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Articles

Degradation of methyl orange by electro-Fenton-like process in the presence of chloride ion

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Pages 6562-6571 | Received 15 Feb 2012, Accepted 28 Jan 2013, Published online: 24 May 2013

References

  • M.Neamtu, I.Siminiceanu, A.Yadiler, A.Kettrup, Kinetic of decolorization and mineralization of reactive azo dyes in aqueous solution by the UV/H2O2 oxidation. Dyes Pigm.53 (2002) 93–99.
  • K.C.Chen, J.Y.Wu, C.C.Huang, Y.M.Liang, Decolorization of azo dye using PVA-immobilized microorganisms. J. Biotechnol.101 (2003) 241–250.
  • J.Wu, F.Liu, H.Zhang, J.H.Zhang, L.Li, Decolorization of CI Reactive Black eight by electrochemical process with/without ultrasonic irradiation. Desalin. Water Treat.44 (2012) 36–43.
  • M.Sarioglu, T.Bisgin, Decolorization of basic red 46 and methylene blue by anaerobic sludge: Biotic and abiotic processes. Desalin. Water Treat.23 (2010) 61–65.
  • A.Baraka, Adsorptive removal of tartrazine and methylene blue from wastewater using melamine-formaldehyde-tartaric acid resin (and a discussion about pseudo second order model). Desalin. Water Treat.44 (2012) 128–141.
  • K.Umar, A.A.Dar, M.M.Haque, N.A.Mir, M.Muneer, Photocatalysed decolourization of two textile dye derivatives, martius yellow and acid Blue 129, in UV-irradiated aqueous suspensions of Titania. Desalin. Water Treat.46 (2012) 205–214.
  • E.Brillas, M.A.Banos, J.A.Garrido, Mineralization of herbicide 3,6-dichloro-2- methoxybenzoic acid in aqueous medium by anodic oxidation, electro-Fenton and photoelectro-Fenton. Electrochim. Acta48 (2003) 1697–1705.
  • H.S.El-Desoky, M.M.Ghoneim, R.El-Sheikh, N.M.Zidan, Oxidation of Levafix CA reactive azo-dyes in industrial wastewater of texitile dyeing by electro-generated Fenton’s reagent. J. Hazard. Mater.175 (2010) 858–865.
  • M.M.Gao, G.H.Zhang, X.H.Wang, F.L.Yang, The bromamine acid removal from aqueous solution using electro-Fenton and Fenton systems. Desalin. Water Treat.47 (2012) 157–162.
  • S.Hammami, N.Oturan, N.Bellakhal, M.Dachraoui, M.A.Oturan, Oxidative degradation of direct orange 61 by electro-Fenton process using a carbon felt electrode: application of the experiment design methodology. J. Electroanal. Chem.610 (2007) 75–84.
  • C.A.Martínez-Huitle, E.Brillas, Decontamination of wastewaters containing synthetic organic dyes by electrochemical methods: A general review. Appl. Catal. B Environ.87 (2009) 105–145.
  • M.A.Oturan, J.Peiroten, P.Chartrin, A.J.Acher, Complete destruction of p-nitrophenol in aqueous medium by electro-Fenton method. J. R. Environ. Sci. Technol.34 (2000) 3474–3479.
  • N.Oturan, M.H.Zhou, M.A.Oturan, Metomyl degradation by electro-Fenton and electro-Fenton-like processes: A kinetics study of the effect of the nature and concentration of some transition metal ions as catalyst. J. Phys. Chem. A114 (2010) 10605–10611.
  • W.P.Ting, M.C.Lu, Y.H.Huang, Kinetics of 2,6-dimethylaniline degradation by electro-Fenton process. J. Hazard. Mater.161 (2009) 1484–1490.
  • M.Panizza, G.Cerisola, Electro-Fenton degradation of synthetic dyes. Water Res.43 (2009) 339–344.
  • X.Y.Yu, Critical evaluation of rate constants and equilibrium constants of hydrogen peroxide photolysis in acidic aqueous solutions containing chlorine ions. J. Phys. Chem. Ref. Data33 (2004) 747–764.
  • B.K.Körbahti, A.Tanyolac, Continuous electrochemical treatment of simulated industrial textile wastewater from industrial components in a tubular reactor. J. Hazard. Mater.170 (2009) 771–778.
  • J.KiWi, A.Lopez, V.Nadtochenko, Mechanism and kinetics of the OH-radical intervention during Fenton oxidation in the presence of a significant amount of radical scavenger (Cl−). Environ. Sci. Technol.34 (2000) 2162–2168.
  • A.özcan, M.A.Oturan, N.Oturan, Y.Sahin, N.Oturan, Removal of acid orange seven from water by electrochemically generated Fenton’s reagent. J. Hazard. Mater163 (2009) 1213–1220.
  • A.Wang, J.Qu, J.Ru, H.Liu, J.Ge, Minerlization of an azo dye red 14 by electro-Fenton’s reagent using an activated carbon fider cathode. Dyes Pigm.65 (2005) 227–233.
  • C.T.Wang, J.L.Hu, W.L.Chou, Y.M.Kuo, Removal of color from real dyeing wastewater by electro-Fenton technology using a three-dimensional graphite cathode. J. Hazard. Mater.152 (2008) 601–606.
  • I.Sirés, J.A.Garrido, R.M.Rodríguez, E.Brillas, N.Oturan, M.A.Oturan, Catalytic behavior of the Fe3+/Fe2+ system in the electro-Fenton degradation of the antimicrobial chlorophene. Appl. Catal. B72 (2007) 382–394.
  • E.Brillas, B.Boye, I.Sirés, J.A.Garrido, R.M.Rodríguez, C.Arias, P.L.Cabot, C.Comninellis, Electrochemical destruction of chlorophenoxy herbicides by anodic oxidation and electro-Fenton using a boron-doped diamond electrode. Electrochim. Acta49 (2004) 4487–4496.
  • W.Luo, M.E.Abbas, L.H.Zhu, K.J.Deng, H.Q.Tang, Rapid quantitative determination of hydrogen peroxide by oxidation decolorization of methyl orange using a Fenton reaction system. Anal. Chim. Acta629 (2008) 1–5.
  • Y.Y.Chu, Y.Qian, W.J.Wang, X.L.Deng, A dual-cathode electro-Fenton oxidation coupled with anodic oxidation system used for 4-nitrophenol degradation. J. Hazard. Mater.199–200 (2012) 179–185.
  • S.Mahesh, B.Prasad, I.D.Mall, I.M.Mishra, Electrochemical degradation of pulp and paper mill wastewater. Part 1. COD and color removal. Ind. Eng. Chem. Res.45 (2006) 2830–2839.
  • X.J.Ma, M.H.Zhou, A comparative study of azo dye decolorization by electro-Fenton in two common electrolytes. J. Chem. Technol. Biotechnol.84 (2009) 1544–1549.

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