References

  1. H. Zollinger, Color Chemistry, 2nded., VCH Verlagsgesell- Schaft. (1991).
  2. J.R. Easton, Colourin Dye House Effluent, P Cooper (Society of Dyers and Colourists), UK., 9 (1995).
  3. N. Kirby, R. Marchant, G. McMullan, Decolourisation of synthetic textile dyes by Phlebiatremellosa, FEMS Microbiol. Lett., 188(1) (2000) 93–96.
  4. T. Robinson, G. McMullan, R. Marchant, P. Nigam, Remediation of dyes in textile effluent: a critical review on current treatment technologies with a proposed alternative, Bioresour Technol., 77(3) (2001) 247–255.
  5. S. Meriç, D. Kaptan, T. Ölmez, Color and COD removal from wastewater containing Reactive Black 5 using Fenton’s oxidation process, Chemosphere, 54(3) (2004) 435–441.
  6. T. Estlander, Allergic dermatoses and respiratory diseases from reactive dyes, Contact Dermatitis, 18(5) (1988) 290–297.
  7. R. Nilsson, R. Nordlinder, U. Wass, B. Meding, L. Belin, Asthma, rhinitis, and dermatitis in workers exposed to reactive dyes, Br. J. Ind. Med., 50(1) (1993) 65–70.
  8. K.L. Hatch, H.I. Maibach, Textile dye dermatitis, J. Am. Acad. Dermatol., 32(4) (1995) 631–639.
  9. B.M. Manzini, A. Motolese, A. Conti, G. Ferdani, S. Seidenari, Sensitization to reactive textile dyes in patients with contact dermatitis, Contact Dermatitis, 34(3) (1996) 172–175.
  10. S.M. Wilkinson, K. McGechaen, Occupational allergic contact dermatitis from reactive dyes, Contact Dermatitis, 35(6) (1996) 376–376.
  11. H.S. Park, M.K. Lee, B.O. Kim, K.J. Lee, J.H. Roh, Y.H. Moon C.S. Hong, Clinical and immunologic evaluations of reactive dyeexposed workers, J. Allergy Clin. Immunol. Pract., 87(3) (1991) 639–649.
  12. A.J. Roos, R.M. Ray, D.L. Gao, K.J. Wernli, E.D. Fitzgibbons, F. Ziding, H. Checkoway, Colorectal cancer incidence among female textile workers in Shanghai, China: a case-cohort analysis of occupational exposures, Cancer Causes Control., 16(10) (2005) 1177–1188.
  13. C.A. Gonzales, E. Riboli, G. Lopez-Abente, Bladder cancer among workers in the textile industry: Results of a Spanish case-control study, Am. J. Ind. Med., 14(6) (1988) 673–680.
  14. K.M. Wollin, B.D. Gorlitz, Comparison of genotoxicity of textile dyestuffs in Salmonella mutagenicity assay, in vitro micronucleus assay, and single cell gel/comet assay, J. Env. Pathology Toxicol Oncolgy, 23(4) (2004) 267–278.
  15. A. Birhanlı, M. Ozmen, Evaluation of the toxicity and teratogenity of six commercial textile dyes using the frog embryo teratogenesis assay–Xenopus, Drug Chem. Toxicol., 28(1) (2005) 51–65.
  16. S. Koparal, Y. Yavuz, C. Gurel, U.B. Ogutveren, Electrochemical degradation and toxicity reduction of C.I. Basic Red 29 solution and textile wastewater by using diamond anode, J. Hazard Mater., 145(1) (2007) 100–108.
  17. H. Wang, Q. Li, N. He, Y. Wang, D. Sun, W. Shao, Y. Lu, Removal of anthraquinone reactive dye from wastewater by batch hydrolytic–aerobic recycling process, SEP PURIF TECHNOL., 67(2) (2009) 180–186.
