References

  1. Y. Geng, B. Doberstein, Developing the circular economy in China: challenges and opportunities for achieving ‘leapfrog development’, Int. J. Sustainable Dev. World Ecol., 15 (2008) 231–239.
  2. J. Liang, X.-a. Ning, J. Sun, J. Song, J. Lu, H. Cai, Y. Hong, Toxicity evaluation of textile dyeing effluent and its possible relationship with chemical oxygen demand, Ecotoxicol. Environ. Saf., 166 (2018) 56–62.
  3. K. Balapure, K. Jain, N. Bhatt, D. Madamwar, Exploring bioremediation strategies to enhance the mineralization of textile industrial wastewater through sequential anaerobicmicroaerophilic process, Int. Biodeterior. Biodegrad., 106 (2016) 97–105.
  4. L. Bilińska, M. Gmurek, S. Ledakowicz, Comparison between industrial and simulated textile wastewater treatment by AOPs – biodegradability, toxicity and cost assessment, Chem. Eng. J., 306 (2016) 550–559.
  5. W.-J. Lau, A.F. Ismail, Polymeric nanofiltration membranes for textile dye wastewater treatment: Preparation, performance evaluation, transport modelling, and fouling control — a review, Desalination, 245 (2009) 321–348.
  6. H. Nawaz, M. Umar, I. Nawaz, A. Ullah, M. Tauseef Khawar, M. Nikiel, H. Razzaq, M. Siddiq, X. Liu, Hybrid PVDF/PANI membrane for removal of dyes from textile wastewater, Adv. Eng. Mater., 24 (2022) 2100719, doi: 10.1002/adem.202100719.
  7. K. Rambabu, G. Bharath, P. Monash, S. Velu, F. Banat, Mu. Naushad, G. Arthanareeswaran, P. Loke Show, Effective treatment of dye polluted wastewater using nanoporous CaCl2 modified polyethersulfone membrane, Process Saf. Environ. Prot., 124 (2019) 266–278.
  8. T. Puspasari, K.-V. Peinemann, Application of thin film cellulose composite membrane for dye wastewater reuse, J. Water Process Eng., 13 (2016) 176–182.
  9. M. Kamali, D.P. Suhas, M.E. Costa, I. Capela, T.M. Aminabhavi, Sustainability considerations in membrane-based technologies for industrial effluents treatment, Chem. Eng. J., 368 (2019) 474–494.
  10. S.K. Nataraj, K.M. Hosamani, T.M. Aminabhavi, Nanofiltration and reverse osmosis thin film composite membrane module for the removal of dye and salts from the simulated mixtures, Desalination, 249 (2009) 12–17.
  11. R. Weng, X. Huang, D. Liao, S. Xu, L. Peng, X. Liu, A novel cellulose/chitosan composite nanofiltration membrane prepared with piperazine and trimesoyl chloride by interfacial polymerization, RSC Adv., 10 (2020) 1309–1318.
  12. X. Feng, D. Peng, J. Zhu, Y. Wang, Y. Zhang, Recent advances of loose nanofiltration membranes for dye/salt separation, Sep. Purif. Technol., 285 (2022) 120228, doi: 10.1016/j. seppur.2021.120228.
  13. Y. Wang, Y. Ren, H. Wu, X. Wu, H. Yang, L. Yang, X. Wang, Y. Wu, Y. Liu, Z. Jiang, Amino-functionalized ZIF-7 embedded polymers of intrinsic microporosity membrane with enhanced selectivity for biogas upgrading, J. Membr. Sci., 602 (2020) 117970, doi: 10.1016/j.memsci.2020.117970.
  14. J.-J. Han, Q.-Y. Zhang, M.-Y. Huang, Y. Chen, X. Yan, W.-Z. Lang, Two-dimensional WS2 membranes constructed on different substrates for efficient dye desalination, Desalination, 480 (2020) 114380, doi: 10.1016/j.desal.2020.114380.
  15. Z. Zhang, G. Kang, H. Yu, Y. Jin, Y. Cao, From reverse osmosis to nanofiltration: precise control of the pore size and charge of polyamide membranes via interfacial polymerization, Desalination, 466 (2019) 16–23.
