References
- A. Singh, T. Saraswathy, S.T. Ramesh, New trends in electrocoagulation
for the removal of dyes from wastewater: A
review, Environ. Eng. Sci., 30(7) (2013) 333–349.
- O.T. Can, M. Kobya, E. Demirbas, M. Bayramoglu, Treatment of
the textile wastewater by combined electrocoagulation, Chemosphere,
62 (2006) 181–187.
- N. Daneshvar, A. Oladegaragoze, N. Djafarzadeh, Decolorization
of basic dye solutions by electrocoagulation: an investigation
of the effect of operational parameters, J. Hazard. Mater.,
B129 (2006) 116–122.
- P.C. Vandevivere, R. Bianchi, W. Verstraete, Treatment and
reuse of wastewater from the textile wet-processing industry:
Review of emerging technologies, J. Chem. Technol. Biotechnol.,
72 (1998) 289–302.
- S. Papic, N. Koprivanac, A.L. Bozic, A. Metes, Removal of some
reactive dyes from synthetic wastewater by combined Al(III)
coagulation/carbon adsorption process, Dyes Pigments, 62
(2004) 291–298.
- M.A. Sanroma, M. Pazos, M.T. Ricart, C. Cameselle, Electrochemical
decolourisation of structurally different dyes, Chemosphere,
57 (2004) 233–239.
- P. Saha, S. Chowdhury, S. Gupta, I. Kumar, Insight into adsorption
equilibrium, kinetics and thermodynamics of Malachite
Green onto clayey soil of Indian origin, Chem. Eng. J., 165
(2010) 874–882.
- W.T. Mook, M.A. Ajeel, M.K. Aroua, M. Szlachta, The application
of iron mesh double layer as anode for the electrochemical treatment
of Reactive Black 5 dye, J. Environ. Sci., 54 (2017) 184–195.
- G. Chen, Electrochemical technologies in wastewater treatment,
Sep. Purif. Technol., 38 (2004) 11–41.
- S. Bellebi, S. Kach, A.Z. Bouyakou, Z. Derrich, Experimental
investigation of chemical oxygen demand and turbidity
removal from cardboard paper mill effluents using combined
electrocoagulation and adsorption processes, Environ. Prog.
Sustain. Energy., 31 (2012) 361–370.
- E. Keshmirizadeh, S. Yousefi, M.K. Rofouei, An investigation
on the new operational parameter effective in Cr (VI) removal
efficiency: A study on electrocoagulation by alternating pulse
current, J. Hazard. Mater., 190(1) (2011) 119–124.
- N.V. Narayanan, M. Ganesan, Use of adsorption using granular
activated carbon (GAC) for the enhancement of removal of
chromium from synthetic wastewater by electrocoagulation,
J. Hazard. Mater., 161 (2009) 575–580.
- J. Nouri, A.H. Mahvi, E. Bazrafshan, Application of electrocoagulation
process in removal of zinc and copper from aqueous
solutions by aluminum electrodes, Int. J. Environ. Res., 4 (2010)
201–208.
- M.Y.A. Mollah, R. Schennach, J.P. Parga, D.L. Cocke, Electrocoagulation(
EC)-science and applications, J. Hazard. Mater., B 84
(2001) 29–41.
- A.H. El-Shazly, A.A. AlZahrani, S.S. AlShahrani, Improvement
of NO3– removal from wastewater by using batch electrocoagulation
unit with vertical monopolar aluminum electrodes,
Int. J. Electrochem. Sci., 6 (2011) 4141–4149.
- M.Y.A. Mollah, P. Morkovsky, J.A.G. Gomes, M. Kesmez, J. Parga,
D.L. Cocke, Fundamentals, present and future perspectives of
electrocoagulation, J. Hazard. Mater., 114 (2004) 199–210.
- S. Adamovic, M. Prica, B. Dalmacija, S. Rapajic, D. Novakovic,
Z. Pavlovic, S. Maletic, Feasibility of electrocoagulation/flotation treatment of waste offset printing developer
based on the response surface analysis, Arab. J. Chem.,
9(1) (2016) 152–162.