  18. S. Song, J. Yao, Z. He, J. Qiu J. Chen, Effect of operational parameters on the decolorization of CI Reactive Blue 19 in aqueous solution by ozone-enhanced electrocoagulation, J. Hazard Mater., 152(1) (2008) 204–210.
  19. E. Petrucci, D. Montanaro, Anodic oxidation of a simulated effluent containing Reactive Blue 19 on a boron-doped diamond electrode, Chem. Eng. J. 174(2) (2011) 612–618.
  20. J.R. Guimaraes, M.G. Maniero, R.N. de Araujo, A comparative study on the degradation of RB-19 dye in an aqueous medium by advanced oxidation processes, J. Environ. Manage, 110 (2012) 33–39.
  21. X. Jiang, K. Cai, J. Zhang, Y. Shen, S. Wang, X. Tian, Synthesis of a novel water-soluble chitosan derivative for flocculated decolorization, J. Hazard. Mater., 185(2) (2011) 1482–1488.
  22. I. Koyuncu, Reactive dye removal in dye/salt mixtures by nanofiltration membranes containing vinylsulphone dyes: effects of feed concentration and cross flow velocity, Desalination, 143 (2002) 243–253.
  23. G. Moussavi, M. Mahmoudi, Removal of azo and anthraquinone reactive dyes from industrial wastewaters using MgO nanoparticles, J. Hazard. Mater., 168(2) (2009) 806–812.
  24. R. Pelegrini, P. Peralta-Zamora, A.R. de Andrade, J. Reyes, N. Duran, Electrochemically assisted photocatalytic degradation of reactive dyes, Appl. Catal B., 22(2) (1999) 83–90.
  25. E. Şayan, M.E. Edecan, An optimization study using response surface methods on the decolorization of Reactive Blue 19 from aqueous solution by ultrasound, Ultrason. Sonochem., 15(4) (2008) 530–538.
  26. M. Siddique, R. Farooq, Z.M. Khan, Z. Khan, S.F. Shaukat, Enhanced decomposition of reactive blue 19 dye in ultrasound assisted electrochemical reactor, Ultrason. Sonochem., 18(1) (2011) 190–196.
  27. Z. Wang, X. Xu, Z. Gong, F. Yang, Removal of COD, phenols and ammonium from Lurgi coal gasification wastewater using A2O-MBR system, J. Hazard Mater., 235 (2012) 78–84.
  28. A. Aleboyeh, N. Daneshvar, M.B. Kasiri, Optimization of CI Acid Red 14 azo dye removal by electrocoagulation batch process with response surface methodology, Chem. Eng. Process Intensification, 47(5) (2008) 827–832.
  29. M.O. Nkiko, A.I. Adeogun, N.A. Babarinde, O.J. Sharaibi, Isothermal, kinetics and thermodynamics studies of the biosorption of Pb (II) ion from aqueous solution using the scale of croaker fish (Genyonemuslineatus), J. Water Reuse Desal., 3(3) (2013) 239–248.
  30. O.T. Can, M. Kobya, E. Demirbasand, M. Bayramoglu, Treatment of the textile wastewater by combined electrocoagulation, Chemosphere, 62(2) (2006) 181–187.
  31. F. Ghanbari, M. Moradi, A comparative study of electrocoagulation, electrochemical Fenton, electro- Fenton and peroxi-coagulation for decolorization of real textile wastewater: electrical energy consumption and biodegradability improvement, J. Environ. Chem. Eng., 3(1) (2015) 499–506.
  32. M.Y.A. Mollah, R. Schennach, J.R. Parga, D.L. Cocke, Electrocoagulation (EC)—science and applications, J. Hazard Mater., 84(1) (2001) 29–41.
  33. I. Linares-Hernández, C. Barrera-Díaz, G. Roa-Morales, B. Bilyeu, F. Ureña-Núñez, A combined electrocoagulation– sorption process applied to mixed industrial wastewater, J. Hazard Mater., 144(1) (2007) 240–248.
