References
- W. Tang, Y. Pei, H. Zheng, Y. Zhao, L. Shu, H. Zhang, Twenty
years of China’s water pollution control: experiences and
challenges, Chemosphere, 295 (2022) 133875, doi: 10.1016/j.chemosphere.2022.133875.
- M. Mergili, J.P. Müller, J.F. Schneider, Spatio-temporal
development of high-mountain lakes in the headwaters of
the Amu Darya River (Central Asia), Global Planet. Change,
107 (2013) 15–17.
- S. Hube, M. Eskafi, K.F. Hrafnkelsdóttir, B. Bjarnadóttir,
M.Á. Bjarnadóttir, S. Axelsdóttir, B. Wu, Direct membrane
filtration for wastewater treatment and resource recovery:
a review, Sci. Total Environ., 710 (2020) 7–10.
- Z. Chen, Q. Wu, G. Wu, H.Y. Hu, Centralized water reuse system
with multiple applications in urban areas: lessons from China’s
experience, Resour. Conserv. Recycl., 117 (2017) 125–136.
- S. Bauer, H.J. Linke, M. Wagner, S. Bauer, H.J. Linke, M. Wagner,
Combining industrial and urban water-reuse concepts for
increasing the water resources in water-scarce regions, Water
Environ. Res., 92 (2020) 1027–1028.
- S.B. Teli, S. Molina, E.G. Calvo, A.E. Lozano, J. de Abajo,
Preparation, characterization and antifouling property of
polyethersulfone-PANI/PMA ultrafiltration membranes,
Desalination, 299 (2012) 113–114.
- S.G. Ding, X.Q. Cheng, Z.X. Jiang, Y.P. Bai, L. Shao, Pore
morphology control and hydrophilicity of polyacrylonitrile
ultrafiltration membranes, J. Appl. Polym. Sci., 132 (2015) 11–12.
- B. Said, S. M’rabet, R. Hsissou, A. El Harfi, Synthesis of new lowcost
organic ultrafiltration membrane made from polysulfone/
polyetherimide blends and its application for soluble azoic
dyes removal, J. Mater. Res. Technol., 9 (2020) 4763–4772.
- B. Saini, M.K. Sinha, Effect of hydrophilic poly(ethylene glycol)
methyl ether additive on the structure, morphology, and
performance of polysulfone flat sheet ultrafiltration membrane,
J. Appl. Polym. Sci., 136 (2019) 12–14.
- M.R. Raviya, M.V. Gauswami, H.D. Raval, A novel polysulfone/iron-nickel oxide nanocomposite membrane for removal of
heavy metal and protein from water, Water Environ. Res.,
92 (2020) 1990–1991.
- S.G. Ouyang, J.Y. Yao, G.H.W. Zhu, Z.Y. Liu, C. Feng, G. Wang,
Hydrophilic modification of a poly(ether sulfone) flat-sheet
ultrafiltration membrane applied to coking sewage, J. Appl.
Polym. Sci., 134 (2017) 3–6.
- S. Zhao, Z. Wang, J. Wang, S. Wang, Poly(ether sulfone)/polyaniline nanocomposite membranes: effect of nanofiber size
on membrane morphology and properties, Ind. Eng. Chem.
Res., 53 (2014) 11468–11477.
- S.S. Hosseini, T.S. Fakharian, M. Alaei Shahmirzadi, T. Tavangar,
Fabrication, characterization, and performance evaluation of
polyethersulfone/TiO2 nanocomposite ultrafiltration membranes
for produced water treatment, Polym. Adv. Technol.,
29 (2018) 2619–2620.
- W. Zhao, L. Liu, L. Wang, N. Li, Functionalization of
polyacrylonitrile with tetrazole groups for ultrafiltration
membranes, RSC Adv., 6 (2016) 72133–72134.
- J. Jegal, K.H. Lee, Chitosan membranes crosslinked with
sulfosuccinic acid for the pervaporation separation of water/alcohol mixtures, J. Appl. Polym. Sci., 71 (1999) 671–675.
- B. Jung, J.K. Yoon, B. Kim, H.W. Rhee, Effect of molecular weight
of polymeric additives on formation, permeation properties
and hypochlorite treatment of asymmetric polyacrylonitrile
membranes, J. Membr. Sci., 243 (2004) 45–46.
