References

  1. Z. Pan, C. Song, L. Li, H. Wang, Y. Pan, Y. Wang, X. Feng, Membrane technology coupled with electrochemical oxidation processes for organic wastewater treatment: recent advances and future prospects, Chem. Eng. J., 376 (2019) 120909 (1–19), doi: 10.1016/j.cej.2019.01.188.
  2. D.M. Warsinger, S. Chakraborty, E.W. Tow, M.H. Plumlee, C. Bellona, S. Loutatidou, L. Karimi, A.M. Mikelonis, A. Achilli, A. Ghassemi, L.P. Padhye, S.A. Snyder, S. Curcio, C.D. Vecitis, H.A. Arafat, J.H. Lienhard, A review of polymeric membranes and processes for potable water reuse, Prog. Polym. Sci., 81 (2018) 209–237.
  3. Q.C. Xia, M.L. Liu, X.L. Cao, Y. Wang, W. Xing, S.P. Sun, Structure design and applications of dual-layer polymeric membranes, J. Membr. Sci., 562 (2018) 85–111.
  4. P. Anadão, Membrane Science and Technology, Artliber Editora Ltda, São Paulo, 2010.
  5. K.C. Khulbe, C.Y. Feng, T. Matsuura, Synthetic Polymeric Membranes: Characterization by Atomic Force Microscopy, Springer-Verlag, Berlin, Heidelberg, 2008.
  6. A. Figoli, S. Simone, E. Drioli, Polymeric Membranes, N. Hilal, A.F. Ismail, C.J. Wright, Eds., Membrane Fabrication, CRC Press, Boca Raton FL, 2015.
  7. A. Kunz, S. Mukhtar, Hydrophobic membrane technology for ammonia extraction from wastewaters, Eng. Agric., 36 (2016) 377–386.
  8. R.W. Baker, Membrane Technology and Applications, John Wiley & Sons Inc., California, 2004.
  9. M. Mulder, Basic Principles of Membrane Technology, 2nd ed., Springer, Netherlands, 1996.
  10. J.M. Gohil, R.R. Choudhury, Introduction to nanostructured and nano-enhanced polymeric membranes: preparation, function, and application for water purification, Nanoscale Mater. Water Purif., (2019) 25–57, doi: 10.1016/B978-0-12-813926-4.00038-0.
  11. A. Kausar, Phase inversion technique-based polyamide films and their applications: a comprehensive review, Polym. Plast. Technol. Eng., 56 (2017) 1421–1437.
  12. M. Shaban, H. Abdallah, L. Said, H.S. Hamdy, K.A. Abdel, Titanium dioxide nanotubes embedded mixed matrix PES membranes characterization and membrane performance, Chem. Eng. Res. Des., 95 (2015) 307–316.
  13. M.S. Jyothi, V. Nayak, M. Padaki, R.G. Balakrishna, K. Soontarapa, Aminated polysulfone/TiO2 composite membranes for an effective removal of Cr(VI), Chem. Eng. J., 283 (2016) 1494–1505.
  14. Y. Mansourpanah, S.S. Madaeni, A. Rahimpour, M. Adeli, M.Y. Hashemi, M.R. Moradian, Fabrication new PES-based mixed matrix nanocomposite membranes using polycaprolactone modified carbon nanotubes as the additive: property changes and morphological studies, Desalination, 277 (2011) 171–177.
  15. C. Hoffmann, H. Silau, M. Pinelo, J.M. Woodley, A.E. Daugaard, Surface modification of polysulfone membranes applied for a membrane reactor with immobilized alcohol dehydrogenase, Mater. Today Commun., 14 (2018) 160–168.
  16. S.C. Mamah, P.S. Goh, A.F. Ismail, N.D. Suzaimi, L.T. Yogarathinam, Y.O. Raji, T.H. El-Badawi, Recent development in modification of polysulfone membrane for water treatment application, J. Water Process Eng., 40 (2021) 101835 (1–20), doi: 10.1016/j.jwpe.2020.101835.
