References

  1. J.C. Rocha, A.H. Rosa, A.A. Cardoso, Introdução à química ambiental, Bookman, Porto Alegre, 2009.
  2. M. Wagner, W. Schmidt, L. Imhof, A. Grübel, C. Jähn, D. Georgi, H. Petzoldt, Characterization and quantification of humic substances 2D-Fluorescence by usage of extended size exclusion chromatography, Water Res., 93 (2016) 98–109.
  3. S. Metsämuuronen, M. Sillanpää; A. Bhatnagar, M. Mänttäri, Natural organic matter removal from drinking water by membrane technology, Sep. Purif. Rev., 43 (2014) 1–61.
  4. T. Bond, E. Goslan, S. Parsons, B. Jefferson, Disinfection by-product formation of natural organic matter surrogates and treatment by coagulation, MIEX and nano filtration, Water Res., 44 (2010) 1645–1653.
  5. Y. Nie, C. Hu, L. Zhou, J. Qu, Q. Wei, D. Wang, Degradation characteristics of humic acid over iron oxides/Fe0 core-shell nano particles with UVA/H2O2, J. Hazard. Mater., 173 (2010) 474–479.
  6. V.C.S. Sampaio, E.F. Abdala Neto, A.C.A. Lima, I.C.L. Freitas, M.D. Aquino, Reduction of natural organic matter by an electrolytic process, conventional coagulation and direct descending filtration in a pilot-scale water treatment system, J. Water Supply Res. T., 64 (2015) 168–175.
  7. E.F. Abdala Neto, M.D. Aquino. Fotocatálise heterogênea associada a eletro-oxidação no pré-tratamento de água eutrofizada em uma estação piloto de tratamento de água. Revista AIDIS de Ingeniería y Ciencias Ambientales: Investigácion, desarrollo y práctica, 5 (2012) 11–19.
  8. J.B. Parsa, M. Rezaei, A.R. Soleymani, Electrochemical oxidation of an azo dye in aqueous media investigation of operational parameters and kinetics, J. Hazard. Mater., 168 (2009) 997–1003.
  9. A. Martínez-Huitle, S. Ferro, Electrochemical oxidation of orgânica pollutants for the wastewater treatment: direct and indirect processes, Chem. Soc. Rev., 35 (2006) 1324–1340.
  10. B.P. Chaplin, Critical review of electrochemical advanced oxidation processes for water treatment applications, Environ. Sci. Process. Impact., 16 (2014) 1182–1203.
  11. I. Sirés, E. Brillas, M.A. Oturan, M.A. Rodrigo, M. Panizza, Electrochemical advanced oxidation processes: today and tomorrow. A review, Environ. Sci. Pollut. Res., 21 (2014) 8336–8367.
  12. C. Comninellis, Electro catalysis in the electrochemical conversion/combustion of organic pollutants for waste water treatment, Electrochim. Acta, 39 (1994) 1857–1862.
  13. J.O’M. Bockris, E.C. Potter, The mechanism of hydrogen evolution at nickel cathodes in aqueous solutions, J. Chem. Phys., 20 (1952) 614.
  14. J.O’M. Bockris, I.A. Ammar, A.K.S. Huq, The mechanism of hydrogen evolution reaction on platinum, silver and tungsten surfaces in acid solutions, J. Chem. Phys., 61 (1957) 879.
  15. J. Ghroghchian, J.O’M. Bockris, Use of a homopolar generator in hydrogen production from water, Hydrogen Energy, 10 (1985) 101.
  16. A.C.C. Tseung, P.R. Vassie, A study of gas evolution in teflon bonded porous electrodes-III. Performance of teflon bonded Pt black electrodes for H2 evolution, Electrochim. Acta, 21 (1976) 315.
  17. S.M. Jansem, A.C.C. Tseung, A potentiostatic pulse study of oxygen evolution on teflon-bonded nickel-cobalt oxide electrodes, Electrochem. Soc., 126 (1979) 1353.
  18. Z. Lu, J. Tang, M.L. Mendoza, D. Chang, L. Cai, L. Zhang, Electrochemical decrease of sulfide in sewage by pulsed power supply, J. Electroanal. Chem., 745 (2015) 37–43.
  19. J Wei, X. Zhu, J. Ni, Electrochemical oxidation of phenol at boron-doped diamond electrode in pulse current mode, Electrochim. Acta, 56 (2011) 5310–5315.
  20. J.E.C.A. Martins, E.F. Abdala Neto, A.C.A. Lima, J.P. Ribeiro, F.E.F. Maia, R.F. Nascimento, Box-Behnken design for COD removal of textile wastewater using electro coagulation with pulsed DC, Eng. Sanit. Ambient., 22 (2017) 1055–1064.
  21. G.A. De Vera, D. Stalter, W. Gernjak, H.S. Weinberg, J. Keller, M.J. Farré, Towards reducing DBP formation potential of drinking water by favouring direct ozone over hydroxyl radical reactions during ozonation, Water Res., 87 (2015) 49–58.
  22. K. Verma, D. Gupta, A.B. Gupta, Optimization of ozone disinfection and its effect on trihalomethanes, J. Environ. Chem. Eng., 4 (2016) 3021–3032.
  23. K.M.S. Hansen, A. Spililotopoulou, W.A. Cheema, H.R. Andersen, Effect of ozonation of swimming pool water on formation of volatile disinfection by-products-A laboratory study, Chem. Eng.. J., 289 (2016) 277–285.
  24. A. Kamel, H. Al jibouri, J. Wu, S.R. Upreti, Continuous ozonation of methylene blue in water, J. Water Process. Eng., 8 (2015) 142–150.
  25. M.G. Antoniou, H.R. Andersen, Evaluation of pretreatments for inhibiting bromate formation during ozonation, Environ. Technol., 33 (2012) 1747–1753.
  26. L. Labiadh, A. Barbucci, M.P. Carpanese, A. Gadri, S. Ammar, M. Panizza, Comparative depollution of Methyl Orange aqueous solutions by electrochemical incineration using TiRuSnO2, BDD and PbO2 as high oxidation power anodes, J. Electroanal. Chem., 766 (2016) 94–99.
  27. G. Hua, D.A. Reckhow, I. Abusallout, Correlation between SUVA and DBP formation during chlorination and chloramination of NOM fractions from different sources, Chemosphere, 130 (2015) 82–89.
  28. I.D. Santos, J.C. Afonso, A.J.B. Dutra, Behavior of a Ti/RuO2 anode in concentrated chloride medium for phenol and their chlorinated intermediates electro oxidation, Sep. Purif. Technol., 76 (2010) 151.
  29. A. Paprocki, H.S. dos Santos, M.E. Hammerschitt, M. Pires, C.M.N. Azevedo, Ozonation of azo dye Acid Black 1 under the suppression effect by chloride ion, J. Braz. Chem. Soc., 21 (2010) 452–460.