References

  1. Available at: https://www.prnewswire.com/news-releases/global-surfactants-market-report-2019–2025-with-profiles-ofmajor-companies--industry-guide-with-contact-details-of-100- companies-300958520.html (accessed March 25, 2020).
  2. S.K. Mofrad, A.H.S. Dehaghani, An experimental investigation into enhancing oil recovery using smart water combined with anionic and cationic surfactants in carbonate reservoir, Energy Rep., 6 (2020) 543–549.
  3. A.M. Carmona-Ribeiro, L.D. de Melo Carrasco, Cationic antimicrobial polymers and their assemblies, Int. J. Mol. Sci., 14 (2013) 9906–9946.
  4. Y. Chen, A. Elhag, B. Poon, L. Cui, K. Ma, S. Liao, P. Reddy, A. Worthen, G. Hirasaki, Q. Nguyen, S. Biswal, K. Johnston, Switchable nonionic to cationic ethoxylated amine surfactants for CO2 enhanced oil recovery in high-temperature, highsalinity carbonate reservoirs, SPE J., 19 (2014) 249–259.
  5. F.E. Friedli, H.J. Koehle, M. Fender, M. Watts, R. Keys, P. Frank, C.J. Toney, M. Doerr, Upgrading triethanolamine esterquat performance to new levels, J. Surfactants Deterg., 5 (2002) 211–216.
  6. M. Naz, J. Ali, S. Fatima, S. Tabassum, S. Nawaz, A. Badshah, H. Dou, Cationic surfactants based on ferrocene containing thiourea: synthesis, self-aggregation, and antioxidant properties, Colloids Surf., A, 597 (2020) 124760, 1–9, doi: 10.1016/j.colsurfa.2020.124760.
  7. S. Rawat, G. Joshi, D. Annapurna, A.N. Arunkumar, N.N. Karaba, Standardization of DNA extraction method from mature dried leaves and ISSR-PCR conditions for Melia dubia Cav.—a fast growing multipurpose tree species, Am. J. Plant Sci., 7 (2016) 437–445.
  8. H. Hidaka, T. Oyama, T. Horiuchi, T. Koike, N. Serpone: photoinduced oxidative synergistic degradation of mixed anionic/ cationic surfactant systems in aqueous dispersions. A detailed study of the DBS/HTAB system, Appl. Catal., B, 99 (2010) 485–489.
  9. O. Kaczerewska, R. Martins, J. Figueiredo, S. Loureiro, J. Tedim, Environmental behaviour and ecotoxicity of cationic surfactants towards marine organisms, J. Hazard. Mater., 392 (2020) 122299, 1–9, doi: 10.1016/j.jhazmat.2020.122299.
  10. M. Visa, A. Duta, TiO2/fly ash novel substrate for simultaneous removal of heavy metals and surfactants, Chem. Eng. J., 223 (2013) 860–868.
  11. Ordinance of the Minister of Construction on the Manner of Implementing the Obligations of Industrial Wastewater Suppliers and the Conditions for Introducing Wastewater into Sewage Systems, Journal of Laws of 2016, Item 1757 (in Polish).
  12. C.O.C. Nascimento, M.T. Veit, S.M. Palácio, G.C. Gonçalves, M.R. Fagundes-Klen, Combined application of coagulation/ flocculation/sedimentation and membrane separation for the treatment of laundry wastewater, Int. J. Chem. Eng., 2019 (2019) 1–13.
  13. A.K. Kumar, N. Rawat, P. Ghosh, Removal and recovery of a cationic surfactant from its aqueous solution by foam fractionation, J. Environ. Chem. Eng., 8 (2019) 103555, 1–10, doi: 10.1016/j.jece.2019.103555.
  14. M. Sanchez, M.J. Rivero, I. Ortiz, Photocatalytic oxidation of grey water over titanium dioxide suspensions, Desalination, 262 (2010) 141–146.
  15. Q. Gao, F. Wu, J. Hu, W. Chen, X. Zhang, X. Guo, B. Wang, X. Wang, Chemical composition-dependent removal of cationic surfactants by carbon nanotubes, Sci. Total Environ., 716 (2020) 137017, 1–7, doi: 10.1016/j.scitotenv.2020.137017.
  16. S. Valizadeh, H. Younesi, N. Bahramifar, Highly mesoporous K2CO3 and KOH/activated carbon for SDBS removal from water samples: batch and fixed-bed column adsorption process, Environ. Nanotechnol. Monit. Manage., 6 (2016) 1–13.
  17. A.A. Siyal, M.R. Shamsuddin, A. Low, N.E. Rabat, A review on recent developments in the adsorption of surfactants from wastewater, J. Environ. Manage., 254 (2020) 109797, 1–14, doi: 10.1016/j.jenvman.2019.109797.
  18. W.B. Yang, M. Xia, A. Li, L. Yang, Q. Zhang, Adsorption of branched alkylbenzene sulfonate onto styrene and acrylic ester resins, Chemosphere, 64 (2006) 984–990.
  19. W.B. Yang, M. Xia, A. Li, L. Yang, Q. Zhang, Mechanism and behavior of surfactant adsorption onto resins with different matrices, React. Funct. Polym., 67(2007) 609–616.
  20. F. Schuricht, E.S. Borovinskaya, W. Reschetilowski, Removal of perfluorinated surfactants from wastewater by adsorption and ion exchange - influence of material properties, sorption mechanism and modeling, J. Environ. Sci., 54 (2017) 160–170.
  21. E. Fernández, J.M. Benito, C. Pazos, J. Coca, Ceramic membranes ultrafiltration of anionic and nonionic surfactant solutions, J. Membr. Sci., 246 (2005) 1–6.
  22. J. Guilbaud, A. Masśe, Y. Andŕes, F. Combe, P. Jaouen, Laundry water recycling in ship by direct nanofiltration with tubular membranes, Resour. Conserv. Recycl., 55 (2010) 148–154.
  23. B. Wendler, B. Goers, G. Wozny, Nanofiltration of solutions containing surfactants - prediction of flux decline and modelling of mass transfer, Desalination, 147 (2002) 217–221.
  24. S. Šostar-Turk, I. Petrinic, M. Simonič, Laundry wastewater treatment using coagulation and membrane filtration, Resour. Conserv. Recycl., 44 (2005) 185–196.
  25. I. Ciabattia, F. Cesaro, L. Faralli, E. Fatarella, F. Tognotti, Demonstration of a treatment system for purication and reuse of laundry wastewater, Desalination, 245 (2009) 451–459.
  26. A. Efligenir, S. Déon, P. Fievet, C. Druart, N. Morin-Crini, G. Crini, Decontamination of polluted discharge waters from surface treatment industries by pressure-driven membranes: removal performances and environmental impact, Chem. Eng. J., 258 (2014) 309–319.
  27. N. Hilal, H. Al-Zoubi, N.A. Darwish, A.W. Mohammad, Characterisation of nanofiltration membranes using atomic force microscopy, Desalination, 177 (2005) 187–199.
  28. A. Klimonda, I. Kowalska, Application of polymeric membranes for the purification of solutions containing cationic surfactants, Water Sci. Technol., 79(2019) 1241–1252.
  29. A. Klimonda, I. Kowalska, Purification and concentration of surfactant solutions using tubular nanofiltration modules, Desal. Water Treat., 128 (2018) 222–227.
  30. A. Zagorodni, Ion Exchange Materials: Properties and Applications, Elsevier Science, Amsterdam, 2007.