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Articles

Treatment of synthetic petroleum refinery wastewater in a continuous electro-oxidation process

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Pages 6580-6591 | Received 05 Oct 2012, Accepted 08 Jan 2013, Published online: 06 Mar 2013

References

  • O. Chedeville, A. Tosun-Bayraktar, C. Porte, Modeling of fenton reaction for the oxidation of phenol in water. J. Autom. Methods Manage. Chem. 2 (2005) 31–36.
  • W. Spacek, R. Bauer, G. Heisler, Heterogeneous and homogeneous wastewater treatment-comparison between photodegradation with TiO2 and the photo-fenton reaction. Chemosphere 30 (1995) 477–484.
  • C.H. Kuo, C.H. Huang, Aqueous phase ozonation of chlorophenols. J. Hazard. Mater. 41 (1995) 31–45.
  • S.T. Kolaczkowski, F.J. Beltran, D.B. McLurgh, F.J. Rivas, Wet air oxidation of phenol: Factors that may influence global kinetics. Process Saf. Environ. 75 (1997) 257–265.
  • X.Y. Li, Y.H. Cui, Y.J. Feng, Z.M. Xie, J.D. Gu, Reaction pathways and mechanisms of the electrochemical degradation of phenol on different electrodes. Water Res. 39 (2005) 1972–1981.
  • C.H. Rhee, L.D. Rose, R.B. Baird, J.G. Kremer, Control of malodorous sulfur compounds in petroleum refinery wastewater, in: Proceedings of the Industrial Waste Symposia, 56th Annual Conference, Water Pollution Control Federation, Atlanta, GA, October 2–6, 1983.
  • M.A. Baig, M. Mir, Z.I. Bhatti, Removal of oil and grease from industrial effluents, Electron. J. Environ., Agric. Food Chem. 2 (2003) 577–585.
  • B. Meyssami, A.B. Kasaeian, Use of coagulants in treatment of olive oil wastewater model solutions by induced air flotation. Bioresour. Technol. 96 (2005) 303–307.
  • P. Cañizares, F. Martínez, J. Lobato, M.A. Rodrigo, Break-up of oil-in-water emulsions by electrochemical techniques, J. Hazard. Mater. 145 (2007) 233–240.
  • M. Khemis, G. Tanguy, J.P. Leclerc, G. Valentin and F. Lapicque, Electrocoagulation for the treatment of oil suspensions: relation between the rates of electrode reactions and the efficiency of waste removal, Process Saf. Environ. 83 (2005) 50–57.
  • J.M. Montgomery, Water Treatment Principles and Design. Wiley-Interscience, New York, NY, 1985.
  • N.S. Abuzaid, A.A. Bukhari, Z.M. Al-Hamouz, Ground water coagulation using soluble stainless steel electrodes. Adv. Environ. Res. 6 (2002) 325–333.
  • G. Chen, Electrochemical technologies in wastewater treatment. Sep. Purif. Technol. 38 (2004) 11–41.
  • J.Q. Jiang, N.J.D. Graham, C.M. André, G.H. Kelsall, N.P. Brandon, M.J. Chipps, Comparative performance of an electrocoagulation/flotation system with chemical coagulation/dissolved air flotation: A pilot-scale trial. Water Sci. Technol.: Water Supply. 2 (2002) 289–297.
  • I.A. Sengil, M. Ozacar, Treatment of dairy wastewaters by electrocoagulation using mild steel electrodes. J. Hazard. Mater. 137 (2006) 1197–1205.
  • B. Zhu, D.A. Clifford, S. Chellam, Comparison of electrocoagulation and chemical coagulation pretreatment for enhanced virus removal using microfiltration membranes. Water Res. 39 (2005) 3098–3108.
  • Z. Zaroual, M. Azzi, N. Saib, E. Chainet, Contribution to the study of electrocoagulation mechanism in basic textile effluent. J. Hazard. Mater. 131 (2005) 73–78.
