References

  1. T. Khodadi, Investigation of Performance on the Oxidation Processess in Urban Wastewater Supplementary Tretment, Ph.D Thesis, Department of Environmental Sciences, Faculty of Natural Resources and Environment, Malayer University, Malayer, Iran, 2019.
  2. S. Ricart, A.M. Rico, Assessing technical and social driving factors of water reuse in agriculture: a review on risks, regulation and the yuck factor, Agric. Water Manage., 217 (2019) 426–439.
  3. M. Minaei, H. Shafizadeh‐Moghadam, A. Tayyebi, Spatiotemporal nexus between the pattern of land degradation and land cover dynamics in Iran, Land Degrad. Dev., 29 (2018) 2854–2863.
  4. M. Nouri, M. Homaee, M. Bannayan, Spatiotemporal reference evapotranspiration changes in humid and semi-arid regions of Iran: past trends and future projections, Theor. Appl. Climatol., 133 (2018) 361–375.
  5. M. Karimaei, K. Sharafi, M. Moradi, H.R. Ghaffari, H. Biglari, H. Arfaeinia, N.Fattahi, Optimization of a methodology for simultaneous determination of twelve chlorophenols in environmental water samples using in situ derivatization and continuous sample drop flow microextraction combined with gas chromatography-electron-capture detection, Anal. Methods, 9 (2017) 2865–2872.
  6. K. Sharafi, M. Fazlzadehdavil, M. Pirsaheb, J. Derayat, S. Hazrati, The comparison of parasite eggs and protozoan cysts of urban raw wastewater and efficiency of various wastewater treatment systems to remove them, Ecol. Eng., 44 (2012) 244–248.
  7. O. Sacco, V. Vaiano, L. Rizzo, D. Sannino, Photocatalytic activity of a visible light active structured photocatalyst developed for municipal wastewater treatment, J. Cleaner Prod., 175 (2018) 38–49.
  8. W.D.N. Júnior, R. Aquino, A. Barbosa, O. Rocha, Development of a new PET flow reactor applied to food dyes removal with advanced oxidative processes, J. Water Process. Eng., 31 (2019) 100823, doi: 10.1016/j.jwpe.2019.100823.
  9. Z. Zhang, Y.-H. Chuang, N. Huang, W.A. Mitch, Predicting the contribution of chloramines to contaminant decay during ultraviolet/hydrogen peroxide advanced oxidation process treatment for potable reuse, Environ. Sci. Technol., 53 (2019) 4416–4425.
  10. S. Hussain, J.R. Steter, S. Gul, A.J. Motheo, Photo-assisted electrochemical degradation of sulfamethoxazole using a Ti/Ru0.3Ti0.7O2 anode: mechanistic and kinetic features of the process, J. Environ. Manage., 201 (2017) 153–162.
  11. R.R. Kalantary, A. Azari, A. Esrafili, K. Yaghmaeian, M. Moradi, K. Sharafi, The survey of Malathion removal using magnetic graphene oxide nanocomposite as a novel adsorbent: thermodynamics, isotherms, and kinetic study, Desal. Water Treat., 57 (2016) 28460–28473.
  12. C. Ji, C. Wang, J. Sun, Y. Yu, Degradation of 4-methylbenzylidene camphor (4-MBC) using Fenton, UV light irradiation and photo-Fenton, MATEC Web Conf., 100 (2017) 03006, doi:10.1051/ matecconf/201710003006.
  13. M.-h. Zhang, H. Dong, L. Zhao, D.-x. Wang, D. Meng, A review on Fenton process for organic wastewater treatment based on optimization perspective, Sci. Total Environ., 670 (2019) 110–121.
  14. V. Torretta, N. Ferronato, I.A. Katsoyiannis, A.K. Tolkou, M. Airoldi, Novel and conventional technologies for landfill leachates treatment: a review, Sustainability, 9 (2017) 1–39, doi: /10.3390/su9010009.
  15. G. Boczkaj, A. Fernandes, Wastewater treatment by means of advanced oxidation processes at basic pH conditions: a review, Chem. Eng. J., 320 (2017) 608–633.
  16. A. Klančar, J. Trontelj, A. Kristl, A. Meglič, T. Rozina, M.Z. Justin, R. Roškar, An advanced oxidation process for wastewater treatment to reduce the ecological burden from pharmacotherapy and the agricultural use of pesticides, Ecol. Eng., 97 (2016) 186–195.
  17. X. Hu, X. Wang, Y. Ban, B. Ren, A comparative study of UV-Fenton, UV-H2O2 and Fenton reaction treatment of landfill leachate, Environ. Technol., 32 (2011) 945–951.
  18. W.-l. Li, G.-h. Peng, Experimental study on degradation of reactive red X-3B dye wastewater by heterogeneous UV/Fenton catalyst system, Liaoning Chem. Ind., 5 (2018) 8.
  19. 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.
  20. F.J. Beltrán, A. Aguinaco, A. Rey, J.F. García-Araya, Kinetic studies on black light photocatalytic ozonation of diclofenac and sulfamethoxazole in water, Ind. Eng. Chem. Res., 51 (2012) 4533–4544.
