References

  1. S. Sarkar, S. Bandyopadhyay, A. Larbot, S. Cerneaux, New clay–alumina porous capillary supports for filtration application, J. Membr. Sci., 392 (2018) 130–136.
  2. R.A. Shkrabina, B. Boneckamp, P. Pex, H. Veringa, Z. Ismagilov, Porous structure of alumina ceramic support for gas separation membranes, II. Study of porous structure of ceramic composition, React. Kinet. Catal. Lett., 54 (1995) 193–201.
  3. Y.C. Dong, S. Chen, X. Zhang, J. Yang, X.Q. Liu, G.Y. Meng, Fabrication and characterization of low cost tubular mineralbased ceramic membranes for micro-filtration from natural zeolite, J. Membr. Sci., 281 (2006) 592–599.
  4. S. Kanchapogu, G. Pugazhenthi, Development of ceramic membranes from low-cost clays for the separation of oil–water emulsion, Desal. Water Treat., 57 (2016) 1927–1939.
  5. T. Wang, Y. Zhang, L.I. Guangfen, H. Li, Preparation and characterization of alumina hollow fiber membranes, Front. Chem. Sci. Eng., 3 (2009) 265–271.
  6. A. J. Burggraaf, Important Characteristics of Inorganic Membranes, A.J. Burggraaf, L. Cot, Eds., Fundamentals of Inorganic Membrane Science and Technology, Elsevier, Amsterdam, 1996, pp. 21–34.
  7. ties and applications, J. Porous Mater., 5 (1998) 241–258.
  8. F. Wang, J. Ye, G. He, G. Liu, Z. Xie, J. Li, Preparation and characterization of porous MgAl2O4 spinel ceramic supports f
  9. J.L. Amorós, M.J. Orts, J. García-Ten, A. Gozalbo, E. Sánchez, Effect of the green porous texture on porcelain tile properties, J. Eur. Ceram. Soc., 27 (2007) 2295–2301.
  10. S. Vercauteren, K. Keizer, E. F. Vansant, J. Luyten, R. Leysen, Porous ceramic membranes: preparation, transport properrom bauxite and magnesite, Ceram. Int., 41 (2015) 7374–7380.
  11. S. Hubadillah, M. Othman, T. Matsuura, Fabrications and applications of low cost ceramic membrane from kaolin: a comprehensive review, Ceram. Int., 44 (2018) 4538–4560.
  12. X. Yin, K. Guan, P. Gao, A preparation method for the highly permeable ceramic microfiltration membrane—precursor film firing method, RSC Adv., 8 (2018) 2906–2914.
  13. B. Bruggen, C. Vandecasteele, T. Gestel, A review of pressuredriven membrane processes in wastewater treatment and drinking water production, Environ. Prog. Sustainable Energy, 22 (2010) 46–56.
  14. H. Yanagishita, D. Kitamoto, K. Haraya, Separation performance of polyimide composite membrane prepared by dip coating process, J. Membr. Sci., 188 (2001) 165–172.
  15. X.J. Ding, Y.Q. Fan, N.P. Xu, Modeling and control of ceramic membrane thickness during dip-coating process, J. Chem. Ind. Eng., 57 (2006) 1003–1008 (in Chinese).
  16. J.M. Skluzacek, M.I. Tejedor, M.A. Anderson, Influence of membrane support structure on the efficiency of an ironmodified silica nanofiltration membrane, J. Porous Mater., 15 (2008) 303–309.
  17. X. Chen, Y. Lin, Y. Lu, A facile nanoparticle doping sol–gel method for the fabrication of defect-free nanoporous ceramic membranes, Colloid Interface Sci. Commun., 5 (2015) 12–15.
  18. A. Bayat, H. Mahdavi, M. Kazemimoghaddam, Preparation and characterization of γ-alumina ceramic ultrafiltration membranes for pretreatment of oily wastewater, Desal. Water Treat., 57 (2016) 24322–24332.
  19. J. Zhu, Y.Q. Fan, N.P. Xu, Modified dip-coating method for preparation of pinhole-free ceramic membranes, J. Membr. Sci., 367 (2011) 14–20.
  20. Y.X. Hu, N. Milne, S. Gray, G. Morris, W. Jin, M.C. Duke, B. Zhu, Combined TiO2 membrane filtration and ozonation for efficient water treatment to enhance the reuse of wastewater, Desal. Water. Treat., 34 (2011) 57–62.