- P. Canizares, M. Carmona, J. Lobato, F. Martinez, M.A. Rodrigo,
Electro-dissolution of aluminum electrodes in electrocoagulation
processes, Ind. Eng. Chem. Res., 44 (2005) 4178–4185.
- P. Canizares, C. Jimenez, F. Martinez, C. Saez, M.A. Rodrigo,
Study of the electro-coagulation process using aluminium and
iron electrodes, Ind. Eng. Chem. Res., 46 (2007) 6189–6195.
- A.K. Chopra, A.K. Sharma, Removal of turbidity, COD and
BOD from secondarily treated sewage water by electrolytic
treatment, Appl. Water Sci., 3 (2013)125–132.
- I. Zongo, A.H. Maiga, J. Wéthé, G. Valentin, J.-P. Leclerc, G.
Paternotte, F. Lapicque, Electrocoagulation for the treatment
of textile wastewaters with Al or Fe electrodes: compared
variations of COD levels, turbidity and absorbance, J. Hazard.
Mater., 169 (2009) 70–76.
- I. Heidmann, W. Calmano, Removal of Zn(II), Cu(II), Ni(II),
Ag(I) and Cr(VI) present in aqueous solutions by aluminium
electrocoagulation, J. Hazard. Mater., 152 (2008) 934–941.
- G. Mouedhen, M. Feki, M. DePetrisWery, H.F. Ayedi, Behavior of
aluminum electrodes in electrocoagulation process, J. Hazard.
Mater., 150 (2008) 124–135.
- G. Mouedhen, M. Feki, M. De Petris-Wery, H.F. Ayedi, Electrochemical
removal of Cr(VI) from aqueous media using iron
and aluminum as electrode materials: Towards a better understanding
of the involved phenomena, J. Hazard. Mater., 168
(2009) 983–991.
- A. Fakhri, Investigation of mercury (II) adsorption from aqueous
solution onto copper oxide nanoparticles: optimization
using response surface methodology, Process. Saf. Environ., 93
(2015) 1–8.
- J.S. Do, M.L. Chen, Decolourization of dye-containing solutions
by electrocoagulation, J. Appl. Electrochem., 24 (1994)
785–790.
- APHA, 1992. Standard methods for examination of water and
wastewater. American Water Work Association, New York.
- S.K. Maiti, Handbook of Methods in Environmental Studies (1
and 2), ABD Publishers, Jaipur, 2004.
- M. Casillas, A. Hector, Electrocoagulation mechanism for
COD removal, Sep. Purif. Technol., 56 (2007) 204–211.
- T.H. Kim, C. Park, E.B. Shin, S. Kim, Decolorization of disperse
and reactive dyes by continuous electrocoagulation process,
Desalination, 150 (2002) 165–175.
- M.S. Secula, I. Creţescu, S. Petrescu, An experimental study of
indigo carmine removal from aqueous solution by electrocoagulation,
Desalination, 277 (2011) 227–235.
- E. Gengec, M. Kobya, E. Demirbas, A. Akyol, K. Oktor, Optimization
of baker’s yeast wastewater using response surface
methodology by electrocoagulation, Desalination, 286 (2012)
200–209.
- A. Dean, D. Voss, Design and Analysis of Experiments, Springer-Verlag, New York, 1999.
- D.C. Montgomery, Design and Analysis of Experiments, 6thed.,
John Wiley & Sons Inc., New York, 2005.
- A.I. Khuri, S. Mukhopadhyay, Response surface methodology,
WIREs Computational Statistics, 2 (2010) 128–149.
- R.-M. Gabriela, E.C. Medina, J.A. Cotero, B. Bilyeu, C.B.
Díaz, Aluminum electrocoagulation with peroxide applied
to wastewater from pasta and cookie processing, Sep. Purif.
Technol., 54(1) (2007) 124–129.
- M. Kobya, O.T. Can, M. Bayramoglu, Treatment of textile
wastewaters by electrocoagulation using iron and aluminum
electrodes, J. Hazard. Mater., B100 (2003) 163–178.
