References

  1. M.H. Dehghani, E. Nikfar, A. Zarei, N.M. Esfahani, The effects of US/H2O2 processes on bisphenol-A toxicity in aqueous solutions using Daphnia magna, Desal. Wat. Treat., 68 (2017) 183–189.
  2. M. Qasemi, M. Afsharnia, A. Zarei, A.A. Najafpoor, S. Salari, M. Shams, Phenol removal from aqueous solution using Citrullus colocynthis waste ash, Data Brief, 18 (2018) 620–628.
  3. T. Safabakhsh, H. Pourzamani, Removal of bisphenol A from aqueous solutions using magnetic nanoparticles: investigation of adsorption isotherms, Int. J. Environ. Health Eng., 5 (2016) 25.
  4. B. Kamarehie, S.M. Seifi Tizabi, R. Heydari, A. Jafari, M. Ghaderpoori, M.A. Karami, A. Ghaderpoury, Data on the bisphenol A adsorption from aqueous solutions on PAC and MgO~PAC crystals, Data Brief, 21 (2018) 746–752.
  5. B. Kamarehie, A. Jafari, M. Ghaderpoori, M.A. Karami, K. Mousavi, A. Ghaderpoury, Data on the alizarin red S adsorption from aqueous solutions on PAC, treated PAC, and PAC/ γ≈Fe2O3, Data Brief, 20 (2018) 903–908.
  6. L.G.C. Villegas, N. Mashhadi, M. Chen, D. Mukherjee, K.E. Taylor, N. Biswas, A short review of techniques for phenol removal from wastewater, Curr. Pollut. Rep., 2 (2016) 157–167.
  7. I.T. Cousins, C.A. Staples, G.M. Kleĉka, D. Mackay, A multimedia assessment of the environmental fate of bisphenol A, Hum. Ecol. Risk Assess., 8 (2002) 1107–1135.
  8. B.S. Rubin, Bisphenol A: an endocrine disruptor with widespread exposure and multiple effects, J. Steroid Biochem. Mol. Biol., 127 (2011) 27–34.
  9. M. Dükkancı, Sono-photo-Fenton oxidation of bisphenol-A over a LaFeO3 perovskite catalyst, Ultrason. Sonochem., 40 (2018) 110–116.
  10. E. Kusvuran, D. Yildirim, Degradation of bisphenol A by ozonation and determination of degradation intermediates by gas chromatography–mass spectrometry and liquid chromatography– mass spectrometry, Chem. Eng. J., 220 (2013) 6–14.
  11. M. Ghaderpoori, M.H. Dehghani, Investigating the removal of linear alkyl benzene sulfonate from aqueous solution by ultraviolet irradiation and hydrogen peroxide process, Desal. Wat. Treat., 57 (2016) 15208–15212.
  12. C.Y.H. Chao, C. Kwong, K. Hui, Potential use of a combined ozone and zeolite system for gaseous toluene elimination, J. Hazard. Mater., 143 (2007) 118–127.
  13. B. Kamarehie, A. Jafari, M. Ghaderpoori, M.A. Karami, K. Mousavi, A. Ghaderpoury, Catalytic ozonation process using PAC/γ-Fe2O3 to Alizarin Red S degradation from aqueous solutions: a batch study, Chem. Eng. Commun., 206 (2019) 898–908.
  14. 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.
  15. G. Moussavi, A.A. Aghapour, K. Yaghmaeian, The degradation and mineralization of catechol using ozonation catalyzed with MgO/GAC composite in a fluidized bed reactor, Chem. Eng. J., 249 (2014) 302–310.
  16. H. Azarpira, M. Sadani, M. Abtahi, N. Vaezi, S. Rezaei, Z. Atafar, S.M. Mohseni, M. Sarkhosh, M. Ghaderpoori, H. Keramati, Photo-catalytic degradation of triclosan with UV/iodide/ZnO process: performance, kinetic, degradation pathway, energy consumption and toxicology, J. Photochem. Photobiol., A, 371 (2019) 423–432.
  17. A. Yazdanbakhsh, Y. Hashempour, M. Ghaderpouri, Performance of granular activated carbon/nanoscale zero-valent iron for removal of humic substances from aqueous solution based on experimental design and response surface modeling, Global NEST J., 20 (2018) 57–68.
