References

  1. P. Asaithambi, L. Garlanka, N. Anatharaman, M. Matheswaran, Influence of experimental parameters in the treatment of distillery effluent by electrochemical oxidation, Separ. Sci. Technol., 47 (2012) 470–481.
  2. T. Chandrakant, V.C. Srivastava, I.D. Mall, Electrochemical treatment of a distillery wastewater: Parametric and residue disposal study, Chem. Eng. J., 148 (2009) 496–505.
  3. B. Ranjana, S.P. Upadhye, Bioremediation and Decolourization of Distillery Effluent, Degradation of Melanoidin and Decolourization of Distillery Effluent Spent wash by Bacterial Consortium, Lambert Academic Publication, 2011.
  4. P.A. Kumar, P.K. Chaudhari, Physicochemical treatment of distillery wastewater, a review, Chem. Eng. Comm., 202 (2015) 1098–1117.
  5. CPCB, Management of Distillery Wastewater, Resource Recycling Series RERES/4/2001-2002 (2002).
  6. M. Kobya, E. Demirbas, Evaluations of operating parameters on treatment of can manufacturing wastewater by electro coagulation, J. Water Proc. Eng., 8 (2015) 64–74.
  7. V. Migo. P,E.J. Del Rosario, M. Matsumura, Flocculation of melanoidins induced by inorganic ions, J. Ferment. Bioeng., 83 (1997) 287–291.
  8. Z. Liang, Y. Wang, Y. Zhou, H. Liu, Z. Wu, Variables affecting melanoidins removal from molasses wastewater by coagulation/ flocculation, Sep. Purif. Technol., 68 (2009) 382–389.
  9. Z. Liang, Y. Wang, Y. Zhou, H. Liu, Z. Wu, Stoichiometric relationship in the coagulation of melanoidins-dominated molasses wastewater, Desalination, 250 (2010) 42–48.
  10. Y. Zhou, Z. Liang, Y. Wang, Decolorization and COD removal of secondary yeast wastewater effluents by coagulation using aluminum sulfat, Desalination, 225 (2008) 301–312.
  11. M. Coca, M. Pena, G. Gonzalez, Variables affecting the efficiency of molasses fermentation wastewater ozonation, Chemosphere, 60 (2005) 1408–1415.
  12. J. Dwyer, L. Kavanagh, P. Lant, The degradation of dissolved organic nitrogen associated with melanoidin using a UV/H2O2 AOP, Chemosphere, 71 (2008) 1745–1753.
  13. P. Canizares, M. Hernández-Ortega, M.A. Rodrigo, C.E. Barrera- Diaz, G. Roa-Morales, C. Sáez, A comparison between conductive-diamond electrochemical oxidation and other advanced oxidation processes for the treatment of synthetic melanoidins, J. Hazard. Mater., 164 (2009) 120–125.
  14. Y. Satyawali, W. Verstraete, M. Balakrishnan, Integrated electrolytic treatment and adsorption for the removal of melanoidins, Clean, 38 (2010) 409–412.
  15. A. Simaratanamongkol, P. Thiravetyan, Decolorization of melanoidin by activated carbon obtained from bagasse bottom ash, J. Food Eng., 96 (2010) 14–17.
  16. 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.
  17. Y. Yavuz, EC and EF processes for the treatment of alcohol distillery wastewater, Sep. Purif. Technol., 53 (2007) 135–140.
  18. M. Kobya, S. Delipinar, Treatment of the baker’s yeast wastewater by electrocoagulation, J. Hazard. Mater., 154 (2008) 1133–1140.
  19. G.B. Raju, S. Prabhakar, S.S. Rao, K. Gopalakrishna, Pilot-scale studies on the treatment of tannery effluents by electroflotation, Int. J. Environ. Pollut., 30 (2007) 332–344.
  20. M.P. Wagh, P.D. Nemade, Treatment processes and technologies for decolourization and COD removal of distillery spent wash: a review, Int. J. Innov. Res. Adv. Eng., 7(2) (2015) 30–40.
  21. Y. Satyawali, M. Balakrishnan, Wastewater treatment in molasses based alcohol distilleries for COD and colour removal a review, J. Environ. Manage., 86 (2008) 481–497.
  22. S. Mohana, C. Desai, D. Madamwar, Biodegradation and decolorization of anaerobically treated distillery spent wash by a novel bacterial consortium, Biores. Technol., 98 (2007) 333–339.
  23. M. Kobya, E. Gengec, Decolorization of melanoidins by a electrocoagulation process using aluminium electrodes, Environ. Technol., (2012) 1–10.
  24. Standard Methods for the Examination of Water and Wastewater. 20th ed. New York: American Public Health Association, 2008.
  25. M. Al-Shannag, Z. Al Qodah, K. Alananbeh, N. Bouqellah, E. Assirey, K. Bani-Melhem, COD reduction of Baker’s yeast wastewater using batch electrocoagulation, Environ. Eng. Manage. J., 13(12) (2014) 3153–3160.