- X. Yang, S.R. Liew, R. Bai, Simultaneous alkaline hydrolysis
and non-solvent induced phase separation method for
polyacrylonitrile (PAN) membrane with highly hydrophilic
and enhanced anti-fouling performance, J. Membr. Sci.,
635 (2021) 119499, doi: 10.1016/j.memsci.2021.119499.
- K.I. Moideen, A.M. Isloor, A.F. Ismail, A. Obaid, H.K. Fun,
Fabrication and characterization of new PSF/PPSU UF blend
membrane for heavy metal rejection, Desal. Water Treat.,
57 (2016) 19810–19819.
- J. Zhang, Y.N. Xu, S. Chen, J. Li, W. Han, X. Sun, L. Wang,
Enhanced antifouling and antibacterial properties of poly(ether
sulfone) membrane modified through blending with
sulfonated poly(aryl ether sulfone) and copper nanoparticles,
Appl. Surf. Sci., 434 (2018) 806–815.
- Y. Qin, H. Yang, Z. Xu, F. Li, Surface modification of
polyacrylonitrile membrane by chemical reaction and
physical coating: comparison between static and pore-flowing
procedures, ACS Omega, 3 (2018) 4231–4241.
- X. Zhang, C Xiao, X. Hu, Preparation and properties of
polysulfone/polyacrylonitrile blend membrane and its
modification with hydrolysis, Desal. Water Treat., 511 (2013)
3979–3987.
- C.C. Chang, K.G. Beltsios, J.D. Lin, L.P. Cheng, Nano-titania/polyethersulfone composite ultrafiltration membranes with
optimized antifouling capacity, J. Taiwan Inst. Chem. Eng.,
113 (2020) 325–327.
- S.N.W. Ikhsan, N. Yusof, F. Aziz, N. Misdan, A.F. Ismail,
W.J. Lau, N.H.H. Hairom, Efficient separation of oily wastewater
using polyethersulfone mixed matrix membrane incorporated
with halloysite nanotube-hydrous ferric oxide nanoparticle,
Sep. Purif. Technol., 199 (2018) 161–165.
- S.S. Madaeni, N. Ghaemi, Characterization of self-cleaning RO
membranes coated with TiO2 particles under UV irradiation,
J. Membr. Sci., 303 (2007) 221–233.
- K. Feng, L. Hou, B. Tang, P. Wu, A self-protected self-cleaning
ultrafiltration membrane by using polydopamine as a freeradical
scavenger, J. Membr. Sci., 490 (2015) 120–128.
- H. Song, J. Shao, Y. He, B. Liu, X. Zhong, Natural organic
matter removal and flux decline with PEG-TiO2-doped
PVDF membranes by integration of ultrafiltration with
photocatalysis, J. Membr. Sci., 405 (2012) 48–56.
- J. Wang, Z. Yue, J.S. Ince, J. Economy, Preparation of
nanofiltration membranes from polyacrylonitrile ultrafiltration
membranes, J. Membr. Sci., 286 (2006) 333–336.
- G. Zhang, H. Meng, S. Ji, Hydrolysis differences of
polyacrylonitrile support membrane and its influences on
polyacrylonitrile-based membrane performance, Desalination,
242 (2009) 313–324.
- C.L. Lai, W.C. Chao, W.S. Hung, Q. An, M. De Guzman, C.C. Hu,
K.R. Lee, Physicochemical effects of hydrolyzed asymmetric
polyacrylonitrile membrane microstructure on dehydrating
butanol, J. Membr. Sci., 490 (2015) 275–281.
- Y.H. Choi, C.M. Choi, D.H. Choi, Y. Paik, B.J. Park,
Y.K. Joo, N.J. Kim, Time dependent solid-state 13C NMR
study on alkaline hydrolysis of polyacrylonitrile hollow fiber
ultrafiltration membranes, J. Membr. Sci., 371 (2011) 84–89.
- R. Cheraghali, Z. Maghsoud, Enhanced modification technique
for polyacrylonitrile UF membranes by direct hydrolysis in
the immersion bath, J. Appl. Polym. Sci., 137 (2020) 48583,
doi: 10.1002/app.48583.
- J. Coca, Proceedings of the NATO Advanced Training Course
on Water Purification and Management in Mediterranean
Countries, Springer, Netherlands, Oviedo, 2008.
