References

  1. V. Katheresan, J. Kansedo, S.Y. Lau, Efficiency of various recent wastewater dye removal methods: a review, J. Environ. Chem. Eng., 6 (2018) 4676–4697.
  2. S. Natarajan, H.C. Bajaj, R.J. Tayade, Recent advances based on the synergetic effect of adsorption for removal of dyes from waste water using photocatalytic process, J. Environ. Sci., 65 (2018) 201–222.
  3. V.B.K. Mullapudi, A. Salveru, A.J. Kora, An in-house UV-photolysis setup for the rapid degradation of both cationic and anionic dyes in dynamic mode through UV/H2O2-based advanced oxidation process, Int. J. Environ. Anal. Chem., (2020) 1–17, doi: 10.1080/03067319.2020.1800002.
  4. H.A. Mohammed, S.A. Khaleefa, M.I. Basheer, Photolysis of methylene blue dye using an advanced oxidation process (ultraviolet light and hydrogen peroxide), J. Eng. Sustainable Dev., 25 (2021) 59–67.
  5. N. Liu, Y. Wu, Removal of methylene blue by electrocoagulation: a study of the effect of operational parameters and mechanism, Ionics, 25 (2019) 3953–3960.
  6. M. Manna, S. Sen, Advanced oxidation process: a sustainable technology for treating refractory organic compounds present in industrial wastewater, Environ. Sci. Pollut. Res., (2022) 1–29,
    doi:10.1007/s11356-022-19435-0.
  7. R. Kumar, A.K. Singh, P.S. Mondal, Study of UV assisted photocatalytic degradation of organic dye, Mater. Today:. Proc., 66 (2022) 3244–3249.
  8. B.L. Alderete, J. da Silva, R. Godoi, F.R. da Silva, S.R. Taffarel, L.P. da Silva, A.L.H. Garcia, H. Mitteregger Júnior, H.L.N. de Amorim, J.N. Picada, Evaluation of toxicity and mutagenicity of a synthetic effluent containing azo dye after advanced oxidation process treatment, Chemosphere, 263 (2021) 128291, doi:10.1016/j.chemosphere.2020.128291.
  9. P. Kralik, H. Kusic, N. Koprivanac, A.L. Bozic, Degradation of chlorinated hydrocarbons by UV/H2O2:
    the application of experimental design and kinetic modeling approach, Chem. Eng. J., 158 (2010) 154–166.
  10. I. Kabdaşlı, T. Olmez-Hanci, O. Tünay, D. Gülhan, C. Ecer, Application of response surface methodology for dimethyl phthalate treatment via H2O2/UV-C process, Desal. Water Treat., 57 (2016) 26165–26173.
  11. P. Manikandan, P.N. Palanisamy, R. Baskar, P. Sivakumar, P. Sakthisharmila, Optimization of treatment efficiency of UV/H2O2 process on simulated textile industry wastewater, Desal. Water Treat., 57 (2016) 27169–27180.
  12. D.-M. Gu, C.-S. Guo, Q.-Y. Feng, H. Zhang, J. Xu, Degradation of ketamine and methamphetamine
    by the UV/H2O2 system: kinetics, mechanisms and comparison, Water, 12 (2020) 2999, doi:10.3390/w12112999.
  13. C. Tan, N. Gao, Y. Deng, Y. Zhang, M. Sui, J. Deng, S. Zhou, Degradation of antipyrine by UV, UV/H2O2 and UV/PS, J. Hazard. Mater., 260 (2013) 1008–1016.
  14. P. Navarro, J.A. Gabaldón, V.M. Gómez-López, Degradation of an azo dye by a fast and innovative pulsed light/H2O2 advanced oxidation process, Dyes Pigm., 136 (2017) 887–892.
  15. K. Çobanoğlu, N. Değermenci, Comparison of reactive azo dye removal with UV/H2O2, UV/S2O82− and UV/HSO5 processes in aqueous solutions, Environ. Monit. Assess., 194 (2022) 1–14,
    doi: 10.1007/s10661-022-09964-z.
  16. F. Banat, S. Al-Asheh, M. Al-Rawashdeh, M. Nusair, Photodegradation of methylene blue dye by the UV/H2O2 and UV/acetone oxidation processes, Desalination, 181 (2005) 225–232.
  17. Y. Laftani, B. Chatib, A. Boussaoud, M. El Makhfouk, M. Hachkar, M. Khayar, Optimization of diazo dye disappearance by the UV/H2O2 process using the Box–Behnken design, Water Sci. Technol., 80 (2019) 1731–1739.
  18. X. Ding, L. Gutierrez, J.-P. Croue, M. Li, L. Wang, Y. Wang, Hydroxyl and sulfate radical-based oxidation of RhB dye in UV/H2O2 and UV/persulfate systems: kinetics, mechanisms, and comparison, Chemosphere, 253 (2020) 126655, doi: 10.1016/j.chemosphere.2020.126655.
  19. A.R. Khataee, B. Habibi, Photochemical oxidative decolorization of C.I. basic red 46 by UV/H2O2 process: optimization using response surface methodology and kinetic modeling, Desal. Water Treat., 16 (2010) 243–253.
  20. M.B. Kasiri, A.R. Khataee, Removal of organic dyes by UV/H2O2 process: modelling and optimization, Environ. Technol., 33 (2012) 1417–1425.
