References
- B.N. Malinovic, M.G. Pavlovic, T. Djuricic, Electro coagulation
of textile wastewater containing a mixture of borganic
dyes by iron electrode, J. Electrochem. Sci. Eng., 7 (2017) 103–110.
- B.K. Nandi, S. Patel, Effects of operational parameters on the
removal of brilliant green dye from aqueous solutions by electrocoagulation,
Arab. J. Chem., 10 (2017) S2961–S2968.
- B.K. Korbahti, P. Demirbüken, Electrochemical oxidation
of resorcinol in aqueous medium using boron-doped
diamond anode: reaction kinetics and process optimization
with response surface methodology, Front. Chem., 5 (2017)
1–14.
- M.P. Pavithra, Electrochemical oxidation of dye by using
graphite and titanium based electrodes, Int. J. Adv. Sci. Res.
Eng., 3 (2017) 247–255.
- C.A. Basha, J. Sendhil, K.V. Selvakumar, P.K.A. Muniswaran,
C.W. Lee, Electrochemical degradation of textile dyeing industry
effluent in batch and flow reactor systems, Desalination,
285 (2012) 188–197.
- D.C. Moura, M.A. Quiroz, D.R. Silva, R. Salazar, C.A.M. Huitle,
Electrochemical degradation of Acid Blue 113 dye using
TiO2-nanotubes decorated with PbO2 as anode, Environ. Nanotechnol.
Monit. Manage., 5 (2016) 13–20.
- Y. Ling, H. Xu, X. Chen, Continuous multi-cell electrochemical
reactor for pollutant oxidation, Chem. Eng. Sci., 122 (2015)
630–636.
- Y. Ling, J. Hu, Z. Qian, L. Zhu, X. Chen, Continuous treatment
of biologically treated textile effluent using a multi-cell electrochemical
reactor, Chem. Eng. J., 286 (2016) 571–577.
- I. Elaissaoui, H. Akrout, S. Grassini, D. Fulginiti, L. Bousselmi,
Role of SiOx inter layer in the electrochemical degradation of
Amaranth dye using SS/PbO2 anodes, Mate. Des., 110 (2016)
633–643.
- A.A. Najafpoor, M. Davoudi, E.R. Salmani, Decolorization
of synthetic textile wastewater using electrochemical cell
divided by cellulosic separator, J. Environ. Health Sci. Eng., 15
(2017) 1–11.
- B.K. Korbahti, A. Tanyolac, Electrochemical treatment of simulated
textile wastewater with industrial components and
Levafix Blue CA reactive dye: Optimization through response
surface methodology, J. Hazard. Mater., 151 (2008) 422–431.
- N. Daneshvar, A. Oladegaragoze, N. Djafarzadeh, Decolorization
of basic dye solutions by electrocoagulation: An investigation
of the effect of operational parameters, J. Hazard. Mater.
B., 129 (2006) 116–122.
- Z.M. Shen, D. Wu, J. Yang, T. Yuan, W.H. Wang, J.P. Jia, Methods
to improve electrochemical treatment effect of dye wastewater,
J. Hazard. Mater., 131 (2006) 90–97.
- H.S. Awad, N.A. Galwa, Electrochemical degradation of Acid
Blue and Basic Brown dyes on Pb/PbO2 electrode in the presence
of different conductive electrolyte and effect of various
operating factors, Chemosphere, 61 (2005) 1327–1335.
- P.A. Carneiro, M.E. Osugi, C.S. Fugivara, N. Boralle, M. Furlan,
M.V.B. Zanoni, Evaluation of different electrochemical methods
on the oxidation and degradation of Reactive Blue 4 in
aqueous solution, Chemosphere, 59 (2005) 431–439.
- A. Alinsafi, M. Khemis, M.N. Pons, J.P. Leclerc, A. Yaacoubi, A.
Benhammou, A. Nejmeddine. Electro-coagulation of reactive
textile dyes and textile wastewater, Chem. Eng. Process., 44
(2005) 461–470.
- A. Fernandes, A. Morao, M. Magrinho, A. Lopes, I. Goncalves,
Electrochemical degradation of C. I. Acid Orange 7, Dye. Pigm.,
61 (2004) 287–296.
- L. Szpyrkowicz, C. Juzzolino, S.N. Kaul, A comparative study
on oxidation of disperse dyes by electrochemical process,
ozone, hypochlorite and Fenton reagent, Water Res., 35 (2001)
2129–2136.
- S. Ledakowicz, M. Gonera, Optimization of oxidants dose for
combined chemical and biological treatment of textile wastewater,
Water Res., 33 (1999) 2511–2516.
- M. Ceron-Rivera, M.M. Davila-Jimenez, M.P. Elizalde-Gonzalez,
Degradation of the textile dyes Basic yellow 28 and
Reactive black 5 using diamond and metal alloys electrodes,
Chemosphere, 55 (2004) 1–10.
- K. Mojsov, Application of enzymes in the textile industry: a
review, II International Congress, Engineering, Ecology and
Materials in the Processing Industry, Jahorina, (2011) 231–239.
- American Public Health Association (APHA). Standard Methods
for the Examination of Water and Wastewater, 21st ed.;
American Public Health Association: Washington, DC, (2005).
- P. Sivakumar, P.N. Palanisamy, Packed bed column studies for
the removal of Basic blue 29 and Acid red 92 using non-conventional
adsorbent, Ind. J. Chem. Technol., 16 (2009) 301–307.
- S. Song, J. Fan, Z. He, L. Zhan, Z. Liu, J. Chen, X. Xu, Electrochemical
degradation of azo dye C.I. Reactive Red 195 by
anodic oxidation on Ti/SnO2–Sb/PbO2 electrodes, Electrochim.
Acta, 55 (2010) 3606–3613.
- R.N. Nageswara, M. Rohit, G. Nitin, P.N. Parameswaran, J.K.
Astik, Kinetics ofelectrooxidation of landfill leachate in a
three-dimensional carbon bed electrochemical reactor, Chemosphere,
76 (2009) 1206–1212.
- F. Demirel, G. Saygili, S. Sahmali, Corrosion susceptibility of
titanium covered by dental cements, J. Oral Rehabil., 30 (2003)
1162–1167.
- E. Yeager, Electrocatalysis for O2 reduction, Electrochem.
Acta., 29 (1984) 1527–1537.
- P.C. Foller, R.T. Bombard, Process for the production of mixtures
caustic soda and hydrogen peroxide via the reduction of
oxygen, J. Appl. Electrochem., 25 (1995) 613–627.
- Y. Xiong, C. He, X. Zhu, H.T. Karlsson, X. Zhu, Performance of
three-phase three-dimensional electrode reactor for the reduction
of COD in simulated wastewater containing phenol, Chemosphere,
53 (2003) 131–136.
- M. Panizza, G. Cerisola, Electrochemical oxidation of 2-naphthol
with in situ electrogenerated active chlorine, Electrochim.
Acta, 48 (2003) 1515–1519.
- M. Panizza, C. Bocca, G. Cerisola, Electrochemical treatment
of wastewater containing polyaromatic organic pollutants,
Water Res., 34 (2000) 2601–2605.
- J.B. Parasa, 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.