References

  1. P. Asaithambi, Studies on various operating parameters for the removal of COD from pulp and paper industry using electrocoagulation process, Desal. Wat. Treat., 57 (2016) 11746–11755.
  2. N. Abedinzadeh, M. Shariat, S.M. Monavari, A. Pendashteh, Evaluation of color and COD removal by Fenton from biologically (SBR) pre-treated pulp and paper wastewater, Process Saf. Environ., 116 (2018) 82–91.
  3. P. Asaithambi, A.R.A. Aziz, B. Sajjadi, W.M.A.B.W. Daud, Sono assisted electrocoagulation process for the removal of pollutant from pulp and paper industry effluent, Environ. Sci. Pollut. Res., 24 (2017) 5168–5178.
  4. N. Jaafarzadeh, F. Ghanbari, M. Alvandi, Integration of coagulation and electro-activated HSO5 to treat pulp and paper wastewater, Sustainable Environ. Res., 27 (2017) 223–229.
  5. M. Irfan, T. Butt, N. Imtiaz, N. Abbas, R.A. Khan, A. Shafique, The removal of COD, TSS and colour of black liquor by coagulation–flocculation process at optimized pH, settling and dosing rate, Arabian J. Chem., 10 (2017) S2307–S2318.
  6. N. Jaafarzadeh, F. Ghanbari, M. Ahmadi, M. Omidinasab, Efficient integrated processes for pulp and paper wastewater treatment and phytotoxicity reduction: permanganate, electro- Fenton and Co3O4/UV/peroxymonosulfate, Chem. Eng. J., 308 (2017) 142–150.
  7. H. Zhuang, J. Guo, X. Hong, Advanced treatment of papermaking wastewater using catalytic ozonation with waste rice straw-derived activated carbon-supported manganese oxides as a novel and efficient catalyst, Pol. J. Environ. Stud., 27 (2018) 451–457.
  8. N. Buyukkamaci, E. Koken, Economic evaluation of alternative wastewater treatment plant options for pulp and paper industry, Sci. Total Environ., 408 (2010) 6070–6078.
  9. A. Buzzini, E. Pires, Evaluation of a upflow anaerobic sludge blanket reactor with partial recirculation of effluent used to treat wastewaters from pulp and paper plants, Bioresour. Technol., 98 (2007) 1838–1848.
  10. S. He, J. Li, J. Xu, L. Mo, Enhanced removal of COD and color in paper-making wastewater by ozonation catalyzed by Fe supported on activated carbon, Bioresources, 11 (2016) 8396–8408.
  11. R. Marques, A. Ferrari-Lima, V. Slusarski-Santana, N. Fernandes-Machado, Ag2O and Fe2O3 modified oxides on the photocatalytic treatment of pulp and paper wastewater, J. Environ. Manage., 195 (2017) 242–248.
  12. M. Afzal, G. Shabir, I. Hussain, Z.M. Khalid, Paper and board mill effluent treatment with the combined biological coagulation–filtration pilot scale reactor, Bioresour. Technol., 99 (2008) 7383–7387.
  13. D. Pokhrel, T. Viraraghavan, Treatment of pulp and paper mill wastewater – a review, Sci. Total Environ., 333 (2004) 37–58.
  14. M.S. Lucas, J.A. Peres, G.L. Puma, Treatment of winery wastewater by ozone-based advanced oxidation processes (O3, O3/UV and O3/UV/H2O2) in a pilot-scale bubble column reactor and process economics, Sep. Purif. Technol., 72 (2010) 235–241.
  15. M. Gągol, A. Przyjazny, G. Boczkaj, Wastewater treatment by means of advanced oxidation processes based on cavitation – a review, Chem. Eng. J., 338 (2018) 599–627.
  16. A. Chin, P. Bérubé, Removal of disinfection by-product precursors with ozone-UV advanced oxidation process, Water Res., 39 (2005) 2136–2144.