  21. M. Peng, H. Li, X. Kang, E. Du, D. Li, Photo-degradation ibuprofen by UV/H2O2 process: response surface analysis and degradation mechanism, Water Sci. Technol., 75 (2017) 2935–2951.
  22. L. Narayanasamy, T. Murugesan, Degradation of alizarin yellow R using UV/H2O2 advanced oxidation process, Environ. Prog. Sustainable Energy, 33 (2014) 482–489.
  23. J.E. Frew, P. Jones, G. Scholes, Spectrophotometric determination of hydrogen peroxide and organic hydropheroxides at low concentrations in aqueous solution, Anal. Chim. Acta, 155 (1983) 139–150.
  24. APHA, Standard Methods for the Examination of Water and Wastewater, American Public Health Association, Washington, D.C., 2012.
  25. L.V. Jian-Xiao, C. Ying, X. Guo-hong, Z. Ling-yun, W. Su-fen, Decoloration of methylene blue simulated wastewater using a UV-H2O2 combined system, J. Water Reuse Desal., 1 (2011) 45–51.
  26. E. Basturk, M. Karatas, Decolorization of antraquinone dye reactive blue 181 solution by UV/H2O2 process, J. Photochem. Photobiol., A, 299 (2015) 67–72.
  27. E. Rodríguez, R. Peche, J.M. Merino, L.M. Camarero, Decoloring of aqueous solutions of indigo carmine dye in an acid medium by H2O2/UV advanced oxidation, Environ. Eng. Sci., 24 (2007) 363–371.
  28. Metcalf and Eddy, Wastewater Engineering: Treatment and Reuse, Tata Mc-Graw Hill, New Delhi, 2003.
  29. M.A. Rauf, L. Ali, M.S.A.Y. Sadig, S.S. Ashraf, S. Hisaindee, Comparative degradation studies of Malachite Green and Thiazole Yellow G and their binary mixture using UV/H2O2, Desal. Water Treat., 57 (2016) 8336–8342.
  30. S.R. Sarathy, M.I. Stefan, A. Royce, M. Mohseni, Pilot-scale UV/H2O2 advanced oxidation process for surface water treatment and downstream biological treatment: effects on natural organic matter characteristics and DBP formation potential, Environ. Technol., 32 (2011) 1709–1718.
  31. R.R. Giri, H. Ozaki, Y. Takayanagi, S. Taniguchi, R. Takanami, Efficacy of ultraviolet radiation and hydrogen peroxide oxidation to eliminate large number of pharmaceutical compounds in mixed solution, Int. J. Environ. Sci. Technol., 8 (2011) 19–30.
  32. N. Daneshvar, M.A. Behnajady, M.K.A. Mohammadi, M.S. Dorraji, UV/H2O2 treatment of Rhodamine B in aqueous solution: influence of operational parameters and kinetic modeling, Desalination, 230 (2008) 16–26.
  33. M.A. Rauf, M.A. Meetani, A. Khaleel, A. Ahmed, Photocatalytic degradation of methylene blue using a mixed catalyst and product analysis by LC/MS, Chem. Eng. J., 157 (2010) 373–378.
  34. A.M. Atta, Y.M. Moustafa, H.A. Al-Lohedan, A.O. Ezzat, A.I. Hashem, Methylene blue catalytic degradation using silver and magnetite nanoparticles functionalized with a poly (ionic liquid) based on quaternized dialkylethanolamine with 2-acrylamido-2-methylpropane sulfonate-co-vinylpyrrolidone, ACS Omega, 5 (2020) 2829–2842.
  35. L. Zhou, Y. Shao, J. Liu, Z. Ye, H. Zhang, J. Ma, Y. Jia, W. Gao, Y. Li, Preparation and characterization of magnetic porous carbon microspheres for removal of methylene blue by a heterogeneous Fenton reaction, ACS Appl. Mater. Interfaces, 6 (2014) 7275–7285.
  36. S. Mondal, M.E.D.A. Reyes, U. Pal, Plasmon induced enhanced photocatalytic activity of gold loaded hydroxyapatite nanoparticles for methylene blue degradation under visible light, RSC Adv., 7 (2017) 8633–8645.
  37. T.M. Elmorsi, Y.M. Riyad, Z.H. Mohamed, H.M. Abd El Bary, Decolorization of Mordant Red 73 azo dye in water using H2O2/ UV and photo-Fenton treatment, J. Hazard. Mater., 174 (2010) 352–358.
  38. I.M. Cardoso, R.M. Cardoso, L. Pinto da Silva, J.C. Esteves da Silva, UV-based advanced oxidation processes of Remazol Brilliant Blue R dye catalyzed by carbon dots, Nanomaterials, 12 (2022) 2116, doi:10.3390/nano12122116.
  39. P. Navarro, J.A. Pellicer, V.M. Gómez-López, Degradation of azo dye by an UV/H2O2 advanced oxidation process using an amalgam lamp, Water Environ. J., 33 (2019) 476–483.
  40. N. Modirshahla, M.A. Behnajady, R. Rahbarfam, A. Hassani, Effects of operational parameters on decolorization of CI acid red 88 by UV/H2O2 process: evaluation of electrical SEC, Clean – Soil Air Water, 40 (2012) 298–302.