- A. Gurses, M. Yalcin, C. Dogar, Electrocoagulation of some
reactive dyes: a statistical investigation of some electrochemical
variables, Waste. Manag., (2002) 22491–22499.
- O.T. Can, M. Bayramoglu, M. Kobya, Decolorization of reactive
dye solutions by electrocoagulation using aluminum electrodes,
Ind. Eng. Chem. Res., 42 (2003) 3391–3396.
- X. Chen, G. Chen, P.L. Yue, Separation of pollutants from
restaurant wastewater by electrocoagulation, Sep. Purif. Technol.,
19 (2000) 153.
- E.A. Vik, D.A. Carlson, A.S. Eikum, E.T. Gjessing, Electrocoagulation
of potable water. Water Res., 18 (1984) 1355.
- R. Katal, H. Pahlavanzadeh, Influence of different combinations
of aluminum and iron electrode on electrocoagulation
efficiency: application to the treatment of paper mill wastewater,
Desalination, 265 (2011) 199–205.
- M. Eyvaz, M. Kirlaroglu, T.S. Aktas, E. Yuksel, The effects of
alternating current electrocoagulation on dye removal from
aqueous solutions, Chem. Eng. J., 153 (2009) 16–22.
- C.A. Martínez-Huitle, E. Brillas, Decontamination of wastewaters
containing synthetic organic dyes by electrochemical
methods: a general review, Appl. Catalysis B: Environ., 87
(2009) 105.
- S. Aber, A.R. Amani-Ghadim, V. Mirzajani, Removal of Cr(VI)
from polluted solutions by electrocoagulation: modeling of
experimental results using artificial neural network, J. Hazard.
Mater., 171 (2009) 484–490.
- Y.S. Yildiz, A.S. Koparal, S. Irdemez, B. Keskinler, Electrocoagulation
of synthetically prepared waters containing high
concentration of NOM using iron cast electrodes, J. Hazard.
Mater., B139 (2007) 373–380.
- C. Raghavacharya, Color removal from industrial effluents—A
comparative review of available technologies, Chem. Eng.
World., 32 (1997) 53.
- H.M. Wong, C. Shang, Y.K. Cheung, G. Chen, Chloride assisted
electrochemical disinfection. In Proceedings of the Eighth
Mainland-Taiwan Environmental Protection Conference, Tsin
Chu, Taiwan., (2002).
- C. Saez, P. Canizares, F. Martinez, M.A. Rodrigo, Improving
the efficiencies of batch coagulation processes with small
modifications in the pH, Sep. Sci. Technol., 45 (2010) 1411–
1417.
- P. Canizares, C. Jimenez, F. Martinez, M.A. Rodrigo, C. Saez,
The pH as a key parameter in the choice between coagulation
and electrocoagulation for the treatment of wastewaters, J.
Hazard. Mater., 163 (2009) 158–164.
- S. Bebelis, K. Bouzek, A. Cornell, M.G.S. Ferreira, G.H. Kelsall,
F. Lapicque, C.P. deLeon, M.A. Rodrigo, F.C. Walsh, Highlights
during the development of electrochemical engineering,
Chem. Eng. Res. Des., 91 (2013) 1998–2020.
- R. Sridhar, V. Sivakumar, V.P. Immanuel, J.P. Maran, Treatment
of pulp and paper industry bleaching effluent by
electrocoagulant process, J. Hazard. Mater., 186 (2011) 1495–
1502.
- S.H. Lin, C.F. Peng, Treatment of textile wastewater by electrochemical
method, Water. Res., 28 (1994) 277–282.
- C. Wang , D.Q. Zhang, Y.Z. Chen, Study of the relation between
electric current density and cell voltage in the process of electrocoagulation,
Industrial Water Treatment, 22(7) (2002) 28–30.
- J. Ge, J. Qu , P. Lei, H. Liu, New bipolar electrocoagulation–
electroflotation process for the treatment of laundry wastewater,
Sep. Purif. Technol., 36 (2004) 33–39.