- J. Kong, K. Li, Oil removal from oil-in-water emulsions using
PVDF membranes, Sep. Purif. Technol., 16 (1999) 83–93.
- B.T. Konvensional, A review of oilfield wastewater treatment
using membrane filtration over conventional technology,
Malays. J. Anal., 21 (2017) 643–658.
- D.J. Miller, S. Kasemset, D.R. Paul, B.D. Freeman, Comparison
of membrane fouling at constant flux and constant transmembrane
pressure conditions, J. Membr. Sci., 454 (2014) 505–515.
- T. Zhang, F.X. Kong, X.C. Li, Q. Liu, J.F. Chen, C.M. Guo,
Comparison of the performance of prepared pristine and
TiO2 coated UF/NF membranes for two types of oil-in-water
emulsion separation, Chemosphere, 244 (2020) 125386,
doi: 10.1016/j.chemosphere.2019.125386.
- A. Rahimpour, S.S. Madaeni, A.H. Taheri, Y. Mansourpanah,
Coupling TiO2 nanoparticles with UV irradiation for
modification of polyethersulfone ultrafiltration membranes,
J. Membr. Sci., 313 (2008) 158–169.
- S.Y. Jin, M.H. Kim, Y.G. Jeong, Y.I. Yoon, W.H. Park, Effect of
alkaline hydrolysis on cyclization reaction of PAN nanofibers,
Mater. Des., 124 (2017) 69–77.
- C. Han, Q. Liu, Q. Xia, Y. Wang, Facilely cyclization-modified
PAN nanofiber substrate of thin film composite membrane for
ultrafast polar solvent separation, J. Membr. Sci., 641 (2022)
119911, doi: 10.1016/j.memsci.2021.119911.
- T.H. Elagib, E.A. Hassan, B. Liu, K. Han, M. Yu, Evaluation of
composite PAN fibers incorporated with carbon nanotubes and
titania and their performance during the microwave-induced
pre-oxidation, Carbon Lett., 30 (2020) 235–245.
- R. Zhou, D. Rana, T. Matsuura, C.Q. Lan, Effects of multi-walled
carbon nanotubes (MWCNTs) and integrated MWCNTs/SiO2
nano-additives on PVDF polymeric membranes for vacuum
membrane distillation, Sep. Purif. Technol., 217 (2019) 154–163.
- V. Murugesan, D. Rana, T. Matsuura, C.Q. Lan, Optimization of
nanocomposite membrane for vacuum membrane distillation
(VMD) using static and continuous flow cells: effect of
nanoparticles and film thickness, Sep. Purif. Technol., 241 (2020)
9–10.
- Z. Li, D. Rana, T. Matsuura, C.Q. Lan, The performance
of polyvinylidene fluoride-polytetrafluoroethylene nanocomposite
distillation membranes: an experimental and
numerical study, Sep. Purif. Technol., 226 (2019) 192–208.
- S.S. Hosseini, S.T. Fakharian, M.A.A. Shahmirzadi, T. Tavangar,
Fabrication, characterization, and performance evaluation
of polyethersulfone/TiO2 nanocomposite ultrafiltration
membranes for produced water treatment, Polym. Adv.
Technol., 29 (2018) 2619–2631.
- Y. Li, X. Yang, Y. Wen, Y. Zhao, L. Yan, G. Han, L. Shao, Progress
reports of mineralized membranes: engineering strategies and
multifunctional applications, Sep. Purif. Technol., 304 (2023)
122379, doi: 10.1016/j.seppur.2022.122379.
- L. Yan, X. Yang, H. Zeng, Y. Zhao, Y. Li, X. He, L. Shao,
Nanocomposite hydrogel engineered hierarchical membranes
for efficient oil/water separation and heavy metal removal,
J. Membr. Sci., 668 (2023) 8–10.
- Y. Wen, X. Yang, Y. Li, L. Yan, Y. Zhao, L. Shao, Progress reports
of metal-phenolic network engineered membranes for water
treatment, Sep. Purif. Technol., 320 (2023) 124225, doi: 10.1016/j.seppur.2023.124225.
- V.A. Pham, J.P. Santerre, T. Matsuura, R.M. Narbaitz, Application
of surface modifying macromolecules in polyethersulfone
membranes: influence on PES surface chemistry and physical
properties, J. Appl. Polym. Sci., 73 (1999) 1363–1378.