References

  1. H. Zollinger, Coulour-Synthesis, Properties and Applications of Organic Dyes and Pigments, VCH Publishers, New York, 1987.
  2. S.J. Allen, K.Y.H. Khader, M. Bino, Electrooxidation of dyestuffs in waste waters, J. Chem. Technol. Biotechnol., 62 (1995) 111–117.
  3. R. Gong, Y. Sun, J. Chen, H. Liu, Ch. Yang, Effect of chemical modification on dye adsorption capacity of peanut hull, Dyes Pigm., 67 (2005) 175–181.
  4. K.-C. Chen, J.-Y. Wu, C.-C. Huang, Y.-M. Liang, Sz-C. John Hwang, Decolorization of azo dye using
    PVA-immobilized microorganisms, J. Biotechnol., 101 (2003) 241–252.
  5. C.A. Martínez-Huitle, E. Brillas, Decontamination of wastewaters containing synthetic organic dyes by electrochemical methods: a general review, Appl. Catal., B, 87 (2009) 105–145.
  6. S. Tsuda, N. Matsusaka, H. Madarame, The comet assay in eight mouse organs: result with 24 azo compounds, Mutat. Res., 465 (2000) 11–26.
  7. S. Hussain, N. Khan, S. Gul, S. Khan, H. Khan, Contamination of Water Resources by Food Dyes and Its Removal Technologies, M. Eyvaz, E. Yüksel, Ed., Water Chemistry, InTechOpen, 2019.
  8. M. Panizza, M.A. Oturan, Degradation of Alizarin Red by electro-Fenton process using a graphite-felt cathode, Electrochim. Acta, 56 (2011) 7084–7087.
  9. P.N. Dave, S. Kaur, E. Khosla, Removal of Eriochrome Black-T by adsorption on to eucalyptus bark using green technology, Indian J. Chem. Technol., 18 (2011) 53–60.
  10. Y. Men, Z. Li, L. Zhu, X. Wang, S. Cheng, Y. Lyu, New insights into membrane fouling during direct membrane filtration of municipal wastewater and fouling control with mechanical strategies, Sci. Total Environ., 896 (2023) 161775, doi: 10.1016/j.scitotenv.2023.161775.
  11. A.A. Owodunni, S. Ismail, S.B. Kurniawan, A. Ahmad, M.F. Imron, S.R. Sheikh Abdullah, A review on revolutionary technique for phosphate removal in wastewater using green coagulant, J. Water Process. Eng., 52 (2023) 103575, doi: 10.1016/j.jwpe.2023.103573.
  12. R. Xiao, T. Ou, S. Ding, Ch. Fang, Z. Xu, W Chu, Disinfection by-products as environmental contaminants of emerging concern: a review on their occurrence, fate and removal in the urban water cycle, Crit. Rev. Env. Sci. Technol., 53 (2023) 19–46.
  13. P. Shrivastava, M.K. Dwivedi, V. Malviya, P. Jain, A. Yadav, N. Jain, Adsorption of Crystal violet dye from aqueous solution by activated sewage treatment plant sludge, Desal. Water Treat., 283 (2023) 222–236.
  14. E. Brillas, C. Arias, P.-L. Cabot, F. Centellas, J.A. Garrido, R.M. Rodríguez, Degradation of organic contaminants by electrochemical oxidation methods, Port. Electrochem. Acta, 24 (2006) 159–189.
  15. E. Brillas, I. Sires, M. Oturan, Electro-Fenton process and related electrochemical technologies based on Fenton’s reaction chemistry, Chem. Rev., 109 (2009) 6570–6631.
  16. M. Sánchez-Polo, J. López-Peñalver, G. Prados-Joya, M.A. Ferro-García, J. Rivera-Utrilla, Gamma irradiation of pharmaceutical compounds, nitroimidazoles, as a new alternative for water treatment, Water Res., 43 (2009) 4028–4036.
  17. I. Sirés, E. Brillas, Remediation of water pollution caused by pharmaceutical residues based on electrochemical separation and degradation technologies: a review, Environ. Int., 40 (2012) 212–229.
  18. J. Herny-Ramirez, F.M. Duarte, F.G. Martins, C.A. Costa, L.M. Madeira, Modelling of the synthetic dye Orange II degradation using Fenton’s reagent: from batch to continuous reactor operation, Chem. Eng. J., 148 (2008) 394–404.
  19. E. Rosales, M. Pazos, M.A. Longo, M.A. Sanroman, Electro- Fenton decoloration of dyes in a continuous reactor: a promising technology in colored wastewater treatment, Chem. Eng. J., 155 (2009) 62–67.
  20. M. Panizza, G. Cerisola, Electro-Fenton degradation of synthetic dyes, Water Res., 43 (2009) 339–344.
  21. M.M. Ghoneim, H.S. El-Desoky, N.M. Zidan, Electro-Fenton oxidation of Sunset Yellow FCF azo-dye in aqueous solutions, Desalination, 274 (2011) 22–30.
  22. T.X. Huong Le, C. Charmette, M. Bechelany, M. Cretin, Facile preparation of porous carbon cathode to eliminate paracetamol in aqueous medium using electro-Fenton system, Electrochim. Acta, 188 (2016) 378–384.
  23. A. Dirany, I. Sires, N. Oturan, M.A. Oturan, Electrochemical abatement of the antibiotic sulfamethoxazole from water, Chemosphere, 81 (2010) 594–602.
  24. A.L. Estrada, Y.Y. Li, A. Wang, Biodegradability enhancement of wastewater containing cefalexin by means of the electro-Fenton oxidation process, J. Hazard. Mater., 227–228 (2012) 41–48.