  21. C.-H. Wu, Decolorization of CI reactive red 2 in O3, Fenton-like and O3/Fenton-like hybrid systems, Dyes Pigm., 77 (2008) 24–30.
  22. N. Kishimoto, S. Ueno, Catalytic effect of several iron species on ozonation, J. Water Environ. Technol., 10 (2012) 205–215.
  23. H. Arfaeinia, H. Rezaei, K. Sharafi, M. Moradi, H. Pasalari, S.E. Hashemi, Application of ozone/magnetic graphene oxide for degradation of diazinon pesticide from aqueous solutions, Desal. Water Treat., 107 (2018) 127–135.
  24. N. Mirzaei, H.R. Ghaffari, K. Karimyan, F.M. Moghadam, A. Javid, K. Sharafi, Survey of effective parameters (water sources, seasonal variation and residual chlorine) on presence of thermotolerant coliforms bacteria in different drinking water resources, Int. J. Pharm. Technol., 7 (2015) 9680–9689.
  25. N. Mirzaei, H.R. Ghaffari, K. Sharafi, A. Velayati, G. Hoseindoost, S. Rezaei, A.H. Mahvi, A. Azari, K. Dindarloo, Modified natural zeolite using ammonium quaternary based material for Acid red 18 removal from aqueous solution, J. Environ. Chem. Eng., 5 (2017) 3151–3160.
  26. H. Nourmoradi, H. Karimi, A. Alihosseini, A. Baghi, K. Farokhimoghadam, Survey on the performance of Ilam wastewater treatment plant in the removal of coliform, fecal coliforms and other parameters effected on water quality, J. Ilam Univ. Med Sci., 22 (2014) 77–83.
  27. WEF, APHA, Standard Methods for the Examination of Water and Wastewater, Water Environment Federation, American Public Health Association, Washington, DC, USA, 2005.
  28. K. Sharafi, M. Moradi, A. Karami, T. Khosravi, Comparison of the efficiency of extended aeration activated sludge system and stabilization ponds in real scale in the removal of protozoan cysts and parasite ova from domestic wastewater using Bailenger method: a case study, Kermanshah, Iran, Desal. Water Treat., 55 (2015) 1135–1141.
  29. A. Fischbacher, C. von Sonntag, T.C. Schmidt, Hydroxyl radical yields in the Fenton process under various pH, ligand concentrations and hydrogen peroxide/Fe(II) ratios, Chemosphere, 182 (2017) 738–744.
  30. E. Illés, A. Tegze, K. Kovács, G. Sági, Z. Papp, E. Takács, L. Wojnárovits, Hydrogen peroxide formation during radiolysis of aerated aqueous solutions of organic molecules, Radiat. Phys. Chem., 134 (2017) 8–13.
  31. R.R. Kalantary, M. Rahmatinia, M. Moradi, Data on modeling of UV/Na2S2O8/FeS2 process in amoxicillin removal using Box–Behnken methodology, Data Brief, 19 (2018) 1810–1815.
  32. M. Moradi, R.R. Kalantary, A. Esrafili, A.J. Jafari, M. Gholami, Visible light photocatalytic inactivation of Escherichia coli by natural pyrite assisted by oxalate at neutral pH, J. Mol. Liq., 248 (2017) 880–889.
  33. J.-S. Guo, A.A. Abbas, Y.-P. Chen, Z.-P. Liu, F. Fang, P. Chen, Treatment of landfill leachate using a combined stripping, Fenton, SBR, and coagulation process, J. Hazard. Mater., 178 (2010) 699–705.
  34. W. Jiang, D.D. Dionysiou, M. Kong, Z. Liu, Q. Sui, S. Lyu, Utilization of formic acid in nanoscale zero valent ironcatalyzed Fenton system for carbon tetrachloride degradation, Chem. Eng. J., 380 (2020) 122537, doi: 10.1016/j.cej.2019.122537.
  35. Y. Wu, S. Zhou, F. Qin, H. Peng, Y. Lai, Y. Lin, Removal of humic substances from landfill leachate by Fenton oxidation and coagulation, Process. Saf. Environ. Prot., 88 (2010) 276–284.
  36. C.A. Murray, S.A. Parsons, Removal of NOM from drinking water: Fenton’s and photo-Fenton’s processes, Chemosphere, 54 (2004) 1017–1023.
  37. Y. Chen, C. Liu, J. Nie, S. Wu, D. Wang, Removal of COD and decolorizing from landfill leachate by Fenton’s reagent advanced oxidation, Clean Technol. Environ. Policy, 16 (2014) 189–193.
  38. M. Moradi, A. Esrafili, M. Pirsaheb, V.K. Gupta, H. Sharafi, H. Arfaeinia, R.R. Kalantary, The inactivation of fecal coliform using Fe3O4@Cu nanocomposite in real wastewater: emphasizing on synergic effect and inactivation mechanisms, Desal. Water Treat., 123 (2018) 41–51.