  16. S. Yang, Q. Jiang, K. Zhang, Few-layers 2D O–MoS2 TFN nanofiltration membranes for future desalination, J. Membr. Sci., 604 (2020) 118052, doi: 10.1016/j.memsci.2020.118052.
  17. Q. Jiang, H. Tian, K. Zhang, Enhanced performance of poly(Mphenylene isophthalamide) (PMIA) composite hollow fiber ultrafiltration membranes by O-MoS2 nanosheets modification, Desal. Water Treat., 166 (2019) 245–258.
  18. S.H. Maruf, A.R. Greenberg, Y. Ding, Influence of substrate processing and interfacial polymerization conditions on the surface topography and permselective properties of surfacepatterned thin-film composite membranes, J. Membr. Sci., 512 (2016) 50–60.
  19. N. Misdan, W.J. Lau, A.F. Ismail, T. Matsuura, D. Rana, Study on the thin film composite poly(piperazine-amide) nanofiltration membrane: impacts of physicochemical properties of substrate on interfacial polymerization formation, Desalination, 344 (2014) 198–205.
  20. N. Misdan, W.J. Lau, A.F. Ismail, T. Matsuura, Formation of thin film composite nanofiltration membrane: effect of polysulfone substrate characteristics, Desalination, 329 (2013) 9–18.
  21. T. Kamada, T. Ohara, T. Shintani, T. Tsuru, Controlled surface morphology of polyamide membranes via the addition of co-solvent for improved permeate flux, J. Membr. Sci., 467 (2014) 303–312.
  22. F.G. Donnan, Theory of membrane equilibria and membrane potentials in the presence of non-dialysing electrolytes. A contribution to physical-chemical physiology, J. Membr. Sci., 100 (1995) 45–55.
  23. G.S. Lai, W.J. Lau, P.S. Goh, A.F. Ismail, N. Yusof, Y.H. Tan, Graphene oxide incorporated thin film nanocomposite nanofiltration membrane for enhanced salt removal performance, Desalination, 387 (2016) 14–24.
  24. J.-A.-D. Sharabati, S. Guclu, S. Erkoc-Ilter, D.Y. Koseoglu-Imer, S. Unal, Y.Z. Menceloglu, I. Ozturk, I. Koyuncu, Interfacially polymerized thin-film composite membranes: impact of support layer pore size on active layer polymerization and seawater desalination performance, Sep. Purif. Technol., 212 (2019) 438–448.
  25. J. Yu, Y. Zhang, J. Chen, L. Cui, W. Jing, Solvothermalinduced assembly of 2D-2D rGO-TiO2 nanocomposite for the construction of nanochannel membrane, J. Membr. Sci., 600 (2020) 117870, doi:10.1016/j.memsci.2020.117870.
  26. X. Wang, Q. Xiao, C. Wu, P. Li, S. Xia, Fabrication of nanofiltration membrane on MoS2 modified PVDF substrate for excellent permeability, salt rejection, and structural stability, Chem. Eng. J., 416 (2021) 129154, doi:10.1016/j.cej.2021.129154.
  27. H. Gao, Q. Shi, D. Rao, Y. Zhang, J. Su, Y. Liu, Y. Wang, K. Deng, R. Lu, Rational design and strain engineering of nanoporous boron nitride nanosheet membranes for water desalination, J. Phys. Chem. C, 121 (2017) 22105–22113.
  28. R. Zhang, S. Yu, W. Shi, W. Wang, X. Wang, Z. Zhang, L. Li, B. Zhang, X. Bao, A novel polyesteramide thin film composite nanofiltration membrane prepared by interfacial polymerization of serinol and trimesoyl chloride (TMC) catalyzed by 4‑dimethylaminopyridine (DMAP), J. Membr. Sci., 542 (2017) 68–80.
  29. R. Zhang, S. Yu, W. Shi, J. Zhu, B. Van der Bruggen, Support membrane pore blockage (SMPB): an important phenomenon during the fabrication of thin film composite membrane via interfacial polymerization, Sep. Purif. Technol., 215 (2019) 670–680.
  30. J. Ji, R.F. Childs, M. Mehta, Mathematical model for encapsulation by interfacial polymerization, J. Membr. Sci., 192 (2001) 55–70.