  34. C.Y. Hu, S.L. Lo, W.H. Kuan, Effects of co-existing anions on fluoride removal in electrocoagulation (EC) process using aluminum electrodes, Water Res., 37(18) (2003) 4513–4523.
  35. Ş. İrdemez, Y.Ş. Yildiz, V. Tosunoğlu, Optimization of phosphate removal from wastewater by electrocoagulation with aluminum plate electrodes, SEPPURIF Technol., 52(2) (2006) 394–401.
  36. Ş. Gül, Ö. Özcan-Yıldırım, Degradation of reactive red 194 and reactive yellow 145 azo dyes by O3 and H2O2/UV-C processes, Chem. Eng. J., 155(3) (2009) 684–69.
  37. V. Khandegar, A. K. Saroha, Electrocoagulation for the treatment of textile industry effluent, J. Environ Manage: review, 128 (2013) 949–963.
  38. A.R. Khataee, M. Zarei, M. Pourhassan, Bioremediation of malachite green from contaminated water by three microalgae: neural network modeling, Clean–Soil, Air, Water, 38(1) (2010) 96–103.
  39. W. Den, C. Huang, H.C. Ke, Mechanistic study on the continuous flow electrocoagulation of silica nanoparticles from polishing wastewater, Ind. Eng. Chem. Res., 45(10) (2006) 3644–3651.
  40. J. Duan, J. Gregory, Coagulation by hydrolysing metal salts, Adv. Colloid. Interface Sci., 100 (2003) 475–502.
  41. P. Cañizares, F. Martínez, C. Jiménez, J. Lobato, M.A. Rodrigo, Coagulation and electrocoagulation of wastes polluted with dyes, Environ. Sci. Technol., 40(20) (2006) 6418–64240.
  42. N. Daneshvar, A. Oladegaragoze, N. Djafarzadeh, Decolorization of basic dye solutions by electrocoagulation: An investigation of the effect of operational parameters- N, J. Hazard. Mater., 129.(1) (2006) 116–122.
  43. A. Records, K. Sutherland (Eds.), Decanter centrifuge handbook, Elsevier. 2001.
  44. S. Lu, R.J, Pugh, E. Forssberg, Interfacial separation of particles, Elsevier, Vol 20, 2005.
  45. M.M. Nourouzi, T.G. Chuah, T.S. Choong, Optimisation of reactive dye removal by sequential electrocoagulation– flocculation method: comparing ANN and RSM prediction, Water Sci. Technol., 63(5) (2011) 984–994.
  46. I.H. Cho, K.D. Zoh, Photocatalytic degradation of azo dye (Reactive Red 120) in TiO2/UV system: optimization and modeling using a response surface methodology (RSM) based on the central composite design, Dyes Pigm., 75(3) (2007) 533–543.
  47. M.G. Moghaddam, M. Khajeh, Comparison of response surface methodology and artificial neural network in predicting the microwave-assisted extraction procedure to determine zinc in fish muscles, Food Nutr. Sci., 2(8) (2011) 803.
  48. D. Salari, A. Niaei, F. Aghazadeh, S.A. Hosseini, F. Seyednajafi, Catalytic remediation of 2-propanol on Pt-Mn/γ-Al2O3 bimetallic catalyst during catalytic combustion-Experimental study and response surface methodology (RSM) modeling, J. Environ Sci. Health A., 47(3) (2012) 351–357.
  49. A. Morshedi, M. Akbarian, Application of response surface methodology: design of experiments and optimization: a mini review, J. Fund. Appl. Life Sci., 54 (2014) 2434–2439.
  50. M. Taheri, M.R.A. Moghaddam, M. Arami, Optimization of Acid Black 172 decolorization by electrocoagulation using response surface methodology, Iranian J. Environ. Health Sci. Eng., 9(1) (2012) 23.
  51. Q. K. Beg, V. Sahai, R. Gupta, Statistical media optimization and alkaline protease production from Bacillus mojavensis in a bioreactor, Process Biochem., 39(2) (2003) 203–209.
