References

  1. G. Moussavi, M. Mahmoudi, Degradation and biodegradability improvement of the reactive red 198 azo dye using catalytic ozonation with MgO nanocrystals, Chem. Eng. J., 152 (2009) 1–7.
  2. S. Mozia, M. Tomaszewska, A.W. Morawski, A new photocatalytic membrane reactor (PMR) for removal of azo-dye Acid Red 18 from water, Appl. Catal., B, 59 (2005) 131–137.
  3. A.R. Rahmani, F.B. Askari, G. Asgari, M.T. Samadi, Degradation of reactive red 198 dye by catalytic ozonation using pumice and copper coated pumice, Fresenius Environ. Bull., 21 (2012) 2810–2817.
  4. M. Malakootian, Z. Darabi-Fard, N. Amirmahani, A. Nasiri, Evaluation of arsenic, copper, lead, cadmium, and iron concentration in drinking water resources of central and Southern Bardsir plain, Iran, in 2014, J. Kerman Univ. Med. Sci., 22 (2015) 542–554.
  5. F. Bahrami-asl, M. Kermani, S. Salahshour-Arian, M. Mollamahmoudi- Abadi, D. Zeynalzadeh, Catalytic ozonation of azo dye Reactive Red 120 in the presence of MgO nanoparticles, J. Health Field, 2 (2017).
  6. B. Krishnakumar, M. Swaminathan, Influence of operational parameters on photocatalytic degradation of a genotoxic azo dye Acid Violet 7 in aqueous ZnO suspensions, Spectrochim. Acta, Part A, 81 (2011) 739–744.
  7. Y. Pan, T. Zhu, Z. He, Enhanced removal of azo dye by a bioelectrochemical system integrated with a membrane biofilm reactor, Ind. Eng. Chem. Res., 57 (2018) 16433–16441.
  8. Y. Liu, K. Li, W. Xu, B. Du, Q. Wei, B. Liu, D. Wei, GO/PEDOT: NaPSS modified cathode as heterogeneous electro-Fenton pretreatment and subsequently aerobic granular sludge biological degradation for dye wastewater treatment, Sci. Total Environ., 700 (2020), https://doi.org/10.1016/J.SCITOTENV.2019.134536.
  9. M. Kafil, S.B. Nasab, H. Moazed, J. Jokiniemi, A. Lahde, A. Bhatnagar, Efficient removal of azo dyes from water with chitosan/carbon nanoflower as a novel nanocomposite synthesized by pyrolysis technique, Desal. Wat. Treat., 142 (2019) 308–320.
  10. N.C. Fernandes, L.B. Brito, G.G. Costa, S.F. Taveira, M.S.S. Cunha–Filho, G.A.R. Oliveira, R.N. Marreto, Removal of azo dye using Fenton and Fenton-like processes: evaluation of process factors by Box–Behnken design and ecotoxicity tests, Chem. Biol. Interact., 291 (2018) 47–54.
  11. S. Karcher, A. Kornmüller, M. Jekel, Anion exchange resins for removal of reactive dyes from textile wastewaters, Water Res., 36 (2002) 4717–4724.
  12. S.N. Jain, P.R. Gogate, Adsorptive removal of azo dye in a continuous column operation using biosorbent based on NaOH and surfactant activation of Prunus dulcis leaves, Desal. Wat. Treat., 141 (2019) 331–341.
  13. S.P. Santoso, A. Kurniawan, F.E. Soetaredjo, K.-C. Cheng, J.N. Putro, S. Ismadji, Y.-H. Ju, Eco-friendly cellulose–bentonite porous composite hydrogels for adsorptive removal of azo dye and soilless culture, Cellulose, 26 (2019) 3339–3358.
  14. R. Jiang, H.-Y. Zhu, S.-T. Jiang, Y.-Q. Fu, E.-M. Zong, J.-B. Li, G.-M. Zeng, Magnetically separable Fe3O4/BiOBr microspheres: synthesis, characterization, and photocatalytic performance for removal of anionic azo dye, Environ. Eng. Sci., 36 (2019) 466–477.
  15. L. Kőrösi, B. Bognár, S. Bouderias, A. Castelli, A. Scarpellini, L. Pasquale, M. Prato, Highly-efficient photocatalytic generation of superoxide radicals by phase-pure rutile TiO2 nanoparticles for azo dye removal, Appl. Surf. Sci., 493 (2019) 719–728.
  16. A. Khosravi, Z.H. Rad, N. Amirmahani, A. Nasiri, M. Malakootian, The application of electrolysis method to disinfect water contaminated by Salmonella and Shigella, J. Water Chem. Technol., 41 (2019) 182–187.
  17. H. Mahdizadeh, M. Malakootian, Optimization of ciprofloxacin removal from aqueous solutions by a novel semi-fluid Fe/charcoal micro-electrolysis reactor using response surface methodology, Process Saf. Environ. Prot., 123 (2019) 299–308.