  17. P. Mobarakabad, A.R. Moghadassi, S.M. Hosseini, Fabrication and characterization of poly(phenylene ether-ether sulfone) based nanofiltration membranes modified by titanium dioxide nanoparticles for water desalination, Desalination, 365 (2015) 227–233.
  18. R. Mukherjee, S. De, Preparation of polysulfone titanium di oxide mixed matrix hollow fiber membrane and elimination of long term fouling by in situ photoexcitation during filtration of phenolic compounds, Chem. Eng. J., 302 (2016) 773–785.
  19. G.J. Summers, M.P. Ndawuni, C.A. Summers, Dipyridyl functionalized polysulfones for membrane production, J. Membr. Sci., 226 (2003) 21–33.
  20. N.A. Alenazi, M.A. Hussein, K.A. Alamry, A.M. Asiri, Modified polyether-sulfone membrane: a mini review, Des. Monomers Polym., 20 (2017) 532–546.
  21. S. Ioan, Functionalized Polysulfones: Synthesis, Characterization, and Applications, Taylor & Francis Group, LLC, CRC Press, Boca Raton FL, 2015.
  22. N.K.O. Cruz, G.U. Semblante, D.B. Senoro, S. You, S. Lu, Dye degradation and antifouling properties of polyvinylidene fluoride/titanium oxide membrane prepared by sol–gel method, J. Taiwan Inst. Chem. Eng., 45 (2014) 192–201.
  23. G. Ghasemzadeh, M. Momenpour, F. Omidi, M.R. Hosseini, M. Ahani, A. Barzegari, Applications of nanomaterials in water treatment and environmental remediation, Front. Environ. Sci. Eng., 8 (2014) 471–482.
  24. M.R. Esfahani, J.L. Tyler, H.A. Stretz, M.J. Wells, Effects of a dual nanofiller, nano-TiO2 and MWCNT, for polysulfone-based nanocomposite membranes for water purification, Desalination, 372 (2015) 47–56.
  25. R. Krishnamoorthy, V. Sagadevan, Polyethylene glycol and iron oxide nanoparticles blended polyethersulfone ultrafiltration membrane for enhanced performance in dye removal studies, E-Polymers, 15 (2015) 151–159.
  26. C. Evangeline, V. Pragasam, K. Rambabu, S. Velu, P. Monash, G. Arthanareeswaran, F. Banat, Iron oxide modified polyethersulfone/cellulose acetate blend membrane for enhanced defluoridation application, Desal. Water Treat., 156 (2019) 177–188.
  27. Y. Yang, H. Zhang, P. Wang, Q. Zheng, J. Li, The influence of nano-sized TiO2 fillers on the morphologies and properties of PSU UF membrane, J. Membr. Sci., 288 (2007) 231–238.
  28. M. Baghbanzadeh, D. Rana, C.Q. Lana, T. Matsuura, Effects of inorganic nano-additives on properties and performance of polymeric membranes in water treatment, Sep. Purif. Rev., 45 (2016) 141–167.
  29. N.A.A. Hamid, A.F. Ismail, T. Matsuura, A.W. Zularisam, W.J. Lau, E. Yuliwati, M.S. Abdullah, Morphological and separation performance study of polysulfone/titanium dioxide (PSF/TiO2) ultrafiltration membranes for humic acid removal, Desalination, 27 (2011) 85–92.
  30. N.A.L. Flower, K.M. Rahulan, R.A. Sujatha, R.A. Sharath, J. Darson, C. Gopalakrishnan, Fabrication of silver nanoparticles decorated polysulfone composite membranes for sulfate rejection, Appl. Surf. Sci., 493 (2019) 645–656.
  31. ASTM, ASTM E 96/E 96M-05, Standard Test Methods for Water Vapor Transmission of Materials, Philadelphia, 2005.
  32. S. Velu, K. Rambabu, P. Monash, C. Sharma, Improved hydrophilic property of PES/PEG/MnCO3 blended membranes for synthetic dye separation, Int. J. Environ. Stud., 75 (2018) 592–604.