- X. Chen, G. Chen, P.L. Yue, Separation of pollutants from
restaurant wastewater by electrocoagulation, Sep. Purif. Technol.,
19 (2000) 65–76.
- D. Ghosh, C.R. Medhi, M.K. Purkait, Treatment of fluoride
contaminated drinking water by electrocoagulation using
monopolar and bipolar electrode connection, Chemosphere,
73 (2008) 1393–1400.
- F. Shen, P. Gao, X. Chen, G. Chen, Electrochemical removal of
fluoride ions from industrial wastewater, Chem. Eng. Sci., 58
(2003) 987–993.
- N. Mameri, A.R. Yeddou, H. Lounici, D. Belhocine, H. Grib, B.
Bariou, Defluoridation of septentrional Sahara water of North
Africa by electrocoagulation process using bipolar aluminium
electrodes, Water. Res., 32 (1998) 1604–1612.
- J.C. Donini, J. Kan, J. Szynkarczuk, T.A. Hassan, K.L. Kar, The
operating cost of electrocoagulation, Can. J. Chem. Eng., 72
(1994) 1007–1012.
- L.S. Calvo, J.P. leclerc, G. Tanguy, M.C. Cames, G. Paternotte,
G. Valentin, A. Rostan, F. Lapicque, An electrocoaguhtion unit
for the purification of soluble oil wastes of high COD, Environ.
Prog., 22 (2003) 57–65.
- E. Yuksel, M. Eyvaz, E. Gurbulak, Electrochemical treatment
of colour index Reactive Orange 84 and textile wastewater by
using stainless steel and iron electrodes, Environ. Prog. Sust.
Energy., 32(1) (2013) 60–68.
- V. Khandegar, A.K. Saroha, Electrochemical treatment of effluent
from small scale dyeing unit, Indian. Chem. Eng., 55(2)
(2013a) 1–9.
- V. Khandegar, A.K. Saroha, Electrochemical treatment of textile
effluent containing Acid Red 131 dye, J. Hazard. Toxic.
Radio. Waste., 2013b (in press).
- M.C. Wei, K.S. Wang, C.L. Huang, C.W. Chiang, T.J. Chang,
S.S. Lee, S.H. Chang, Improvement of textile dye removal by
electrocoagulation with low-cost steel wool cathode reactor,
Chem. Eng. J., 192 (2012) 37–44.
- E. Pajootan, M. Arami, N.M. Mahmoodi, Binary system dye
removal by electrocoagulation from synthetic and real colored
wastewaters, J. Taiwan. Inst. Chem. Eng., 43(2) (2012)
282–290.
- F. Akbal, A. Kuleyin, Decolorization of Levafix Brilliant
Blue E-B by electrocoagulation method, Environ. Prog. Sust.
Energy., 30(1) (2011) 29–36.
- 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(2–3) (2008) 422–431.
- M.Y.A. Mollah, J.A.G. Gomes, K.K. Das, D.L. Cocke, Electrochemical
treatment of Orange II dye solution use of aluminum
sacrificial electrodes and floc characterization, J. Hazard.
Mater., 174(1–3) (2010) 851–858.
- I.A. Sengil, M. Ozacar, The decolorization of C.I. Reactive Black
5 in aqueous solution by electrocoagulation using sacrificial
iron electrodes, J. Hazard. Mater., 161(2–3) (2009) 1369–1376.
- K. Charoenlarp, W. Choyphan, Reuse of dye wastewater
through colour removal with electrocoagulation process,
Asian. J. Energy. Environ., 10(4) (2009) 250–260.
- C. Phalakornkule, S. Polgumhang, W. Tongdaung, Performance
of an electrocoagulation process in treating direct dye:
batch and continuous up flow processes, World. Acad. Sci. Eng.
Technol., 57 (2009) 277–282.
- 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(2–3) (2004) 22–431.
- Y.S. Yildiz, Optimization of Bomaplex Red CR-L dye removal
from aqueous solution by electrocoagulation using aluminum
electrodes, J. Hazard. Mater., 153(1–2) (2008) 194–200.