  18. M. Malakootian, K. Kannan, M.A. Gharaghani, A. Dehdarirad, A. Nasiri, Y.D. Shahamat, H. Mahdizadeh, Removal of metronidazole from wastewater by Fe/charcoal micro electrolysis fluidized bed reactor, J. Environ. Chem. Eng., 7 (2019) 103457.
  19. J. Liu, Q. Yin, H. Zhang, Y. Yan, Z. Yi, Continuous removal of Cr(VI) and Orange II over a novel Fe0-NaA zeolite membrane catalyst, Sep. Purif. Technol., 209 (2019) 734–740.
  20. M. Malakootian, H. Mahdizadeh, A. Dehdarirad, M. Amiri Gharghani, Photocatalytic ozonation degradation of ciprofloxacin using ZnO nanoparticles immobilized on the surface of stones, J. Dispersion Sci. Technol., 40 (2019) 846–854.
  21. S. Jiménez, M. Andreozzi, M.M. Micó, M.G. Álvarez, S. Contreras, Produced water treatment by advanced oxidation processes, Sci. Total Environ., 666 (2019) 12–21.
  22. G. Moussavi, A. Khavanin, R. Alizadeh, The investigation of catalytic ozonation and integrated catalytic ozonation/biological processes for the removal of phenol from saline wastewaters, J. Hazard. Mater., 171 (2009) 175–181.
  23. M. Malakootian, M. Khatami, H. Mahdizadeh, A. Nasiri, M. Amiri Gharaghani, A study on the photocatalytic degradation of p-nitroaniline on glass plates by thermo-immobilized ZnO nanoparticle, Inorg. Nano-Metal Chem., 50 (2019) 1–12.
  24. M. Malakootian, A. Nasiri, M. Amiri Gharaghani, Photocatalytic degradation of ciprofloxacin antibiotic by TiO2 nanoparticles immobilized on a glass plate, Chem. Eng. Commun., 207 (2020) 56–72.
  25. M. Malakootian, A. Nasiri, A. Asadipour, M. Faraji, E. Kargar, A facile and green method for synthesis of ZnFe2O4@CMC as a new magnetic nanophotocatalyst for ciprofloxacin removal from aqueous media, MethodsX, 6 (2019) 1575–1580.
  26. M. Malakootian, A. Nasiri, A. Asadipour, E. Kargar, Facile and green synthesis of ZnFe2O4@CMC as a new magnetic nanophotocatalyst for ciprofloxacin degradation from aqueous media, Process Saf. Environ. Prot., 129 (2019) 138–151.
  27. A. Nasiri, F. Tamaddon, M.H. Mosslemin, M. Faraji, A microwave assisted method to synthesize nanoCoFe2O4@methyl cellulose as a novel metal-organic framework for antibiotic degradation, MethodsX, 6 (2019) 1557–1563.
  28. A. Nasiri, F. Tamaddon, M.H. Mosslemin, M.A. Gharaghani, A. Asadipour, New magnetic nanobiocomposite CoFe2O4@methycellulose: facile synthesis, characterization, and photocatalytic degradation of metronidazole, J. Mater. Sci. - Mater. Electron., 30 (2019) 8595–8610.
  29. M. Malakootian, A. Nasiri, A.N. Alibeigi, H. Mahdizadeh, M.A. Gharaghani, Synthesis and stabilization of ZnO nanoparticles on a glass plate to study the removal efficiency of Acid Red 18 by hybrid advanced oxidation process (ultraviolet/ZnO/ultrasonic), Desal. Wat. Treat., 170 (2019) 325–336.
  30. A.K. Arora, V.S. Jaswal, K. Singh, R. Singh, Applications of metal/mixed metal oxides as photocatalyst: a review, Orient. J. Chem., 32 (2016) 2035–2042.
  31. N. Sobana, M. Swaminathan, The effect of operational parameters on the photocatalytic degradation of Acid Red 18 by ZnO, Sep. Purif. Technol., 56 (2007) 101–107.
  32. D. Rajamanickam, M. Shanthi, Photocatalytic degradation of an organic pollutant by zinc oxide–solar process, Arabian J. Chem., 9 (2016) S1858–S1868.
  33. S. Saeid, P. Tolvanen, N. Kumar, K. Eränen, J. Peltonen, M. Peurla, J.-P. Mikkola, A. Franz, T. Salmi, Advanced oxidation process for the removal of ibuprofen from aqueous solution: a non-catalytic and catalytic ozonation study in a semi-batch reactor, Appl. Catal., B, 230 (2018) 77–90.
  34. E. Rahimi, Y.D. Shahamat, B. Kamarehei, A. Zafarzadeh, M. Khani, Rapid decolorization and mineralization of molasses by catalytic ozonation process with a nanocomposite from fermentation industry wastewater, Int. J. Environ. Sci. Technol., 15 (2018) 1941–1948.
  35. N. Daneshvar, D. Salari, A. Khataee, Photocatalytic degradation of azo dye acid red 14 in water on ZnO as an alternative catalyst to TiO2, J. Photochem. Photobiol., A, 162 (2004) 317–322.