  33. S.M. Torres, C.M. Esteves, J.L. Figueiredo, A.M. Silva, Thin-film composite forward osmosis membranes based on polysulfone supports blended with nanostructured carbon materials, J. Membr. Sci., 520 (2016) 326–336.
  34. T.D. Kusworo, N. Ariyanti, D.P. Utomo, Effect of nano-TiO2 loading in polysulfone membranes on the removal of pollutant following natural-rubber wastewater treatment, J. Water Process Eng., 35 (2020) 101190 (1–11), doi: 10.1016/j. jwpe.2020.101190.
  35. A. Matioli, J. Miagava, D. Gouvêa, Modification of stability of polymorphs of nanometric TiO2 by excess SnO2 surface, Ceramica, 58 (2012) 53–57.
  36. J.M. Yeh, C.L. Chen, Y.C. Chen, C.Y. Ma, H.Y. Huang, Y.H. Yu, Enhanced corrosion prevention effect of polysulfoneclay nanocomposite materials prepared by solution dispersion, J. Appl. Polym. Sci., 92 (2004) 631–637.
  37. X. Wei, Z. Wang, J. Wang, S.A. Wang, A novel method of surface modification to polysulfone ultrafiltration membrane by preadsorption of citric acid or sodium bisulfite, Membr. Water Treat., 3 (2012) 35–49.
  38. A. Mushtaq, H.B. Mukhtar, A.M. Shariff, FTIR study of enhanced polymeric blend membrane with amines, Res. J. Appl. Sci. Eng. Technol., 7 (2014) 1811–1820.
  39. A.T. Kuvarega, N. Khumalo, D. Dlamini, B.B. Mamba, Polysulfone/N, Pd co-doped TiO2 composite membranes for photocatalytic dye degradation, Sep. Purif. Technol., 191 (2018) 122–133.
  40. M.Y. Naz, S. Ahmad, S. Shukrullah, N. Altaf, A. Ghaffar, Effect of microwave plasma treatment on membrane structure of polysulfone fabricated using phase inversion method, Mater. Today: Proc., (2020) 1–4 (in Press), doi: 10.1016/j. matpr.2020.04.522.
  41. S. Yu, J. Zhu, J. Liao, H. Ruan, A. Sotto, J. Shen, Homogeneous trimethylamine-quaternized polysulfone-based anion exchange membranes with crosslinked structure for electrodialysis desalination, Sep. Purif. Technol., 257 (2020) 117874 (1–10), doi: 10.1016/j.seppur.2020.117874.
  42. H. Jiang, T. Wang, S. Li, Z.P. Zhao, Fabrication of porous polymer membrane from polysulfone grafted with acid ionic liquid and the catalytic property for inulin hydrolysis, J. Membr. Sci., 618 (2021) 118742 (1–15), doi: 10.1016/j.memsci.2020.118742.
  43. H.M. Mousa, H. Alfadhel, M. Ateia, A.A. Gomaa, G.T.A. Jaber, Polysulfone-iron acetate/polyamide nanocomposite membrane for oil-water separation, Environ. Nanotechnol. Monit. Manage., (2020) 100314 (1–9), doi: 10.1016/j.enmm.2020.100314.
  44. S. Mondal, S.K. Majumder, Fabrication of the polysulfonebased composite ultrafiltration membranes for the adsorptive removal of heavy metal ions from their contaminated aqueous solutions, Chem. Eng. J., 401 (2020) 126036 (1–18), doi: 10.1016/j. cej.2020.126036.
  45. A.A. Bernardes, M.C.S. Bulhosa, F.F. Gonçalves, M.G. D’oca, S.I. Wolke, J.H.Z. Santos, Materiais SiO2-TiO2 for photocatalytic degradation of diuron, New Chem., 34 (2011) 1343–1348.
  46. A. Sarihan, E. Eren, B. Eren, Y. Erdoğan, Flux-enhanced polysulfone membranes blended with ABPBI as a novel additive, Mater. Today Commun., 20 (2019) 100594 (1–6), doi: 10.1016/j.mtcomm.2019.100594.
