References

  1. U.B. Gunatilake, J. Bandara, Fabrication of highly hydrophilic filter using natural and hydrothermally treated mica nanoparticles for efficient waste oil-water separation, J. Environ. Manage., 191 (2017) 96–104.
  2. B. Xue, J.G. Deng, J.H. Zhang, Multiporous open-cell poly(vinyl formal) foams for sound absorption, RSC Adv., 6 (2016) 7653–7660.
  3. N.S. Prasad, S. Moulik, S. Bohra, K.Y. Rani, S. Sridhar, Solvent resistant chitosan/poly(ether-block-amide) composite membranes for pervaporation of n-methyl-2-pyrrolidone/water mixtures, Carbohydr. Polym., 136 (2016) 1170–1181.
  4. L. Liu, W. Qiu, E.S. Sanders, C. Ma, W.J. Koros, Post-combustion carbon dioxide capture via 6FDA/BPDA-DAM hollow fiber membranes at sub-ambient temperatures, J. Membr. Sci., 510 (2016) 447–454.
  5. C.C. Ye, F.Y. Zhao, J.K. Wu, X.D. Weng, P.Y. Zheng, Y.F. Mi, Q.F. An, C.J. Gao, Sulfated polyelectrolyte complex nanoparticles structured nanoflitration membrane for dye desalination, Chem. Eng. J., 307 (2017) 526–536.
  6. R. Xu, L. Zou, P. Lin, Q. Zhang, J. Zhong, Pervaporative desulfurization of model gasoline using PDMS/BTESE-derived organosilica hybrid membranes, Fuel Process. Technol., 154 (2016) 188–196.
  7. S. Wang, Y. Wu, N. Zhang, G. He, Q. Xin, X. Wu, H. Wu, X. Cao, M.D. Guiver, Z. Jiang, A highly permeable graphene oxide membrane with fast and selective transport nanochannels for efficient carbon capture, Energy Environ. Sci., 9 (2016) 3107–3112.
  8. S. Badalov, C.J. Arnusch, Ink-jet printing assisted fabrication of thin film composite membranes, J. Membr. Sci., 515 (2016) 79–85.
  9. E. Mosayebi, S. Azizian, B.J. Cha, T.G. Woo, Y.D. Kim, Fabrication of highly hydrophobic sand@soot with core–shell structure and large-scale production possibility for oil/water separation, J. Phys. Chem. Solids, 150 (2021) 109815, doi: 10.1016/j.jpcs.2020.109815.
  10. J. Zhang, Q. Xue, X. Pan, Y. Jin, W. Lu, D. Ding, Q. Guo, Graphene oxide/polyacrylonitrile fiber hierarchical-structured membrane for ultra-fast microfiltration of oil-water emulsion, Chem. Eng. J., 307 (2017) 643–649.
  11. K. Karakulski, M. Gryta, The application of ultrafiltration for treatment of ships generated oily wastewater, Chem. Pap., 71 (2017) 1165–1173.
  12. X. Zhu, A. Dudchenko, X. Gu, D. Jassby, Surfactant-stabilized oil separation from water using ultrafiltration and nanofiltration, J. Membr. Sci., 529 (2017) 159–169.
  13. W. Falath, A. Sabir, K.I. Jacob, Highly improved reverse osmosis performance of novel PVA/DGEBA cross-linked membranes by incorporation of Pluronic F-127 and MWCNTs for water desalination, Desalination, 397 (2016) 53–66.
  14. B.S. Al-anzi, O.C. Siang, Recent developments of carbon based nanomaterials and membranes for oily wastewater treatment, RSC Adv., 7 (2017) 20981–20994.
  15. H. Zhang, Y. Shen, M. Li, G. Zhu, H. Feng, J. Li, Egg shell powders-coated membrane for surfactant-stabilized crude oil-in-water emulsions efficient separation, ACS Sustainable Chem. Eng., 7 (2019) 10880–10887.
  16. Y. Wu, X. Zhang, S. Liu, B. Zhang, Y. Lu, T. Wang, Preparation and applications of microfiltration carbon membranes for the purification of oily wastewater, Sep. Sci. Technol., 51 (2016) 1872–1880.
  17. C. Song, T. Wang, J. Qiu, Y. Cao, T. Cai, Effects of carbonization conditions on the properties of coal-based microfiltration carbon membranes, J. Porous Mater., 15 (2008) 1–6.
  18. C. Li, C. Song, P. Tao, M. Sun, Z. Pan, T. Wang, M. Shao, Enhanced separation performance of coal-based carbon membranes coupled with an electric field for oily wastewater treatment, Sep. Purif. Technol., 168 (2016) 47–56.
  19. Y. Pan, W. Wang, T. Wang, P. Yao, Fabrication of carbon membrane and microfiltration of oil-in-water emulsion: an investigation on fouling mechanisms, Sep. Purif. Technol., 57 (2007) 388–393.
  20. L. Du, X. Quan, X. Fan, S. Chen, H. Yu, Electro-responsive carbon membranes with reversible superhydrophobicity/ superhydrophilicity switch for efficient oil/water separation, Sep. Purif. Technol., 210 (2019) 891–899.
  21. M.E. Sayed, M. Ramzi, R. Hosny, M. Fathy, T.A. Moghny, Breakthrough curves of oil adsorption on novel amorphous carbon thin film, Water Sci. Technol., 73 (2016) 2361–2369.
  22. I. Derbel, R.B. Amar, Preparation of new tubular carbon ultrafiltration membrane for oily wastewater treatment by air gap membrane distillation, Desal. Water Treat., 124 (2018) 21–29.