  26. C. Phalakornkule, J. Mangmeemark, K. Intrachod, B. Nuntakumjorn, Pretreatment of palm oil mill effluent by electrocoagulation and coagulation, Science Asia., 36 (2010) 3142–3149.
  27. P. Asaithambi, M. Susree, R. Sarsvanathamizhan, M. Matheswaram, Ozone assisted electrocoagulation for the treatment of distillery effluent, Desalination, 297 (2012) 1–7.
  28. IOA Standardisation Committee Europe, 001/87 (F), Iodometric method for the determination of ozone in a process gas, Brussels, 1987.
  29. Biradar, A physicochemical and biological methods for the Treatment of post anaerobic distillery spent wash Ph.D. thesis, the center for environmental science and engineering Indian institute of technology, Bombay, 2003.
  30. S.B. Kim, F. Hayase, H. Kato, Decolourization and degradation products of melanoidins on ozonolysis, Agric. Biol. Chem., 49(3) (1985) 785–792.
  31. S. Srivastava, P. Bose, V. Tare, Enhancement of chemical oxygen demand and color removal of distillery spent wash by ozonation, Water Environ. Res., 78(4) (2006) 409–420.
  32. P.C. Sangave, A.B. Pandit, Combination of ozonation with conventional aerobic oxidation for distillery wastewater treatment, Chemosphere, 68 (2007) 32–41.
  33. S. Contreras, M. Rodriguez, F. Al. Momani, S.C. Sans, S. Esplugas, Contribution of the ozonation pretreatment to the biodegradation of aqueous solution of 2,4-dichlorophenol, Water Res., 37 (2003) 3164–3171.
  34. C. Gottschalk, J.A. Libra, A. Saupe, Ozonation of Water and Wastewater–A Practical Guide Understanding Ozone and its Application, 2nd ed., Weinheim, Germany, Wiley-VCH, 2000.
  35. H. Liu, Y. Shi, X. Zhou, A. Xie, C.Y. Hu, Mechanism on impact of internal electrolysis pretreatment on biodegradability of yeast wastewater, Chinese Sci. Bull., 54 (2009) 2124–2130.
  36. D. Ghernaout, B. Ghermaout, A. Saiba, A. Boucherit, A. Kellil, Removal of humic acids by continuous electromagnetic treatment followed by electrocoagulation in batch using aluminium electrodes, Desalination, 239 (2009) 295–308.
  37. V. Khandegar, A.K. Saroha, Electrochemical treatment of distillery spent wash using aluminum and iron electrodes, Chinese J. Chem. Eng., 20(3) (2012) 439–443.
  38. J.D. Mane, S. Modi, S. Nagawade, S.P Phadnis, V.M. Bhandari, Treatment of spent wash using modified bagasse and colour removal studies, Bio. Technol., 97 (2006) 1752–1755.
  39. P. Manisankar, C. Rani, S. Visanathan, Effect of halides in the electrochemical treatment of distillery effluent, Chemosphere, 57 (2004) 961–966.
  40. M. Kobya, O.T. Can, M. Bayramoglu, Treatment of textile wastewaters by electrocoagulation using iron and aluminum electrodes, J. Hazard. Mater. B., 100 (2003) 163–178.
  41. S. Gupta, A. Sharma, T. Saratchandra, S. Malik, V. Waindeskar, S. Mudliar, Effect of ozone pretreatment on biodegradability enhancement and biogas generation potential from biomethanated distillery effluent, Ozone: Sci. Eng., 37 (2015) 411–419.
  42. G. Kaushik, I.S. Thakur, Adsorption of coloured pollutants from distillery spent wash by native and treated fungus: Neurospora intermedia, Environ. Sci. Pollut. Res., 20 (2013) 1070– 1078.
  43. W. Den, C. Huang, Electrocoagulation for removal of Silica nano-particles from chemical-mechanical-planarization wastewater, Colloids Surface A: Physicochem. Eng. Asp., 254 (2005) 81–89.
  44. P. Samaras, C. Tsioptsias, D. Petridis, N. Athanasakis, I. Lemonidis, A. Deligiannis, Post- treatment of molasses wastewater by electrocoagulation and process optimization through response surface analysis, J. Environ. Manage., 164 (2015) 104– 113.
  45. X.M. Chen, G. Chen, P.L. Yue, Investigation on the electrolysis voltage of electrocoagulation, Chem. Eng. Sci., 57(13) (2002) 2449–2455.
  46. V. Kuokkanen, T. Kuokkaen, J. Ramo, U. Lassi, Recent application of electrocoagulation in treatment of water and wastewater– a review, Green Sustain. Chem., 3 (2013) 89–121.
  47. F. Ozyonar, B. Karagozoglu, Operating cost analysis and treatment of domestic wastewater by electrocoagulation using aluminum electrodes, Polish J. Environ. Stud., 20(1) (2011) 173–179.
  48. F. Ozyonar. B. Karagozoglu, Systematic assessment of electrocoagulation for the treatment of marble processing wastewater, Int. J. Environ. Sci. Technol., 9 (2012) 637–646.