  31. F. Zhang, J.-b. Fan, S. Wang, Interfacial polymerization: from chemistry to functional materials, Angew. Chem. Int. Ed., 59 (2020) 21840–21856.
  32. J. Hwan Mo, Y. Hwan Lee, J. Kim, J. Yun Jeong, J. Jegal, Treatment of dye aqueous solutions using nanofiltration polyamide composite membranes for the dye wastewater reuse, Dyes Pigm., 76 (2008) 429–434.
  33. J. Zhang, Z. Li, K. Zhan, R. Sun, Z. Sheng, M. Wang, S. Wang, X. Hou, Two dimensional nanomaterial-based separation membranes, Electrophoresis, 40 (2019) 2029–2040.
  34. T.D. Matthews, H. Yan, D.G. Cahill, O. Coronell, B.J. Mariñas, Growth dynamics of interfacially polymerized polyamide layers by diffuse reflectance spectroscopy and Rutherford backscattering spectrometry, J. Membr. Sci., 429 (2013) 71–80.
  35. A.K. Ghosh, E.M.V. Hoek, Impacts of support membrane structure and chemistry on polyamide–polysulfone interfacial composite membranes, J. Membr. Sci., 336 (2009) 140–148.
  36. F. Liu, L.L. Wang, D. Li, Q. Liu, B. Deng, A review: the effect of the microporous support during interfacial polymerization on the morphology and performances of a thin film composite membrane for liquid purification, RSC Adv., 9 (2019) 35417–35428.
  37. X. Kang, Y. Cheng, Y. Wen, J. Qi, X. Li, Bio-inspired co-deposited preparation of GO composite loose nanofiltration membrane for dye contaminated wastewater sustainable treatment, J. Hazard. Mater., 400 (2020) 123121, doi: 10.1016/j.jhazmat.2020.123121.
  38. W. Yan, Z. Wang, J. Wu, S. Zhao, J. Wang, S. Wang, Enhancing the flux of brackish water TFC RO membrane by improving support surface porosity via a secondary pore-forming method, J. Membr. Sci., 498 (2016) 227–241.
  39. W.-J. Lau, G.-S. Lai, J. Li, S. Gray, Y. Hu, N. Misdan, P.-S. Goh, T. Matsuura, I.W. Azelee, A.F. Ismail, Development of microporous substrates of polyamide thin film composite membranes for pressure-driven and osmotically-driven membrane processes: a review, J. Ind. Eng. Chem., 77 (2019) 25–59.
  40. W. Ye, J. Lin, R. Borrego, D. Chen, A. Sotto, P. Luis, M. Liu, S. Zhao, C.Y. Tang, B. Van der Bruggen, Advanced desalination of dye/NaCl mixtures by a loose nanofiltration membrane for digital ink-jet printing, Sep. Purif. Technol., 197 (2018) 27–35.
  41. C.Y. Tang, T.H. Chong, A.G. Fane, Colloidal interactions and fouling of NF and RO membranes: a review, Adv. Colloid Interface Sci., 164 (2011) 126–143.
  42. X.Q. Gao, K.C. Yu, X.M. Wang, Rejection behaviors and separation selectivity of loose nanofiltration membranes for mineral ions in drinking water, Huanjing Kexue Xuebao/Acta Sci. Circum., 40 (2020) 2700–2707.
  43. P. Lu, S. Liang, L. Qiu, Y. Gao, Q. Wang, Thin film nanocomposite forward osmosis membranes based on layered double hydroxide nanoparticles blended substrates, J. Membr. Sci., 504 (2016) 196–205.
  44. E.M.V. Hoek, M. Elimelech, Cake-enhanced concentration polarization: a new fouling mechanism for salt-rejecting membranes, Environ. Sci. Technol., 37 (2003) 5581–5588.
  45. G.-R. Xu, J.-M. Xu, H.-J. Feng, H.-L. Zhao, S.-B. Wu, Tailoring structures and performance of polyamide thin film composite (PA-TFC) desalination membranes via sublayers adjustment-a review, Desalination, 417 (2017) 19–35.
