References

  1. M.E. Mahmoud, A.E. Abdou, A.K. Shehata, H.M. Header, E.A. Hamed, Behavior of γ-Al2O3-bonded-3-chloropropyltrimethoxysilane nanosorbent toward potential binding and removal of 4-nitroaniline and 2-amino-3-nitro-pyridine from water, J. Mol. Liq., 224 (2016) 1358–1369.
  2. M. Malakootian, M. Pournamdari, A. Asadipour, H. Mahdizadeh, Degradation and removal of p-nitroaniline from aqueous solutions using a novel semi-fluid Fe/charcoal micro-electrolysis reactor, Korean J. Chem. Eng., 36 (2019) 217–225.
  3. A. Saupe, High-rate biodegradation of 3-and 4-nitroaniline, Chemosphere, 39 (1999) 2325–2346.
  4. J.H. Sun, S.P. Sun, M.H. Fan, H.Q. Guo, L.P. Qiao, R.X. Sun, A kinetic study on the degradation of p-nitroaniline by Fenton oxidation process, J. Hazard. Mater., 148 (2007) 172–177.
  5. M. Malakootian, M.H. Ehrampoush, H. Mahdizadeh, A. Golpayegani, Comparison studies of raw and oxidized multi-walled carbon nanotubes H2SO4/HNO3 to remove p-nitroaniline from aqueous solution, J. Water Chem. Technol., 40 (2018) 327–333.
  6. M. Afsharnia, H. Biglari, A. Javid, F. Zabihi, Removal of reactive black 5 dye from aqueous solutions by adsorption onto activated carbon of grape seed, Iran. J. Health Sci., 5 (2017) 48–61.
  7. M. Malakootian, H. Mahdizadeh, M. Khavari, A. Nasiri, M.A. Gharaghani, M. Khatami, E. Sahle-Demessie, R.S.Varma, Efficiency of novel Fe/charcoal/ultrasonic micro-electrolysis strategy in the removal of Acid Red 18 from aqueous solutions, J. Environ. Chem. Eng., 8 (2020) 103553, doi: 10.1016/j.jece.2019. 103553.
  8. 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.
  9. 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, doi: 10.1016/j.jece.2019.103457.
  10. A. Khalid, M. Arshad, D.E. Crowley, Biodegradation potential of pure and mixed bacterial cultures for removal of 4-nitroaniline from textile dye wastewater, Water Res., 43 (2009) 1110–1116.
  11. J. Mohamadiyan, G. Shams-Khoramabadi, S.A. Mousavi, B. Kamarehie, Y. Dadban Shahamat, H. Godini, Aniline degradation using advanced oxidation process by UV/Peroxy disulfate from aqueous solution, Int. J. Eng., 30 (2017) 684–690.
  12. 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 (2020) 124–135.
  13. A. Ikhlaq, H.M.S. Munir, A. Khan, F. Javed, K.S. Joya, Comparative study of catalytic ozonation and Fenton-like processes using iron-loaded rice husk ash as catalyst for the removal of methylene blue in wastewater, Ozone Sci. Eng., 41 (2019) 250–260.
  14. A. Ikhlaq, F. Javed, A. Akram, A. Rehman, F. Qi, M. Javed, M.J. Mehdi, F. Waheed, S. Naveed, H.A. Aziz, et al., Synergic catalytic ozonation and electroflocculation process for the treatment of veterinary pharmaceutical wastewater in a hybrid reactor, J. Water Process Eng., 38 (2020) 101597, doi: 10.1016/j. jwpe.2020.101597.
  15. Y. Dadban Shahamat, M. Farzadkia, S. Nasseri, A.H. Mahvi, M. Gholami, A. Esrafili, Magnetic heterogeneous catalytic ozonation: a new removal method for phenol in industrial wastewater, J. Environ. Health Sci. Eng., 12 (2014) 1–12, doi: 10.1186/2052-336X-12-50.
  16. Y. Dadban Shahamat, M.A. Zazouli, M.R. Zare, N. Mengelizadeh, Catalytic degradation of diclofenac from aqueous solutions using peroxymonosulfate activated by magnetic MWCNTs-CoFe3O4 nanoparticles, RSC Adv., 9 (2019) 16496–16508.
  17. C. Gottschalk, J.A. Libra, A. Saupe, Ozonation of Water and Waste Water: A Practical Guide to Understanding Ozone and its Applications, John Wiley & Sons, Germany, 2009.
  18. K. Ikehata, Y. Li, Chapter 5 - Ozone-Based Processes, S.C. Ameta, R. Ameta, Eds., Advanced Oxidation Processes for Wastewater Treatment, Elsevier S&T Book, Academic Press, Cambridge, MA, ISBN: 978-0-128104996, 2018, pp. 115–134.