  18. S. Akbari, F. Ghanbari, H. Almasi, G. Asgari, Investigation into catalytic potential of marble powder in catalytic ozonation of Reactive Black 5, J. Health Field, 2 (2015) 10–17.
  19. S. Mazloomi, N.R. Nabizadeh, S.M. Noori, Efficiency of response surface methodology for optimizing catalytic ozonation process with activated carbon in removal of petroleum compound from groundwater resources, J. Health Hyg., 4 (2013) 198–206.
  20. S.T. Oyama, W. Li, W. Zhang, A comparative study of ethanol oxidation with ozone on supported molybdenum and manganese oxide catalysts, Stud. Surf. Sci. Catal., 121 (1999) 105–110.
  21. G. Moussavi, R. Rashidi, A. Khavanin, The efficacy of GAC/MgO composite for destructive adsorption of benzene from waste air stream, Chem. Eng. J., 228 (2013) 741–747.
  22. G. Moussavi, A. Aghapour, K. Yaghmaeian, Comparison of the catalytic potential of MgO/GAC, MgO/perlite and MgO/pumice in the catalytic ozonation process for degradation and mineralization of catechol, J. Health., 8 (2017) 7–19.
  23. J. Nawrocki, B. Kasprzyk-Hordern, The efficiency and mechanisms of catalytic ozonation, Appl. Catal., B, 99 (2010) 27–42.
  24. G. Moussavi, A. Khavanin, H. Mokarami, Removal of xylene from waste air stream using catalytic ozonation process, Iran. J. Health Environ., 3 (2010) 239–250.
  25. Y. Haldorai, J.J. Shim, An efficient removal of methyl orange dye from aqueous solution by adsorption onto chitosan/MgO composite: a novel reusable adsorbent, Appl. Surf. Sci., 292 (2014) 447–453.
  26. X. Zhang, T. Shen, Y. Ding, S. Tong, Graphite felt supported MgO catalytic ozonation of bisphenol A, Ozone Sci. Eng., (2019) 1–10.
  27. A. Mohsenibandpei, A. Alinejad, H. Bahrami, M. Ghaderpoori, Water solution polishing of nitrate using potassium permanganate modified zeolite: parametric experiments, kinetics and equilibrium analysis, Global Nest J., 18 (2016) 546–558.
  28. S. Haidari, B. Kamarehie, A. Jafari, M. Birjandi, S. Afrasyabi, Oxalic acid degradation from aqueous solution using ozonation process in the presence of magnesium oxide nanoparticles catalyst stabilized on activated carbon, Int. J. Environ. Health Eng., 5 (2016) 23.
  29. M. Massoudinejad, M. Ghaderpoori, A. Shahsavani, A. Jafari, B. Kamarehie, A. Ghaderpoury, M.M. Amini, Ethylenediaminefunctionalized cubic ZIF-8 for arsenic adsorption from aqueous solution: modeling, isotherms, kinetics and thermodynamics, J. Mol. Liq., 255 (2018) 263–268.
  30. A.D. Eaton, L.S. Clesceri, E.W. Rice, Standard Methods for the Examination of Water and Wastewater, American Water Works Association (AWWA), Washington, D.C., 2012.
  31. G. Asgari, H. Almasi, J. Fardmal, F. Ghanbari, Z. Daraie, S. Akbari, Optimization of catalytic ozonation process for removal of Reactive Black 5 dye using bone char ash modified by magnesium oxide and applying Taguchi design, J. Mazandaran Univ. Med. Sci., 24 (2015) 252–262.
  32. G. Moussavi, A. Alahabadi, K. Yaghmaeian, M. Eskandari, Preparation, characterization and adsorption potential of the NH4Cl-induced activated carbon for the removal of amoxicillin antibiotic from water, Chem. Eng. J., 217 (2013) 119–128.
  33. F. Mohandes, F. Davar, M. Salavati-Niasari, Magnesium oxide nanocrystals via thermal decomposition of magnesium oxalate, J. Phys. Chem. Solids, 71 (2010) 1623–1628.