  47. K.M. Medeiros, V.N. Medeiros, D.F. Lima, C.A.P. Lima, E.M. Araújo, H.L. Lira, Hybrid microporous membranes applied in wastewater treatment, Macromol. Symp., 383 (2019) 1800037 (1–7), doi: 10.1002/masy.201800037.
  48. L.G.M. Baldo, M.K. Lenzi, D. Eiras, Water vapor permeation and morphology of polysulfone membranes prepared by phase inversion, Polym. Sci. Technol., 30 (2020) e2020027 (1–8), doi: 10.1590/0104-1428.05820.
  49. F.H. Azhar, Z. Harun, K.N. Yusof, S.S. Alias, N. Hashim, E.S. Sazali, A study of different concentrations of bio-silver nanoparticles in polysulfone mixed matrix membranes in water separation performance, J. Water Process Eng., 38 (2020) 101575 (1–10), doi: 10.1016/j.jwpe.2020.101575.
  50. Y.X. Xie, K.K. Wang, W.H. Yu, M.B. Cui, Y.J. Shen, X.Y. Wang, B.K. Zhu, Improved permeability and antifouling properties of polyvinyl chloride ultrafiltration membrane via blending sulfonated polysulfone, J. Colloid Interface Sci., 579 (2020) 562–572.
  51. M. Nadoura, F. Boukraa, A. Ouradia, A. Benaboura, Effects of methylcellulose on the properties and morphology of polysulfone membranes prepared by phase inversion, Mater. Res., 20 (2017) 339–348.
  52. V. Vatanpour, H. Rabiee, M.H.D.A. Farahania, M.M. Farahanid, M. Niakan, Preparation and characterization of novel nanoporous SBA-16-COOH embedded polysulfone ultrafiltration membrane for protein separation, Chem. Eng. Res. Des., 156 (2020) 240–250.
  53. Y. Zhang, F. Liu, Y. Lu, L. Zhao, L. Song, Investigation of phosphorylated TiO2–SiO2 particles/polysulfone composite membrane for wastewater treatment, Desalination, 324 (2013) 18–126.
  54. M.S. Fahmey, A.H.M. El-Aassar, M.M.A. Elfadel, A.S. Orabi, R. Das, Comparative performance evaluations of nanomaterials mixed polysulfone: a scale-up approach through vacuum enhanced direct contact membrane distillation for water desalination, Desalination, 451 (2019) 111–116.
  55. K. Rambabu, S. Velu, Improved performance of CaCl2 incorporated polyethersulfone ultrafiltration membranes, Period. Polytech., Chem. Eng., 60 (2016) 181–191.
  56. S.A. Pascoal, C.B. Silva, K.S. Silva, G.G.C. Lima, K.M. Medeiros, C.A.P. Lima, Treatment by TiO2/UV of wastewater generated in polymeric membranes production, Desal. Water Treat., 207 (2020) 30–42.
  57. E.A. Santos Filho, A.F. Salviano, B.A. Araújo, K.M. Medeiros, V.N. Medeiros, E.M. Araújo, H.L. Lira, Influence of additives on hybrids membranes morphology for water treatment, Diffus. Found., 14 (2017) 86–106.
  58. M.M.C.C. Mota, E.M. Araújo, A.M.D. Leite, K.M. Medeiros, C.A.P. Lima, PA6/sodium clay membrane for application in petroleum sector, Mater. Sci. Forum, 930 (2018) 264–269.
  59. E.A. Santos Filho, K.M. Medeiros, E.M. Araújo, R.S.B. Ferreira, S.S.L. Oliveira, V.N. Medeiros, Membranes of polyamide 6/clay/salt for water/oil separation, Mater. Res. Express, 6 (2019) 105313 (1–13), doi: 10.1088/2053-1591/ab3754.
  60. Z. Zhao, K. Muylaert, A. Szymczyk, I.F.J. Vankelecom, Harvesting microalgal biomass using negatively charged polysulfone patterned membranes: influence of pattern shapes and mechanism of fouling mitigation, Water Res., 188 (2021) 116530 (1–11), doi: 10.1016/j.watres.2020.116530.