  • M.J. Matteson, R.L. Dobson, R.W. Glenn, N.S. Kukunoor, W.H. Waits III, E.J. Clayfield, Electrocoagulation and separation of aqueous suspensions of ultrafine particles. Colloids Surf. A: Physicochem. Eng. Aspects. 104 (1995) 101–109.
  • A.E. Yilmaz, R. Boncukcuoglu, M.M. Kocakerim, B. Keskinler, The investigation of parameters affecting boron removal by electrocoagulation method, J. Hazard. Mater. 125 (2005) 160–165.
  • A.S. Koparal, U.B. Ogutveren, Removal of nitrate from water by electroreduction and electrocoagulation. J. Hazard. Mater. B89 (2002) 83–94.
  • N. Mameri, H. Lounici, D. Belhocine, H. Grib, D.L. Piron, Y. Yahiat, Defluoridation of sahara water by small plant electrocoagulation using bipolar aluminium electrodes. Sep. Purif. Technol. 24 (2001) 113–119.
  • J.R. Parga, D.L. Cocke, J.L. Valenzuela, J.A. Gomes, M. Kesmez, G. Irwin, H. Moreno, M. Weir, Arsenic removal via electrocoagulation from heavy metal contaminated groundwater in La Comarca Lagunera Mexico. J. Hazard. Mater. B124 (2005) 247–254.
  • L. Lai, S.H. Lin, Electrocoagulation of chemical mechanical polishing (CMP) wastewater from semiconductor fabrication. Chem. Eng. J. 95 (2003) 205–211.
  • M. Murugananthan, G.B. Raju, S. Prabhakar, Separation of pollutants from tannery effluents by electro flotation. Sep. Purif. Technol. 40 (2004) 69–75.
  • 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.
  • V.A. Matveevich, Electrochemical methods of natural and wastewater purifying. Elektr. Obrabotka Mater. 5 (2000) 103–114.
  • M.F. Pouet, A. Grasmick, Urban wastewater treatment by electrocoagulation and flotation. Water Sci. Technol. 31 (1995) 275–283.
  • G. Sleptsov, I. Gladkii, Y. Sokol, S. Novikova, Electrocoagulation treatment of oil emulsion wastewaters of industrial enterprises. Elektronnaya Obrabotka Materialov 6 (1987) 69–72.
  • Y. Şevki, A.S. Koparal, S. İrdemez, B. Keskinler, Electrocoagulation of synthetically prepared waters containing high concentration of NOM using iron cast electrodes. J. Hazard. Mater. 139 (2007) 373–380.
  • J.H. Yoon, Y.B. Shim, B.S. Lee, S. Choi, M.S. Won, Electrochemical degradation of phenol and 2-chlorophenol using Pt/Ti and boron-doped diamond electrodes. Bull. Korean Chem. Soc. 33 (2012) 2274–2278.
  • I. Cesarino, F.C. Moraes, T.C.R. Ferreira, M.R.V. Lanza, S.A.S. Machado, Real-time electrochemical determination of phenolic compounds after benzene oxidation. J. Electroanal. Chem. 672 (2012) 34–39.
  • Y. Liu, H.L. Liu, J. Ma, J.J. Li, Preparation and electrochemical properties of Ce–Ru–SnO2 ternary oxide anode and electrochemical oxidation of nitrophenols. J. Hazard. Mater. 213 (2012) 222–229.
  • J.R. Sun, H.Y. Lu, H.B. Lin, L.L. Du, W.M. Huang, H.D. Li, T. Cui, Electrochemical oxidation of aqueous phenol at low concentration using Ti/BDD electrode. Sep. Purif. Technol. 88 (2012) 116–120.
  • C.P. Huang, C.S. Chu, Indirect electrochemical oxidation of chlorophenols in dilute aqueous solutions, J. Environ. Eng.—ASCE, 138 (2012) 375–385.
  • G.F. Moore, J.D. Megiatto, M. Hambourger, M. Gervaldo, G. Kodis, T.A. Moore, D. Gust, A.L. Moore, Optical and electrochemical properties of hydrogen-bonded phenol-pyrrolidino[60]fullerenes. Photochem. Photobiol. Sci. 11 (2012) 1018–1025.