  34. G. Moussavi, M. Mahmoudi, Removal of azo and anthraquinone reactive dyes from industrial wastewaters using MgO nanoparticles, J. Hazard. Mater., 168 (2009) 806–812.
  35. T. Venkatesha, R. Viswanatha, Y.A. Nayaka, B. Chethana, Kinetics and thermodynamics of reactive and vat dyes adsorption on MgO nanoparticles, Chem. Eng. J., 198 (2012) 1–10.
  36. S.M. Ghasemi, A. Mohseni-Bandpei, M. Ghaderpoori, Y. Fakhri, H. Keramati, M. Taghavi, B. Moradi, K. Karimyan, Application of modified maize hull for removal of Cu(II) ions from aqueous solutions, Environ. Prot. Eng., 43 (2017) 93–103.
  37. T. Garoma, S. Matsumoto, Ozonation of aqueous solution containing bisphenol A: effect of operational parameters, J. Hazard. Mater., 167 (2009) 1185–1191.
  38. M.H. Khan, J.Y. Jung, Ozonation catalyzed by homogeneous and heterogeneous catalysts for degradation of DEHP in aqueous phase, Chemosphere, 72 (2008) 690–696.
  39. D.P. Subagio, M. Srinivasan, M. Lim, T.T. Lim, Photocatalytic degradation of bisphenol-A by nitrogen-doped TiO2 hollow sphere in a vis-LED photoreactor, Appl. Catal., B, 95 (2010) 414–422.
  40. B. Liu, M. Qiao, Y. Wang, L. Wang, Y. Gong, T. Guo, X. Zhao, Persulfate enhanced photocatalytic degradation of bisphenol A by g-C3N4 nanosheets under visible light irradiation, Chemosphere, 189 (2017) 115–122.
  41. Y. Jiang, C. Pétrier, T.D. Waite, Effect of pH on the ultrasonic degradation of ionic aromatic compounds in aqueous solution, Ultrason. Sonochem., 9 (2002) 163–168.
  42. X. Liu, Z. Zhou, G. Jing, J. Fang, Catalytic ozonation of Acid Red B in aqueous solution over a Fe-Cu-O catalyst, Sep. Purif. Technol., 115 (2013) 129–135.
  43. Y. Dong, G. Wang, P. Jiang, A. Zhang, L. Yue, X. Zhang, Catalytic ozonation of phenol in aqueous solution by Co3O4 nanoparticles, Bull. Korean Chem. Soc., 31 (2010) 2830–2834.
  44. B. Legube, N. Karpel Vel Leitner, Catalytic ozonation: a promising advanced oxidation technology for water treatment, Catal. Today, 53 (1999) 61–72.
  45. J. Ma, M. Sui, T. Zhang, C. Guan, Effect of pH on MnOx/GAC catalyzed ozonation for degradation of nitrobenzene, Water Res., 39 (2005) 779–786.
  46. F.J. Rivas, A. Encinas, B. Acedo, F.J. Beltrán, Mineralization of bisphenol A by advanced oxidation processes, J. Chem. Technol. Biotechnol., 84 (2009) 589–594.
  47. M. Deborde, S. Rabouan, J.P. Duguet, B. Legube, Kinetics of aqueous ozone-induced oxidation of some endocrine disruptors, Environ. Sci. Technol., 39 (2005) 6086–6092.
  48. Y. Yamamoto, E. Niki, H. Shiokawa, Y. Kamiya, Ozonation of organic compounds. 2. Ozonation of phenol in water, J. Org. Chem., 44 (1979) 2137–2142.
  49. T. Garoma, S. Matsumoto, Y. Wu, R. Klinger, Removal of bisphenol A and its reaction-intermediates from aqueous solution by ozonation, Ozone Sci. Eng., 32 (2010) 338–343.
  50. Q. Dai, J. Wang, J. Chen, J. Chen, Ozonation catalyzed by cerium supported on activated carbon for the degradation of typical pharmaceutical wastewater, Sep. Purif. Technol., 127 (2014) 112–120.
  51. M. Sui, S. Xing, L. Sheng, S. Huang, H. Guo, Heterogeneous catalytic ozonation of ciprofloxacin in water with carbon nanotube supported manganese oxides as catalyst, J. Hazard. Mater., 227 (2012) 227–236.