  23. X. Zhang, B. Zhang, Y. Wu, T. Wang, J. Qiu, Preparation and characterization of a diatomite hybrid microfiltration carbon membrane for oily wastewater treatment, J. Taiwan Inst. Chem. Eng., 89 (2018) 39–48.
  24. K. Venkataraman, W.T. Choate, E.R. Torre, R.D. Husung, H.R. Batchu, Characterization studies of ceramic membranes. A novel technique using a Coulter® porometer, J. Membr. Sci., 39 (1988) 259–271.
  25. J. Yun, L. Chen, X. Zhang, H. Zhao, Z. Wen, C. Zhang, The effects of silicon and ferrocene on the char formation of modified novolac resin with high char yield, Polym. Degrad. Stab., 139 (2017) 97–106.
  26. B. Zhang, Z. Yu, Y. An, Y. Wu, Y. Shi, Z. Liu, T. Wang, Preparation and characterisation of large sized ordered mesoporous carbon film from resorcinol/formaldehyde by basic catalysts, Mater. Res. Innovations, 18 (2014) 294–299.
  27. X. Zhang, B. Zhang, Y. Wu, D. Wang, T. Wang, Facile preparation of ODPA-ODA type polyetherimide-based carbon membranes by chemical crosslinking, J. Appl. Polym. Sci., 134 (2017) 44889, doi: 10.1002/app.44889.
  28. J. Yin, J. Zhou, Novel polyethersulfone hybrid ultrafiltration membrane prepared with SiO2-g-(PDMAEMA-co-PDMAPS) and its antifouling performances in oil-in-water emulsion application, Desalination, 365 (2015) 46–56.
  29. X. Li, C. Bian, W. Chen, J. He, Z. Wang, N. Xu, G. Xue, Polyaniline on surface modification of diatomite: a novel way to obtain conducting diatomite fillers, Appl. Surf. Sci., 207 (2003) 378–383.
  30. H.J. Yeom, S.C. Kim, Y.W. Kim, I.H. Song, Processing of alumina-coated clay–diatomite composite membranes for oily wastewater treatment, Ceram. Int., 42 (2016) 5024–5035.
  31. L. Zhu, M. Chen, Y. Dong, C.Y. Tang, A. Huang, L. Li, A low-cost mullite-titania composite ceramic hollow fiber microfiltration membrane for highly efficient separation of oil-in-water emulsion, Water Res., 90 (2016) 277–285.
  32. B. Chakrabarty, A.K. Ghoshal, M.K. Purkait, Cross-flow ultrafiltration of stable oil-in-water emulsion using polysulfone membranes, Chem. Eng. J., 165 (2010) 447–456.
  33. N. Baig, F.I. Alghunaimi, H.S. Dossary, T.A. Saleh, Superhydrophobic and superoleophilic carbon nanofiber grafted polyurethane for oil-water separation, Process Saf. Environ., 123 (2019) 327–334.
  34. M.A.M. Khraisheh, Y.S. Al-degs, W.A.M. McMinn, Remediation of wastewater containing heavy metals using raw and modified diatomite, Chem. Eng. J., 99 (2004) 177–184.
  35. G. Yi, S. Chen, X. Quan, G. Wei, X. Fan, H. Yu, Enhanced separation performance of carbon nanotube–polyvinyl alcohol composite membranes for emulsified oily wastewater treatment under electrical assistance, Sep. Purif. Technol., 197 (2018) 107–115.
  36. S. Emani, R. Uppaluri, M.K. Purkait, Microfiltration of oil–water emulsions using low cost ceramic membranes prepared with the uniaxial dry compaction method, Ceram. Int., 40 (2014) 1155–1164.
  37. B. Das, B. Chakrabarty, P. Barkakati, Separation of oil from oily wastewater using low cost ceramic membrane, Korean J. Chem. Eng., 34 (2017) 2559–2569.
  38. G. Shi, Y. Shen, P. Mu, Q. Wang, Y. Yang, S. Ma, J. Li, Effective separation of surfactant-stabilized crude oil-in-water emulsions by using waste brick powder-coated membranes under corrosive conditions, Green Chem., 22 (2020) 1345–1352.
  39. M. Abbasi, R.S. Mohammad, A. Salahi, B. Mirza, Modeling of membrane fouling and flux decline in microfiltration of oily wastewater using ceramic membranes, Chem. Eng. Commun., 199 (2012) 78–93.
  40. P. Castejón, D. Arencón, M. Antunes, V. Realinho, J.I. Velasco, A.B. Martínez, Porous membranes based on polypropyleneethylene copolymers. Influence of temperature on extrusion, annealing and uniaxial strain stages, Polymers, 10 (2018) 10080854, doi: 10.3390/polym10080854.
  41. Z. Rui, J.B. James, Y.S. Lin, Highly CO2 perm-selective metal-organic framework membranes through CO2 annealing posttreatment, J. Membr. Sci., 555 (2018) 97–104.
  42. C. Yin, Z. Wang, Y. Luo, J. Li, Y. Zhou, X. Zhang, H. Zhang, P. Fang, C. He, Thermal annealing on free volumes, crystallinity and proton conductivity of Nafion membranes, J. Phys. Chem. Solids, 120 (2018) 71–78.
  43. L.T. Choong, Y.M. Lin, G.C. Rutledge, Separation of oil-in-water emulsions using electrospun fiber membranes and modeling of the fouling mechanism, J. Membr. Sci., 486 (2015) 229–238.