  19. M. Malakootian, M. Amiri Gharaghani, A. Dehdarirad, M. Khatami, M. Ahmadian, M.R. Heidari, H. Mahdizadeh, ZnO nanoparticles immobilized on the surface of stones to study the removal efficiency of 4-nitroaniline by the hybrid advanced oxidation process (UV/ZnO/O3), J. Mol. Struct., 1176 (2019) 766–776.
  20. A. Ikhlaq, M. Anis, F. Javed, H. Ghani, H.M.S. Munir, K. Ijaz, Catalytic ozonation for the treatment of municipal wastewater by iron loaded zeolite A, Desal. Water Treat., 152 (2019) 108–115.
  21. H. Mahdizadeh, A. Nasiri, M.A. Gharaghani, G. Yazdanpanah, Hybrid UV/COP advanced oxidation process using ZnO as a catalyst immobilized on a stone surface for degradation of acid red 18 dye, MethodsX, 7 (2020) 101118, doi: 10.1016/j. mex.2020.101118.
  22. M. Kermani, F. Bahrami Asl, M. Farzadkia, A. Esrafili, S. Salahshour Arian, M. Khazaei, Y.D. Shahamat, D. Zeynalzadeh, Heterogeneous catalytic ozonation by Nano-MgO is better than sole ozonation for metronidazole degradation, toxicity reduction, and biodegradability improvement, Des. Water Treat., 57 (2016) 16435–16444.
  23. K. El Hassani, D. Kalnina, M. Turks, B.H. Beakou, A. Anouar, Enhanced degradation of an azo dye by catalytic ozonation over Ni-containing layered double hydroxide nanocatalyst, Sep. Purif. Technol., 210 (2019) 764–774.
  24. Y. Qi, C. Guo, X. Xu, B. Gao, Q. Yue, B. Jiang, Z. Qian, C. Wang, Y. Zhang, Co/Fe and Co/Al layered double oxides ozone catalyst for the deep degradation of aniline: preparation, characterization and kinetic model, Sci. Total Environ., 715 (2020) 136982, doi: 10.1016/j.scitotenv.2020.136982.
  25. Y. Huang, T. Yang, M. Liang, Y. Wang, Z. Xu, D. Zhang, L. Li, Ni-Fe layered double hydroxides catalized ozonation of synthetic wastewater containing Bisphenol A and municipal secondary effluent, Chemosphere, 235 (2019) 143–152.
  26. M. Afsharnia, M. Shams, M. Ghasemi, H. Biglar, S. Salari, A. Moteallemi, Modeling and optimization of fluoride adsorption from aqueous samples by ammonium aluminium sulfate using response surface methodology (RSM), Res. Rep. Fluoride, 52 (2019) 299–318.
  27. A. Aghaeinejad-Meybodi, A. Ebadi, S. Shafiei, A.R. Khataee, M. Rostampour, Modeling and optimization of antidepressant drug fluoxetine removal in aqueous media by ozone/H2O2 process: comparison of central composite design and artificial neural network approaches, J. Taiwan Inst. Chem. Eng., 48 (2015) 40–48.
  28. A.A. Salarian, Z. Hami, N. Mirzaei, S.M. Mohseni, A. Asadi, H. Bahrami, M. Vosoughi, A. Alinejad, M.-R. Zareh, N-doped TiO2 nanosheets for photocatalytic degradation and mineralization of diazinon under simulated solar irradiation: optimization and modeling using a response surface methodology, J. Mol. Liq., 220 (2016) 183–191.
  29. M. Zhang, B. Gao, Y. Yao, M. Inyang, Phosphate removal ability of biochar/MgAl-LDH ultra-fine composites prepared by liquid-phase deposition, Chemosphere, 92 (2013) 1042–1047.
  30. B. Zhu, L. Chen, T. Yan, J. Xu, Y. Wang, M. Chen, H. Jiang, Fabrication of Fe3O4/MgAl-layered double hydroxide magnetic composites for the effective removal of Orange II from wastewater, Water Sci. Technol., 78 (2018) 1179–1188.
  31. C.M. Birdsall, A.C. Jenkins, E. Spadinger, Iodometric determination of ozone, Anal. Chem., 24 (1952) 662–664.
  32. M.H. Dehghani, R.R. Karri, Z.T. Yeganeh, A.H. Mahvi, H. Nourmoradi, M. Salari, A. Zarei, M. Sillanpää, Statistical modelling of endocrine disrupting compounds adsorption onto activated carbon prepared from wood using CCD-RSM and DE hybrid evolutionary optimization framework: comparison of linear vs non-linear isotherm and kinetic parameters, J. Mol. Liq., 302 (2020) 112526, doi: 10.1016/j.molliq.2020.112526.
  33. J. Ma, N.J.D. Graham, Degradation of atrazine by manganesecatalysed ozonation—influence of radical scavengers, Water Res., 34 (2000) 3822–3828.