  21. Q.B. Chang, R. Peng, X.Q. Liu, A modified rate expression of wet membrane formation from ceramic particles suspension on porous substrate, J. Membr. Sci., 233 (2004) 51–58.
  22. H. Yan, X. Lu, C. Wu, Fabrication of a super-hydrophobic polyvinylidene fluoride hollow fiber membrane using a particle coating process, J. Membr. Sci., 533 (2017) 130–140.
  23. Q.B. Chang, Y.Y. Yang, X.Z. Zhang, Y.Q. Wang, J.E. Zhou, X. Wang, S. Cerneaux, L. Zhu, Y.C. Dong, Effect of particle size distribution of raw powders on pore size distribution and bending strength of Al2O3, microfiltration membrane supports, J. Eur. Ceram. Soc., 34 (2014) 3819–3825.
  24. Y. Liu, W. Zhu, K. Guan, Preparation of high permeable alumina ceramic membrane with good separation performance via UV curing technique, RSC Adv., 8 (2018) 13567–13577.
  25. C. Sun, J. Zhang, W. Jiang, Study on preparation of ultrafine separation membrane on porous alumina supporters, Inorg. Chem. Ind., 42 (2010) 17–20 (in Chinese).
  26. B. Elyassi, M. Sahimi, T.T. Tsotsis, A novel sacrificial interlayerbased method for the preparation of silicon carbide membranes, J. Membr. Sci., 316 (2008) 73–79.
  27. W. Qin, C. Peng, J.Q. Wu, A sacrificial-interlayer technique for single-step coating preparation of highly permeable alumina membrane, Ceram. Int., 43 (2017) 901–904.
  28. M. Kanezashi, M. Asaeda, Hydrogen permeation characteristics and stability of Ni-doped silica membranes in steam at high temperature, J. Membr. Sci., 271 (2006) 86–93.
  29. Y.F. Liu, Q.Q. Xu, P. Cai, M.Y. Zhen, X.Y. Wang, J.Z. Yin, Effects of operating parameters and ionic liquid properties on fabrication of supported ionic liquid membranes based on mesoporous γ-Al2O3 supports, J. Membr. Sci., 545 (2018) 176–184. Fig. 8. Separation properties of the ceramic membrane by onestep pasting method.
  30. J.E. Zhou, Y.L. Yang, Q.B. Chang, Y.Q. Wang, K. Yang, Q.F. Bao, Effect of particle size gradients of alumina powders on the pore size distribution and bending strength of ceramic membrane supports, J. Synth. Cryst., 43 (2014) 2125–2131 (in Chinese).
  31. J. Geens, B.V.D. Bruggen, C. Vandecasteele, Transport model for solvent permeation through nanofiltration membranes, Sep. Purif. Technol., 255 (2006) 255–263.
  32. H. Bissett, J. Zah, H.M. Krieg, Manufacture and optimization of tubular ceramic membrane supports, Powder Technol., 181 (2008) 57–66.
  33. I.H. Song, B.S. Bae, J.H. Ha, J. Lee, Effect of hydraulic pressure on alumina coating on pore characteristics of flat-sheet ceramic membrane, Ceram. Int., 43 (2017) 10502–10507.
  34. Y.H. Wang, X.Q. Liu, G.Y. Meng, Preparation and properties of supported 100% titania ceramic membranes, Mater. Res. Bull., 43 (2008) 1480–1491.
  35. D. Zou, M. Qiu, X. Chen, E. Drioli, Y. Fan, One step co-sintering process for low-cost fly ash based ceramic microfiltration membrane in oil-in-water emulsion treatment, Sep. Purif. Technol., 210 (2019) 511–520.
  36. C. Song, T. Wang, Y. Pan, J. Qiu, Preparation of coal-based microfiltration carbon membrane and application in oily wastewater treatment, Sep. Purif. Technol., 51 (2006) 80–84.
  37. Q.B. Chang, J.-E. Zhou, Y.Q. Wang, J. Wang, G.Y. Meng, Hydrophilic modification of Al2O3 microfiltration membrane with nano-sized gamma-Al2O3 coating, Desalination, 262 (2010) 110–114.
  38. P.M. Biesheuvel, Porous Ceramic Membranes Suspension Processing, Mechanical and Transport Properties, and Application in the Osmotic Tensiometer, Ph.D. Thesis, Universiteit Twente, The Netherlands, 1999.