  52. M. Muthukumar, D. Sargunamani, N. Selvakumar, J. V. Rao, Optimisation of ozone treatment for colour and COD removal of acid dye effluent using central composite design experiment, Dyes Pigm., 63(2) (2004) 127–134.
  53. J. B. Parsa, H.R. Vahidian, A.R. Soleymani, M. Abbasi, Removal of Acid Brown 14 in aqueous media by electrocoagulation: Optimization parameters and minimizing of energy consumption, Desalination, 278 (2011) 295–302.
  54. V.A. Sakkas, M.A. Islam, C. Stalikas, T.A. Albanis, Photocatalytic degradation using design of experiments: a review and example of the Congo red degradation, J. Hazard Mater., 175(1–3) (2010) 33–44.
  55. B. Merzouk, B. Gourich, A. Sekki, K. Madani, C. Vial, M. Barkaoui, Studies on the decolorization of textile dye wastewater by continuous electrocoagulation process, Chem. Eng. J. 149(1) (2009) 207–214.
  56. F. Ozyonar, S. Aksoy, Removal of salicylic acid from aqueous solutions using various electrodes and different connection modes by electrocoagulation, Int J. Electrochem. Sci., 11 (2016) 3680–3696.
  57. I. Arslan-Alaton, I. Kabdaslı, I.B. Vardar, O. Tünay, Optimization of electrocoagulation conditions for the treatment of simulated reactive dye bath effluent, J. Hazard Mater., 164 (2009) 1586–1594.
  58. J.C. Donini, J. Kan, J. Szynkarczuk, T.A. Hassan, K.L. Kar, The operating cost of electrocoagulation, Can. J. Chem. Eng., 72(6) (1994) 1007–1012.
  59. M. Bayramoglu, M. Kobya, O.T. Can, M. Sozbir, Operating cost analysis of electrocoagulation of textile dye wastewater, Sep. Purif. Technol., 37(2) (2004) 117–125.
  60. M. Kobya, E. Senturk, M. Bayramoglu, Treatment of poultry slaughterhouse wastewaters by electrocoagulation, J. Hazard. Mater., 133(1) (2006) 172–176.
  61. M. Kumar, F.I.A. Ponselvan, J.R. Malviya, V.C. Srivastava, I.D. Mall, Treatment of bio-digester effluent by electrocoagulation using iron electrodes, J. Hazard. Mater., 165(1) (2009) 345–352.
  62. R.G. Brereton, Applied Chemometrics for Scientists, John Wiley and Sons, Ltd, UK, 2007, 396 p.
  63. N. Barrak, R. Mannai, M. Zaidi, M. Kechida, A.H. Helal, Experimental design approach with response surface methodology for removal of indigo dye by electrocoagulation, J. Gep., 4(11) (2016) 50–61.
  64. P. Rantakumar, S. Chaudhary, K.C. Khilar, S.P. Mahajan, Removal of arsenic from water by electro coagulation, Chemosphere, 55(9) (2004) 1245–1252.
  65. E. Bazrafshan, A.H. Mahvi, S. Nasseri, M. Shaighi, Performance evaluation of electrocoagulation process for diazinon removal from aqueous environment by using iron electrodes, Iran. J. Environ. Health. Sci. Eng., 2(4) (2007) 127–132.
  66. T.K. Kim, Perk’s, E.B. Shin, S. Kim, Decholorization of disperse and reactive dyes by continuous electro coagulation process, Desalination, 150 (2002) 165–175.
  67. B. Zhu, D.A. Clifford, S. Chellam, Comparison of electro coagulation and chemical coagulation pre-treatment for enhanced virus removal using microfiltration membranes, Water Res., 39(20) (2005) 3098–3108.
  68. C. Phalakornkule, S. Polgumhang, W. Tongdaung, Performance of an electrocoagulation process in treating direct dye: batch and continuous upflow processes, World Acad. Sci. Eng. Technol., 57 (2009 ) 277–282.