  34. Y.S. Zhao, C. Sun, J.Q. Sun, R. Zhou, Kinetic modeling and efficiency of sulfate radical-based oxidation to remove p-nitroaniline from wastewater by persulfate/Fe3O4 nanoparticles process, Sep. Purif. Technol., 142 (2015) 182–188.
  35. A.D. Eaton, M.A.H. Franson, American Water Works Association, Water Environment Federation, Standard Methods for the Examination of Water and Wastewater, American Public Health Association, 2005.
  36. D. Datta, Ö. Kerkez Kuyumcu, Ş.S. Bayazit, M. Abdel Salam, Adsorptive removal of malachite green and Rhodamine B dyes on Fe3O4/activated carbon composite, J. Dispersion Sci. Technol., 38 (2017) 1556–1562.
  37. M. Malakootian, A. Nasiri, H. Mahdizadeh, Preparation of CoFe2O4/activated carbon@chitosan as a new magnetic nanobiocomposite for adsorption of ciprofloxacin in aqueous solutions, Water Sci. Technol., 78 (2018) 2158–2170.
  38. R-r. Shan, L.-g. Yan, K. Yang, S.-y. Yu, Y.-f. Hao, H.-q. Yu, B. Du, Magnetic Fe3O4/MgAl-LDH composite for effective removal of three red dyes from aqueous solution, Chem. Eng. J., 252 (2014) 38–46.
  39. Y. Huang, M. Luo, Z. Xu, D. Zhang, L. Li, Catalytic ozonation of organic contaminants in petrochemical wastewater with ironnickel foam as catalyst, Sep. Purif. Technol., 211 (2019) 269–278.
  40. H. Zhang, Y. He, L. Lai, G. Yao, B. Lai, Catalytic ozonation of Bisphenol A in aqueous solution by Fe3O4–MnO2 magnetic composites: performance, transformation pathways and mechanism, Sep. Purif. Technol., 245 (2020) 116449, doi: 10.1016/ j.seppur.2019.116449.
  41. H. Chen, J. Wang, Catalytic ozonation of sulfamethoxazole over Fe3O4/Co3O4 composites, Chemosphere, 234 (2019) 14–24.
  42. P. Yan, J. Shen, L. Yuan, J. Kang, B. Wang, S. Zhao, Z. Chen, Catalytic ozonation by Si-doped α-Fe2O3 for the removal of nitrobenzene in aqueous solution, Sep. Purif. Technol., 228 (2019) 115766, doi: 10.1016/j.seppur.2019.115766.
  43. M. Farzadkia, Y. Dadban Shahamat, S. Nasseri, A.H. Mahvi, M. Gholami, A. Shahryari, Catalytic ozonation of phenolic wastewater: identification and toxicity of intermediates, J. Eng., 2014 (2014) 1–11, doi: 10.1155/2014/520929.
  44. A. Ikhlaq, F. Javed, R. Sohail, M. Kazmi, A. Rehman, F. Qi, Solar photo-catalytic ozonation on γ-alumina for the removal of dyes in wastewater, Int. J. Environ. Sci. Technol., (2020) 1–8, doi: 10.1007/s13762-020-02940-5.
  45. A. Rey, D.H. Quinones, P.M. Álvarez, F.J. Beltrán, P.K. Plucinski, Simulated solar-light assisted photocatalytic ozonation of metoprolol over titania-coated magnetic activated carbon, Appl. Catal., B, 111 (2012) 246–253.
  46. Y. Dadban Shahamat, M. Sadeghi, A. Shahryari, N. Okhovat, F. Bahrami Asl, M.M. Baneshi, Heterogeneous catalytic ozonation of 2, 4-dinitrophenol in aqueous solution by magnetic carbonaceous nanocomposite: catalytic activity and mechanism, Desal. Water Treat., 57 (2016) 20447–2056.
  47. A. Alinejad, H. Akbari, M. Ghaderpoori, A.K. Jeihooni, A. Adibzadeh, Catalytic ozonation process using a MgO nanocatalyst to degrade methotrexate from aqueous solutions and cytotoxicity studies in human lung epithelial cells (A549) after treatment, RSC Adv., 9 (2019) 8204–8214.
  48. Y. Wang, H. Cao, C. Chen, Y. Xie, H. Sun, X. Duan, S. Wang, Metal-free catalytic ozonation on surface-engineered graphene: microwave reduction and heteroatom doping, Chem. Eng. J., 355 (2019) 118–129.
  49. 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.
  50. A.G. Gonçalves, J.J.M. Órfão, M.F.R. Pereira, Catalytic ozonation of sulphamethoxazole in the presence of carbon materials: catalytic performance and reaction pathways, J. Hazard. Mater., 239 (2012) 167–174.