  46. S. Tul Muntha, A. Kausar, M. Siddiq, Advances in polymeric nanofiltration membrane: a review, Polym. Plast. Technol. Eng., 56 (2017) 841–856.
  47. H. Al-Zoubi, W. Omar, Rejection of salt mixtures from high saline by nanofiltration membranes, Korean J. Chem. Eng., 26 (2009) 799–805.
  48. J. Li, M. Wei, Y. Wang, Substrate matters: the influences of substrate layers on the performances of thin-film composite reverse osmosis membranes, Chin. J. Chem. Eng., 25 (2017) 1676–1684.
  49. H.B. Park, J. Kamcev, L.M. Robeson, M. Elimelech, B.D. Freeman, Maximizing the right stuff: the trade-off between membrane permeability and selectivity, Science, 356 (2017) 1138–1148.
  50. T. Tavangar, K. Jalali, M.A. Alaei Shahmirzadi, M. Karimi, Toward real textile wastewater treatment: membrane fouling control and effective fractionation of dyes/inorganic salts using a hybrid electrocoagulation – nanofiltration process, Sep. Purif. Technol., 216 (2019) 115–125.
  51. S. Yang, H. Tian, M.R. Hill, K. Zhang, Effect and regulation mechanism of oxidation degrees on the O–MoS2 structure and separation performance of nanofiltration membrane, J. Membr. Sci., 635 (2021) 119468, doi:10.1016/j.memsci.2021.119468.
  52. S. Samsami, M. Mohamadizaniani, M.-H. Sarrafzadeh, E.R. Rene, M. Firoozbahr, Recent advances in the treatment of dye-containing wastewater from textile industries: overview and perspectives, Process Saf. Environ. Prot., 143 (2020) 138–163.
  53. G.-R. Xu, J.-M. Xu, H.-C. Su, X.-Y. Liu, Lu-Li, H.-L. Zhao, H.-J. Feng, R. Das, Two-dimensional (2D) nanoporous membranes with sub-nanopores in reverse osmosis desalination: latest developments and future directions, Desalination, 451 (2019) 18–34.
  54. Q. Zhang, L. Fan, Z. Yang, R. Zhang, Y.-n. Liu, M. He, Y. Su, Z. Jiang, Loose nanofiltration membrane for dye/salt separation through interfacial polymerization with in-situ generated TiO2 nanoparticles, Appl. Surf. Sci., 410 (2017) 494–504.
  55. L. Dong, M. Li, S. Zhang, X. Si, Y. Bai, C. Zhang, NH2-Fe3O4-regulated graphene oxide membranes with
    well-defined laminar nanochannels for desalination of dye solutions, Desalination, 476 (2020) 114227, doi:10.1016/j.desal.2019.114227.
  56. Y.F. Mi, N. Wang, Q. Qi, B. Yu, X.D. Peng, Z.H. Cao, A loose polyamide nanofiltration membrane prepared by polyether amine interfacial polymerization for dye desalination, Sep. Purif. Technol., 248 (2020) 117079, doi:10.1016/j.seppur.2020.117079.
  57. Z. Qiao, Z. Wang, C. Zhang, S. Yuan, Y. Zhu, J. Wang, S. Wang, PVAm–PIP/PS composite membrane with high performance for CO2/N2 separation, AlChE J., 59 (2012) 215–228.
  58. S. Chen, Y. Xie, T. Xiao, W. Zhao, J. Li, C. Zhao, Tannic acidinspiration and post-crosslinking of zwitterionic polymer as a universal approach towards antifouling surface, Chem. Eng. J., 337 (2018) 122–132.
  59. Y.-F. Mi, G. Xu, Y.-S. Guo, B. Wu, Q.-F. An, Development of antifouling nanofiltration membrane with zwitterionic functionalized monomer for efficient dye/salt selective separation, J. Membr. Sci., 601 (2020) 117795, doi: 10.1016/j. memsci.2019.117795.
  60. Q. Long, Z. Zhang, G. Qi, Z. Wang, Y. Chen, Z.Q. Liu, Fabrication of chitosan nanofiltration membranes by the film casting strategy for effective removal of dyes/salts in textile wastewater, ACS Sustainable Chem. Eng., 8 (2020) 2512–2522.