  17. D.R. Medeiros, E.C. Pires, M. Mohseni, Ozone oxidation of pulp and paper wastewater and its impact on molecular weight distribution of organic matter, Ozone-Sci. Eng., 30 (2008) 105–110.
  18. N. Jaafarzadeh, G. Barzegar, F. Ghanbari, Photo assisted electroperoxone to degrade 2, 4-D herbicide: the effects of supporting electrolytes and determining mechanism, Process Saf. Environ., 111 (2017) 520–528.
  19. P. Frangos, H. Wang, W. Shen, G. Yu, S. Deng, J. Huang, B. Wang, Y. Wang, A novel photoelectro-peroxone process for the degradation and mineralization of substituted benzenes in water, Chem. Eng. J., 286 (2016) 239–248.
  20. J. Martini, C.A. Orge, J.L. Faria, M.F.R. Pereira, O.S.G. Soares, Sulfamethoxazole degradation by combination of advanced oxidation processes, J. Environ. Chem. Eng., 6 (2018) 4054–4060.
  21. C.-H. Ko, P.-H. Hsieh, M.-W. Chang, J.-M. Chern, S.-M. Chiang, C.-J. Tzeng, Kinetics of pulp mill effluent treatment by ozonebased processes, J. Hazard. Mater., 168 (2009) 875–881.
  22. A. APHA, Standard Methods for the Examination of Water and Wastewater: Centennial Edition, WEF, Washington, DC, 2005.
  23. M.R. Assalin, M.A. Rosa, N. Durán, Remediation of kraft effluent by ozonation: effect of applied ozone concentration and initial pH, Ozone-Sci. Eng., 26 (2004) 317–322.
  24. A. Ikhlaq, D.R. Brown, B. Kasprzyk-Hordern, Mechanisms of catalytic ozonation on alumina and zeolites in water: formation of hydroxyl radicals, Appl. Catal., B, 123 (2012) 94–106.
  25. 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.
  26. L. Lei, Y. Li, Effect of ozonation on recalcitrant chemical oxygen demand (COD), color, and biodegradability of hardwood kraft pulp (KP) bleaching effluent, Bioresources, 9 (2014) 1236–1245.
  27. E.C. Catalkaya, F. Kargi, Color, TOC and AOX removals from pulp mill effluent by advanced oxidation processes: a comparative study, J. Hazard. Mater., 139 (2007) 244–253.
  28. 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.
  29. T. Kreetachat, M. Damrongsri, V. Punsuwon, P. Vaithanomsat, C. Chiemchaisri, C. Chomsurin, Effects of ozonation process on lignin-derived compounds in pulp and paper mill effluents, J. Hazard. Mater., 142 (2007) 250–257.
  30. M.-O. Buffle, J. Schumacher, S. Meylan, M. Jekel, U. von Gunten, Ozonation and advanced oxidation of wastewater: effect of O3 dose, pH, DOM and HO•-scavengers on ozone decomposition and HO• generation, Ozone-Sci. Eng., 28 (2006) 247–259.
  31. M.F. Sevimli, H.Z. Sarikaya, Ozone treatment of textile effluents and dyes: effect of applied ozone dose, pH and dye concentration, J. Chem. Technol. Biotechnol., 77 (2002) 842–850.
  32. S. Esplugas, J. Gimenez, S. Contreras, E. Pascual, M. Rodrı́guez, Comparison of different advanced oxidation processes for phenol degradation, Water Res., 36 (2002) 1034–1042.
  33. P. Faria, J. Órfão, M. Pereira, Activated carbon and ceria catalysts applied to the catalytic ozonation of dyes and textile effluents, Appl. Catal., B, 88 (2009) 341–350.
  34. H. Tomiyasu, H. Fukutomi, G. Gordon, Kinetics and mechanism of ozone decomposition in basic aqueous solution, Inorg. Chem., 24 (1985) 2962–2966.