  • G.W. Muna, A. Kaylor, B. Jaskowski, L.R. Sirhan, C.T. Kelley, Electrocatalytic oxidation of estrogenic phenolic compounds at a nickel-modified glassy carbon electrode. Electroanalysis 23 (2011) 2915–2924.
  • F. Zhang, M.A. Li, W.Q. Li, C.P. Feng, X.Y. Jin, X. Guo, J.G. Cui, Degradation of phenol by a combined independent photocatalytic and electrochemical process. Chem. Eng. J. 175 (2011) 349–355.
  • A. Arvinte, M. Mahosenaho, M. Pinteala, A.M. Sesay, V. Virtanen, Electrochemical oxidation of p-nitrophenol using graphene-modified electrodes, and a comparison to the performance of MWNT-based electrodes. Microchim. Acta 174 (2011) 337–343.
  • A.F. Azevedo, F.A. Souza, J.T. Matsushima, M.R. Baldan, N.G. Ferreira, Detection of phenol at boron-doped nanocrystalline diamond electrodes. J. Electroanal. Chem. 658 (2011) 38–45.
  • J.J. Wei, X.P. Zhu, J.R. Ni, Electrochemical oxidation of phenol at boron-doped diamond electrode in pulse current mode. Electrochim. Acta. 56 (2011) 5310–5315.
  • J.L. Chen, J.Y. Wang, C.C. Wu, K.Y. Chiang, Electrocatalytic degradation of 2,4-dichlorophenol by granular graphite electrodes. Colloids Surf., A. 379 (2011) 163–168.
  • Y.H. Cui, Y.J. Feng, X.Y. Li, Kinetics and efficiency analysis of electrochemical oxidation of phenol: Influence of anode materials and operational conditions. Chem. Eng. Technol. 34 (2011) 265–272.
  • J.L. Chen, G.C. Chiou, C.C. Wu, Electrochemical oxidation of 4-chlorophenol with granular graphite electrodes. Desalination 264 (2010) 92–96.
  • I.D. Santos, J.C. Afonso, Dutra, behavior of a Ti/RuO2 anode in concentrated chloride medium for phenol and their chlorinated intermediates electrooxidation. Sep. Purif. Technol. 76 (2010) 151–157.
  • X.A. Qu, M. Tian, B.Q. Liao, A.C. Chen, Enhanced electrochemical treatment of phenolic pollutants by an effective adsorption and release process. Electrochim. Acta 55 (2010) 5367–5374.
  • K. Katsoufidou, S.G. Yiantsios, A.J. Karabelas, A study of ultrafiltration membrane fouling by humic acids and flux recovery by backwashing: Experiments and modeling. J. Membr. Sci. 266 (2005) 40–50.
  • N. Hankins, N. Hilal, O.O. Oluwaseun, B. Azzopardi, Inverted polarity micellar enhanced ultrafiltration for the treatment of heavy metal polluted wastewater. Desalination 185 (2005) 185–202.
  • M. Rodríguez, M. González-Muñoz, S. Luque, J. Alvarez, J. Coca, Extractive ultrafiltration for the removal of carboxylic acids, J. Membr. Sci. 274 (2005) 209–218.
  • C. Fersi, L. Gzaraand, M. Dhahbi, Treatment of textile effluents by membrane technologies. Desalination 185 (2005) 399–409.
  • S. Verbych, M. Bryk, A. Alpatova, G. Chornokur, Ground water treatment by enhanced ultrafiltration. Desalination 179 (2005) 237–244.
  • R.S. Trussell, R.P. Merlo, S.W. Hermanowicz, D. Jenkins, The effect of organic loading on process performance and membrane fouling in a submerged membrane bioreactor treating municipal wastewater. Water Res. 40 (2006) 2675–2683.
  • G. Nakhla, A. Lugowski, J. Patel, V. Rivest, Combined biological and membrane treatment of food-processing wastewater to achieve dry-ditch criteria: Pilot and full-scale performance. Bioresour. Technol. 97 (2006) 1–14.