  25. A. Ȍzcan, Y. Şahin, M.A. Oturan, Complete removal of the insecticide azinphosmethyl from water by the electro- Fenton method – a kinetic and mechanistic study, Water Res., 47 (2013) 1470–1479.
  26. H. Belbel, R. Delimi, Z. Benredjem, T. Tayebi, Use of metallurgical waste as a catalyst in electro-Fenton process for degradation of dyes from aqueous solution, Desal. Water Treat., 273 (2022) 261–269.
  27. S. Bae, K. Dongwook, L. Woojin, Degradation of diclofenac by pyrite catalysed Fenton oxidation, Appl. Catal., B, 134–135 (2013) 93–102.
  28. N. Barhoumi, L. Labiadh, M.A. Oturan, N. Oturan, A. Gadri, S. Ammar, E. Brillas, Electrochemical mineralization of the antibiotic levofloxacin by electo-Fenton-pyrite process, Chemosphere, 141 (2015) 250–257.
  29. W.P. Kwan, B.M. Voelker, Rates of hydroxyl radical generation and organic compound oxidation in mineral-catalyzed Fenton-like systems, Environ. Sci. Technol., 37 (2003) 1150–1158.
  30. O. Ganzenko, N. Oturan, D. Huguenot, E.D. van Hullebusch, G. Esposito, M.A. Oturan Removal of psychoactive pharmaceutical caffeine from water by electro-Fenton process using BDD anode: effects of operating parameters on removal efficiency, Sep. Purif. Technol., 156 (2015) 987–995.
  31. A. Ȍzcan, Y. Şahin, A.S. Koparal, M.A. Oturan, Carbon sponge as a new cathode material for the electro-Fenton process: comparison with carbon felt cathode and application to degradation of synthetic dye Basic Blue 3 in aqueous medium, J. Electroanal. Chem., 616 (2008) 71–78.
  32. B. Hou, H. Han, S. Jia, H. Zhuang, P. Xu, D. Wang, Heterogeneous electro-Fenton oxidation of catechol catalyzed by nano-Fe3O4: kinetics with the Fermi’s equation, J. Taiwan Inst. Chem. Eng., 56 (2015) 138–147.
  33. P. Nazari, N. Askari, S.R. Setayesh, Oxidation-precipitation of magnetic Fe3O4/AC nanocomposite as a heterogeneous catalyst for electro-Fenton treatment, Chem. Eng. Commun., 207 (2020) 665–675.
  34. Q. Tian, F. Xiao, H. Zhao, X. Fei, X. Shen, G. Postole, G. Zhao, Simultaneously accelerating the regeneration of FeII and the selectivity of 2e– oxygen reduction over sulfide iron-based carbon aerogel in electro-Fenton system, Appl. Catal., B, 272 (2020) 119039, doi: 10.1016/j.apcatb.2020.119039.
  35. E. Expósito, C.M. Sánchez-Sánchez, V. Montiel, Mineral iron oxides as iron source in electro-Fenton and photoelectro-Fenton mineralization processes, J. Electrochem. Soc., 154 (2007) 116–122.
  36. S.O. Ganiyu, M. Zhou, C.A. Martínez-Huitle, Heterogeneous electro-Fenton and photoelectro-Fenton processes: a critical review of fundamental principles and application for water/ wastewater treatment, Appl. Catal., B, 235 (2018) 103–129.
  37. K. Barbari, R. Delimi, Z. Benredjem, S. Saaidia, A. Djemel, T. Chouchane, N. Oturan, M.A. Oturan, Photocatalycallyassisted electrooxidation of herbicide fenuron using a new bifunctional electrode
    PbO2/SnO2-Sb2O3/Ti//Ti/TiO2, Chemosphere, 203 (2018) 1–10.
  38. M. Diagne, N. Oturan, M.A. Oturan, Removal of methyl parathion from water by electrochemically generated Fenton’s reagent, Chemosphere, 66 (2007) 841–848.
  39. N. Oturan, M.A. Oturan, Chapter 8 – Electro-Fenton Process: Background, New Developments, and Applications, C.A. Martínez-Huitle, M.A. Rodrigo, O. Scialdone, Eds., Electrochemical Water and Wastewater Treatment, Butterworth- Heinemann, 2018, pp. 193–221.
  40. S. Saaidia, R. Delimi, Z. Benredjem, A. Mehellou, A. Djemel, K. Barbari, Use of a PbO2 electrode of a lead-acid battery for the electrochemical degradation of methylene blue, Sep. Sci. Technol., 52 (2017) 1602–1614.
  41. M.F. Murrieta, E. Brillas, J.L. Nava, I. Sirés, Photo-assisted electrochemical production of HClO and Fe2+ as Fenton-like reagents in chloride media for sulfamethoxazole degradation, Sep. Purif. Technol., 250 (2020) 117236, doi: 10.1016/j.seppur.2020.117236.
  42. P.V. Nidheesh, R. Gandhimathi, Trends in electro-Fenton process for water and wastewater treatment: an overview, Desalination, 299 (2012) 1–15.
  43. H. Zazou, N. Oturan, H. Zhang, M. Hamdani, M.A. Oturan, Comparative study of electrochemical oxidation of herbicide 2,4,5-T: kinetics, parametric optimization and mineralization pathway, Sustainable Environ. Res., 27 (2017) 15–23.
  44. E. Brillas, C. Martínez-Huitle, Decontamination of wastewaters containing synthetic organic dyes by electrochemical methods. An updated review, Appl. Catal., B, 166–167 (2015) 603–643.