  36. A. Ikhlaq, D.R. Brown, B. Kasprzyk-Hordern, Catalytic ozonation for the removal of organic contaminants in water on alumina, Appl. Catal., B, 165 (2015) 408–418.
  37. D.R. Vakilabadi, A.H. Hassani, G. Omrani, B. Ramavandi, Catalytic potential of Cu/Mg/Al-chitosan for ozonation of real landfill leachate, Process Saf. Environ. Prot., 107 (2017) 227–237.
  38. E. Darezereshki, M. Alizadeh, F. Bakhtiari, M. Schaffie, M. Ranjbar, A novel thermal decomposition method for the synthesis of ZnO nanoparticles from low concentration ZnSO4 solutions, Appl. Clay Sci., 54 (2011) 107–111.
  39. M.I. Khalil, M.M. Al-Qunaibit, A.M. Al-Zahem, J.P. Labis, Synthesis and characterization of ZnO nanoparticles by thermal decomposition of a curcumin zinc complex, Arabian J. Chem., 7 (2014) 1178–1184.
  40. J. Yu, X. Yu, Hydrothermal synthesis and photocatalytic activity of zinc oxide hollow spheres, Environ. Sci. Technol., 42 (2008) 4902–4907.
  41. S. Kundu, A. Pal, A.K. Dikshit, UV induced degradation of herbicide 2, 4-D: kinetics, mechanism and effect of various conditions on the degradation, Sep. Purif. Technol., 44 (2005) 121–129.
  42. J. Staehelin, R. Buehler, J. Hoigné, Ozone decomposition in water studied by pulse radiolysis. 2. Hydroxyl and hydrogen tetroxide (HO4) as chain intermediates, J. Phys. Chem., 88 (1984) 5999–6004.
  43. T.A. Kurniawan, W.-h. Lo, G. Chan, Radicals-catalyzed oxidation reactions for degradation of recalcitrant compounds from landfill leachate, Chem. Eng. J., 125 (2006) 35–57.
  44. A. Ikhlaq, D.R. Brown, B. Kasprzyk-Hordern, Catalytic ozonation for the removal of organic contaminants in water on ZSM-5 zeolites, Appl. Catal., B, 154–155 (2014) 110–122.
  45. A. Hassani, A. Khataee, M. Fathinia, S. Karaca, Photocatalytic ozonation of ciprofloxacin from aqueous solution using TiO2/MMT nanocomposite: nonlinear modeling and optimization of the process via artificial neural network integrated genetic algorithm, Process Saf. Environ. Prot., 116 (2018) 365–376.
  46. N.M. Mahmoodi, Photocatalytic ozonation of dyes using copper ferrite nanoparticle prepared by co-precipitation method, Desalination, 279 (2011) 332–337.
  47. Z. Bai, Q. Yang, J. Wang, Catalytic ozonation of sulfamethazine using Ce0.1Fe0.9OOH as catalyst: mineralization and catalytic mechanisms, Chem. Eng. J., 300 (2016) 169–176.
  48. V. Vaiano, M. Matarangolo, J. Murcia, H. Rojas, J. Navío, M. Hidalgo, Enhanced photocatalytic removal of phenol from aqueous solutions using ZnO modified with Ag, Appl. Catal., B, 225 (2018) 197–206.
  49. A. Khataee, M. Kıranşan, S. Karaca, M. Sheydaei, Photocatalytic ozonation of metronidazole by synthesized zinc oxide nanoparticles immobilized on montmorillonite, J. Taiwan Inst. Chem. Eng., 74 (2017) 196–204.
  50. S. Pirgalıoğlu, T.A. Özbelge, Comparison of non-catalytic and catalytic ozonation processes of three different aqueous single dye solutions with respect to powder copper sulfide catalyst, Appl. Catal., A, 363 (2009) 157–163.
  51. B. Kasprzyk-Hordern, M. Ziółek, J. Nawrocki, Catalytic ozonation and methods of enhancing molecular ozone reactions in water treatment, Appl. Catal., B, 46 (2003) 639–669.
  52. J.B. Parsa, M. Golmirzaei, M. Abbasi, Degradation of azo dye C.I. Acid Red 18 in aqueous solution by ozone-electrolysis process, J. Ind. Eng. Chem., 20 (2014) 689–694.
  53. R. Parvarideh, S. Karimzadeh, H. Khorsandi, S. Jafari, A. Aghapour, A comparison of single and catalytic ozonation for decolorization of malachite green, Desal. Wat. Treat, 152 (2019) 411–418.
  54. A. Zuorro, R. Lavecchia, Evaluation of UV/H2O2 advanced oxidation process (AOP) for the degradation of diazo dye Reactive Green 19 in aqueous solution, Desal. Wat. Treat, 52 (2014) 1571–1577.
  55. C. Orge, J. Faria, M. Pereira, Photocatalytic ozonation of aniline with TiO2-carbon composite materials, J. Environ. Manage., 195 (2017) 208–215.