  • P. Artiga, E. Ficara, F. Malpei, J.M. Garrido, R. Méndez, Treatment of two industrial wastewaters in a submerged membrane bioreactor. Desalination 179 (2005) 161–169.
  • T.L. Machenbach, H. Ødegaard, Coagulation/submerged hollow-fibre ultrafiltration for natural organic matter removal. Water Supply. 3 (2003) 401–407.
  • P.S. Lerch, R. Gimbel, Research experiences in direct potable water treatment using coagulation/ultrafiltration. Water Sci. Technol. 5 (2005) 221–229.
  • X. Chen, H. Deng, Removal of humic acids from water by hybrid titanium-based electrocoagulation with ultrafiltration membrane processes. Desalination 300 (2012) 51–57.
  • M. Ben-Sasson, Y.M. Lin, A. Adin, Electrocoagulation-membrane filtration hybrid system for colloidal fouling mitigation of secondary-effluent. Sep. Purif. Technol. 87 (2011) 63–70.
  • G. Sharma, H.K. Shon, R. Aryal, S. Phuntsho, Performance evaluation of microfiltration with electrocoagulation and chemical coagulation pretreatment. Desalin. Water Treat. 34 (2011) 141–149.
  • N.P. Gamage, S. Chellam, Aluminum electrocoagulation pretreatment reduces fouling during surface water microfiltration. J. Membr. Sci. 379 (2011) 97–105.
  • O. Yahiaoui, H. Lounici, N. Abdi, N. Drouiche, N. Ghaffour, A. Pauss, N. Mameri, Treatment of olive mill wastewater by the combination of ultrafiltration and bipolar electrochemical reactor processes. Chem. Eng. Process. 50 (2011) 37–41.
  • M. Ben Sasson, A. Adin, Fouling mitigation by iron-based electroflocculation in microfiltration: Mechanisms and energy minimization. Water Res. 44 (2010) 3973–3981.
  • M. Ben Sasson, A. Adin, Fouling mechanisms and energy appraisal in microfiltration pretreated by aluminum-based electroflocculation. J. Membr. Sci. 352 (2010) 86–94.
  • T.C. Timmes, H. Kim, B. Dempsey, Electrocoagulation pretreatment of seawater prior to ultrafiltration: Pilot-scale applications for military water purification systems. Desalination 250 (2010) 6–13.
  • M. Misbahuddin, Characterization and Treatment of a Petrochemical Wastewater for Reuse. King Fahd University of Petroleum and Minerals, Main Library, 1989.
  • N.S. Abuzaid, G.F. Nakhla, Design and economic aspects of activated carbon adsorption in relation to the effect of dissolved oxygen. Environ. Prog. 15 (1996) 128–134.
  • A. Dimolglo, H.Y. Akbulut, F. Cihan, M. Karpuzcu, Petrochemical wastewater treatment by means of clean electrochemical technologies. Clean Tech. Environ. Policy. 6 (2004) 288–295.
  • P. Garcés, L.G. Andión, F. Cases, R. Lapuente, E. Morallón, E J.L. Vázquez, Corrosion performance of the electropymerized phenol coating on stainless steel electrodes in cement filtering solutions: polarization resistance, voltametric and FTIR spectroscopy study, J. Corros. Sci. Eng. 2 (1999) Paper 7.
  • P. Cañizares, F. Martínez, J. García-Gómez, C. Sáez, M.A. Rodrigo, Combined electrooxidation and assisted electrochemical coagulation of aqueous phenol wastes. J. Appl. Electrochem. 32 (2004) 1241–1246.
  • C.N. Swayer, P.L. McCarty, G.N. Parkin, Chemistry for Environmental Engineering, McGraw International, New York, NY, 1994.
  • A. Dukhin, P. Goetz, Evolution of water-in-oil emulsion controlled by droplet-bulk ion exchange: Acoustic, electroacoustic, conductivity and image analysis. Dispersion Technol. 253 (2005) 51–64.

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