technol., 131 (2014) 60–68.
- M.G. Moustakes, F.K. Katsaros, A.G. Kontos, G.Em.
Romanos, D.D. Dionysiou, P. Falaras, Visible light active
TiO2 photocatalytic filtration membranes with improved
permeability and low energy consumption, Catal. Today, 224
(2014) 56–59.
- G. Kamińska, J. Bohdziewicz, L. Palacio, A. Hernández, P.
Prádanos, Polyacrylonitrile membranes modified with carbon
nanotubes: characterization and micropollutants removal
analysis, Desal. Wat. Treat., 57 (2016) 1344–1353.
- X. Jin, J. Hu, M. Tint, S. Ong, Y. Biryulin, G. Polotskaya,
Estrogenic compounds removal by fullerene-containing
membranes, Desalination, 214 (2007) 83–90.
- N. Ghaemi, S. Madaeni, A. Alizadeh, H. Rajabi, P. Daraei,
Preparation and characterization and performance of
polyethersulfone/organically modified montmorillonite
nanocomposite membranes in removal of pesticides, J. Membr.
Sci., 382 (2011) 135–147.
- A. Karkooti, A.Z. Yazdi, P. Chen, McGregor, N. Nazemifard,
M. Sadzadeh, Development of advanced nanocomposite
membranes using graphene nanoribbons and nanosheets for
water treatment, J. Membr. Sci., 560 (2018) 97–107.
- H. You, X. Li, Y. Yang, B. Wang, Z. Li, X. Wang, M. Zhu, B.
S. Hsiao, High flux low pressure thin film, anocomposite
ultrafiltration membranes based on nanofibrous substrates,
Sep. Purif. Technol., 108 (2013) 143–151.
- P. Daraei, S. Madaeni, N. Ghaemi, M. Khadivi, B. Astinchap, R.
Moradian, Enhancing antifouling capability of PES membrane
via mixing with various types of polymer modified multiwalled
carbon nanotube, J. Membr. Sci., 444 (2013) 184–191.
- D. Hu, Z.I. Xu, Y.M. Wei, A high performance siliciafluoropolyamide
nanofiltration membrane prepared by
interfacial polymerization, Desalination, 325 (2013) 31–38.
- H. Huang, X. Qu, H. Dong, L. Zhang, H. Chen, Role of NaA
zeolites in the interfacial polymerization process towards a
polyamide nanocomposite reverse osmoisi membrane, RSC
Adv., 3 (2013) 8203–8207.
- T. Ormanci-Acar, F. Celebi, B. Keskin, O. Mutlu-Salmanli,
M. Agtas, T. Turken, A. Tufani, D.Y. Imer, G.O. Ince, T.U.
Demir, Y.Z. Menceloglu, S. Unal, I. Koyuncu, Fabrication and
characterization of temperature and Ph resistant thin film
anocomposite membrnaes embedded with halloysite nanotubes
for dye rejection, Desalination, 429 (2018) 20–32.
- N.H. Jalani, K. Dunn, R. Datta, Synthesis and characterization
of Nafion-MO2 (M=Zr, Si, Ti) nanocomposite membranes for
higher temperature PES fuel cells, Electrochim. Acta, 51 (2005)
553–560.
- C. Jinag, S. Markutsya, Y. Pikus, V.V. Tsukruk, Freely suspended
nanocomposite membranes as highly sensitive sensors, Nat.
Mater., 3 (2004) 721–728.
- J. Lu, L.T. Drzal, R.M. Worden, I. Lee, Simple fabrication of a
highly sensitive glucose biosensor using enzymes immobilized
in exfoliated graphite nanoplatelets nafion membrane, Chem.
Mater., 19 (2007) 6240–6246.
- Y.C. Wang, S.C. Fan, K.R. Lee, C.L. Li, S.H. Huang, H.A. Tsai,
J.Y. Lai, Polyamide SDS-clay hybrid nanocomposite membrane
application to water-ethanol mixture pervaporation separation,
J. Membr. Sci., 239 (2004) 219–226.
- F. Peng, F. Pan, H. Sun, L. Lu, Z. Jiang, Novel nanocomposite
pervaporation membranes composed of poly(vinyl alcohol)
and chitosan-wrapped carbon nanotube, J. Membr. Sci., 300
(2007) 13–19.
- C.F. De Lannoy, D. Jassby, K. Gloe, A.D. Gordn, M.R. Wiesner,
Aquatic biofouling prevention by electrically charged
nanocomposite polymer thin film membranes, Environ. Sci.
Technol., 108 (2013) 2760–2768.
- W.F. Chan, H.Y. Chen, A. Surapathi, M.G. Taylor, X. Shao,
E. Marand, J.K. Johnson, Zwitterion functionalized carbon
nanotube/polyamide nanocomposite membranes for water
desalination, ACS Nano., 7 (2013) 5308–5319.
- E.S. Kim, Y. Liu, M. Gamal El-Din, An in-situ integrated system
of carbon nanotubes nanocomposite membrane for oil sands
process-affected water treatment, J. Membr. Sci., 429 (2013)
418–427.
- R. Bi, Q. Zhnag, Y. Su, Z. Jiang, Thin film nanocomposite
membranes incorporated with graphene quantum dots for high
flux and anifouling property, J. Membr. Sci., 553 (2018) 17–24.
- H. Zhao, S. Qiu, L. Wu, L. Zhang, H Chen, C. Gao, Improving
the performance of polyamide reverse osmosis membrane by
incorporation of modified multi-walled carbon nanotubes,
J. Membr. Sci., 450 (2014) 249–256.
- G. Kamińska, J. Bohdziewicz, J.I. Calvo, P. Prádanos, L.
Palacio, A. Hernández, Fabrication and characterization of
polyethersulfone nanocomposite membranes for the removal
of endocrine disrupting micropollutants from wastewater.
Mechanisms and performance, J. Membr. Sci., 493 (2015) 66–79.
- M.R. Mehrnia, Y.M. Mojtahedi, M. Homayoonfal, What is the
concentration threshold of nanocparticles within the membrane
structure? A case study of Al2O3/PSf nanocomposite membrane,
Desalination, 372 (2015) 75–88.
- C. Benally, M. Li, M. Gamal El-Din, The effect of carboxyl
multiwalled carbon nanotubes content on the structure and
performance of polysulfone membranes for oil sands processaffected
water treatment, Sep. Purif. Technol., 199 (2018)
170–181.