  61. A. Modi, J. Bellare, Efficiently improved oil/water separation using high flux and superior antifouling polysulfone hollow fiber membranes modified with functionalized carbon nanotubes/graphene oxide nanohybrid, J. Environ. Chem. Eng., 7 (2019) 102944 (1–9), doi: 10.1016/j.jece.2019.102944.
  62. J.F. Li, Z.L. Xu, H. Yang, L.Y. Yu, M. Liu, Effect of TiO2 nanoparticles on the surface morphology and performance of microporous PES membrane, Appl. Surf. Sci., 255 (2009) 4725–4732.
  63. A. Razmjoua, J. Mansouri, V. Chena, The effects of mechanical and chemical modification of TiO2 nanoparticles on the surface chemistry, structure and fouling performance of PES ultrafiltration membranes, J. Membr. Sci., 378 (2011) 73–84.
  64. D. Emadzadeh, W.J. Lau, T. Matsuura, M.R. Sisakht, A.F. Ismail, A novel thin film composite forward osmosis membrane prepared from PSf-TiO2 nanocomposite substrate for water desalination, Chem. Eng. J., 237 (2014) 70–80.
  65. R. Kumar, A.M. Isloor, A.F. Ismail, S.A. Rashid, A.A. Ahmed, Permeation, antifouling and desalination performance of TiO2 nanotube incorporated PSf/CS blend membranes, Desalination, 316 (2013) 76–84.
  66. L. Zhu, M. Wu, B.V.D. Bruggen, L. Lei, Zhu L, Effect of TiO2 content on the properties of polysulfone nanofiltration membranes modified with a layer of TiO2-graphene oxide, Sep. Purif. Technol., 242 (2020) 116770 (1–12), doi: 10.1016/j. seppur.2020.116770.
  67. Y. Zhang, X. Shan, Z. Jin, Y. Wang, Synthesis of sulfated Y-doped zirconia particles and effect on properties of polysulfone membranes for treatment of wastewater containing oil, J. Hazard. Mater., 192 (2011) 559–567.
  68. A. Tizchang, Y. Jafarzadeh, R. Yegani, S. Khakpour, The effects of pristine and silanized nanodiamond on the performance of polysulfone membranes for wastewater treatment by MBR system, J. Environ. Chem. Eng., 7 (2019) 103447 (1–10), doi: 10.1016/j.jece.2019.103447.
  69. K. Tempelman, S. Casanova, N.E. Benes, The effect of hydrocarbon pollution on polysulfone-based membranes in aqueous separations, Sep. Purif. Technol., 224 (2019) 348–355.
  70. A. Bouzidi, I.S. Yahia, M.S.A. El-Sadek, Novel and highly stable indigo (C.I. Vat Blue I) organic semiconductor dye: crystal structure, optically diffused reflectance and the electrical conductivity/dielectric behavior, Dyes Pigm., 146 (2017) 66–72.
  71. R.S.B. Ferreira, A.F. Salviano, S.S.L. Oliveira, E.M. Araújo, V.N. Medeiros, H.L. Lira, Treatment of effluents from the textile industry through polyethersulfone membranes, Water, 11 (2019) 2540 (1–11), doi: 10.3390/w11122540.
  72. R.C.O. Lima, H.L. Lira, G.A. Neves; M.C. Silva, K.B. França, Use of ceramic membrane for indigo separation in effluent from textile industry, Mater. Sci. Forum, 789 (2014) 537–541.
  73. K. Rambabu, G. Bharath, P. Monash, S. Velu, F. Banat, M. Naushad, G. Arthanareeswaran, P.L. Show Effective treatment of dye polluted wastewater using nanoporous CaCl2 modified polyethersulfone membrane, Process Saf. Environ., 124 (2019) 266–278.
  74. J. Gao, Z. Thong, K.Y. Wang, T.S. Chung, Fabrication of loose inner-selective polyethersulfone (PES) hollow fibers by onestep spinning process for nanofiltration (NF) of textile dyes, J. Membr. Sci., 541 (2017) 413–424.