  69. D. Ghosh, H. Solanki, M.K. Purkait, Removal of Fe (II) from tap water by electrocoagulation technique, J. Hazard. Mater., 155(1) (2008) 135–143.
  70. D.C. Montgomery, Design, Analysis of Experiments, John Wiley and Sons, Inc., New York, 1997.
  71. A. Singh, A. Srivastava, A. Tripathi, N.N. Dutt, Optimization of Brilliant Green dye removal efficiency by electrocoagulation using response surface methodology, World J. Environ. Eng., 4(2) (2016) 23–29.
  72. M.Y. Mollah, P. Morkovsky, J.A. Gomes, M. Kesmez, J. Parga, D.L. Cocke, Fundamentals, Present and future perspectives of electrocoagulation, J. Hazard. Mater., 114(1) (2004) 199–210.
  73. 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: Process Intensification, 44(4) (2005) 461–470.
  74. G.S. Halford, R. Baker, J.E. McCredden J.D. Bain, How many variables can humans process, Psychol. Sci., 16.(1) (2005) 70–76.
  75. D. Ghosh, C.R. Medhi, H. Solanki, M.K. Purkait, Decolorization of crystal violet solution by electrocoagulation, J. Environ. Prot. Sci., 2 (2008) 25–35.
  76. P.M. Lakshmi, P. Sivashanmugam, Treatment of oil tanning effluent by electrocoagulation: Influence of ultrasound and hybrid electrode on COD removal. Sep. Purif. Technol., 116 (2013) 378–384.
  77. M.S. Mahmoud, J.Y. Farah, T.E. Farrag, Enhanced removal of Methylene Blue by electrocoagulation using iron electrodes, Egypt J. Pet., 22(1) (2013) 211–216.
  78. A. Kuleyin, E.B. Balchioglu, Investigation of the removal of crystal violet dye by electrocoagulation method, Fresenius Environ. Bull., 18 (2009) 1597–1602.
  79. L.A. Sarabia, M.C. Ortiz, Response surface methodology, Comprehensive Chemometrics, 1 (2009) 345– 390.
  80. A.R. Amani-Ghadim, S. Aber, A. Olad, H. Ashassi-Sorkhabi, Optimization of electrocoagulation process for removal of an azo dye using response surface methodology and investigation on the occurrence of destructive side reactions, Chem. Eng. Process: Process Intensification, 64 (2013) 68–78.
  81. R.H. Myers, D.C. Montgomery, C.M. Anderson-Cook, Response surface methodology: process and product optimization using designed experiments, A Wiley-Interscience Publications, 2015.
  82. E.C. Harrington, The desirability function, Ind. Qual. Control, 21(10) (1965) 494–498.
  83. J.P. Wang, Y.Z. Chen, Y. Wang, S.J. Yuan, H.Q. Yu, Optimization of the coagulation-flocculation process for pulp mill wastewater treatment using a combination of uniform design and response surface methodology, Water Res., 45(17) (2011) 5633–5640.
  84. G. Derringer, R. Suich, Simultaneous optimisation of several response variables, J. Qual. Technol., 12 (1980) 214–219.
  85. M.E.R. Carmona, M.A.P. da Silva, S.G.F. Leite, Biosorption of chromium using factorial experimental design, Process Biochem., 40(2) (2005) 779–788.
  86. M. Kobya, E. Demirbas, M. Sozbir, Decolorisation of aqueous reactive dye Remazol Red 3B by electrocoagulation, Color Technol., 126(5) (2010) 282–288.
  87. C. Phalakornkule, S. Polgumhang, W. Tongdaung, B. Karakat, T. Nuyut, Electrocoagulation of blue reactive, red disperse and mixed dyes, and application in treating textile effluent, J. Environ. Manage., 91(4) (2010) 918–926.
  88. İ.A. Şengil, S. Kulac, M. Özacar, Treatment of tannery liming drum wastewater by electrocoagulation, J. Hazard. Mater., 167(1) (2009) 940–946.