  39. S. Yang, H. He, D. Wu, D. Chen, X. Liang, Z. Qin, M. Fan, J. Zhu, P. Yuan, Decolorization of methylene blue by heterogeneous Fenton reaction using Fe3−xTixO4 (0 ≤ x ≤ 0.78) at neutral pH values, Appl. Catal., B, 89 (2009) 527–535.
  40. N.H. Ince, Light-enhanced chemical oxidation for tertiary treatment of municipal landfill leachate, Water Environ. Res., 70 (1998) 1161–1169.
  41. A. Ruiz-Delgado, M. Roccamante, I. Oller, A. Agüera, S. Malato, Natural chelating agents from olive mill wastewater to enable photo-Fenton-like reactions at natural pH, Catal. Today, 328 (2019) 281–285.
  42. L. Tengrui, A. Al-Harbawi, Z. Jun, L.M. Bo, The effect and its influence factors of the Fenton process on the old landfill leachate, J. Appl. Sci., 7 (2007) 724–727.
  43. H. Zhang, H.J. Choi, C.-P. Huang, Optimization of Fenton process for the treatment of landfill leachate, J. Hazard. Mater., 125 (2005) 166–174.
  44. M. Ahmadian, S. Reshadat, N. Yousefi, S.H. Mirhossieni, M.R. Zare, S.R. Ghasemi, N. Rajabi Gilan, R. Khamutian, A. Fatehizadeh, Municipal leachate treatment by Fenton process: effect of some variable and kinetics, J. Environ. Public Health, 2013 (2013) 1–6.
  45. N. Azbar, T. Yonar, K. Kestioglu, Comparison of various advanced oxidation processes and chemical treatment methods for COD and color removal from a polyester and acetate fiber dyeing effluent, Chemosphere, 55 (2004) 35–43.
  46. M. Hadavifar, A.A. Zinatizadeh, H. Younesi, M. Galehdar, Fenton and photo‐Fenton treatment of distillery effluent and optimization of treatment conditions with response surface methodology, Asia‐Pac. J. Chem. Eng., 5 (2010) 454–464.
  47. F. Mahdad, H. Younesi, N. Bahramifar, M. Hadavifar, Optimization of Fenton and photo-Fenton-based advanced oxidation processes for post-treatment of composting leachate of municipal solid waste by an activated sludge process, KSCE J. Civ. Eng., 20 (2016) 2177–2188.
  48. A. Papadopoulos, D. Fatta, M. Loizidou, Development and optimization of dark Fenton oxidation for the treatment of textile wastewaters with high organic load, J. Hazard. Mater., 146 (2007) 558–563.
  49. F. Ferreira, L. Carvalho, R. Pereira, S. Antunes, S. Marques, F. Gonçalves, A. Duarte, T. Rocha-Santos, A. Freitas, Biological and photo-Fenton treatment of olive oil mill wastewater, Global Nest J., 10 (2008) 419–425.
  50. S.S.A. Amr, H.A. Aziz, New treatment of stabilized leachate by ozone/Fenton in the advanced oxidation process, Waste. Manage., 32 (2012) 1693–1698.
  51. M. Hagman, E. Heander, J.l.C. Jansen, Advanced oxidation of refractory organics in leachate-potential methods and evaluation of biodegradability of the remaining substrate, Environ. Technol., 29 (2008) 941–946.
  52. C. Tizaoui, L. Bouselmi, L. Mansouri, A. Ghrabi, Landfill leachate treatment with ozone and ozone/hydrogen peroxide systems, J. Hazard. Mater., 140 (2007) 316–324.
  53. M. Karami, K. Sharafi, A. Asadi, A. Bagheri, F. Yosefvand, S.S. Charganeh, N. Mirzaei, A. Velayati, Degradation of reactive red 198 (RR198) from aqueous solutions by advanced oxidation processes (AOPS): O3, H2O2/O3 and H2O2/ultrasonic, Bulg. Chem. Commun., 48 (2016) 43–49.
  54. R. Kıdak, Ş. Doğan, Medium-high frequency ultrasound and ozone based advanced oxidation for amoxicillin removal in water, Ultrason. Sonochem., 40 (2018) 131–139.
  55. E. Azizi, M. Fazlzadeh, M. Ghayebzadeh, L. Hemati, M. Beikmohammadi, H.R. Ghaffari, H.R. Zakeri, K. Sharafi, Application of advanced oxidation process (H2O2/UV) for removal of organic materials from pharmaceutical industry effluent, Environ. Prot. Eng., 43 (2017) 184–191.
  56. Y.-M. Kang, M.-K. Kim, K.-D. Zoh, Effect of nitrate, carbonate/ bicarbonate, humic acid, and H2O2 on the kinetics and degradation mechanism of Bisphenol-A during UV photolysis, Chemosphere, 204 (2018) 148–155.
  57. P.R. Gogate, A.B. Pandit, A review of imperative technologies for wastewater treatment II: hybrid methods, ACS Environ. Res., 8 (2004) 553–597.