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Coagulation

Continuous treatability of oily wastewater from locomotive wash facilities by electrocoagulation

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Pages 583-589 | Received 10 Jan 2018, Accepted 07 Jan 2019, Published online: 22 Feb 2019

References

  • Cammarota, M.C.; Freire, D.M.G. (2006) A review on hydrolytic enzymes in the treatment of wastewater with high oil and grease content. Bioresource Technology, 97: 2195–2210. doi:10.1016/j.biortech.2006.02.030.
  • Harinarayanan Nampoothiri, M.G.; Manilal, A.M.; Soloman, P.A. (2016) Control of electrocoagulation batch reactor for oil removal from automobile garage wastewater. Procedia Technology, 24: 603–610. doi:10.1016/j.protcy.2016.05.136.
  • Manilal, A.M.; Harinarayanan Nampoothiri, M.G.; Soloman, P.A. (2017) Removal of oil and grease from automobile garage wastewater using electrocoagulation. IOP Conference Series: Materials Science and Engineering. 012082. doi:10.1088/1757-899X/206/1/012082.
  • Islam, M.S.; Hossain, M.M.M.; Sikder, M.N.A.; Morshed, M.M.; Hossain, M.B. (2013) Acute toxicity of the mixtures of grease and engine wash oil on fish, Pangasius sutchi under laboratory condition. International Journal of Life Sciences Biotechnology and Pharma Research, 2: 306–317.
  • El-Gawad, H.S.A. (2014) Oil and grease removal from industrial wastewater using new utility approach. Advanced Environmental Chemistry, 2014: 916878. doi:10.1155/2014/916878.
  • Alade, A.O.; Jameel, A.T.; Muyubi, S.A.; Abdul Karim, M.I.; Alam, M.Z. (2011) Removal of oil and grease as Emerging Pollutants of Concern (EPC) in wastewater stream. IIUM Engineering Journal, 12: 161–169.
  • Xu, X.; Zhu, X. (2004) Treatment of refectory oily wastewater by electro-coagulation process. Chemosphere, 56: 889–894. doi:10.1016/j.chemosphere.2004.05.003.
  • Pintor, A.M.A.; Vilar, V.J.P.; Botelho, C.M.S.; Boaventura, R.A.R. (2016) Oil and grease removal from wastewaters: Sorption treatment as an alternative to state-of-the-art technologies. A critical review Chemical Engineering Journal, 297: 229–255. doi:10.1016/j.cej.2016.03.121.
  • Wahi, R.; Chuah, L.A.; Choong, T.S.Y.; Ngaini, Z.; Nourouzi, M.M. (2013) Oil removal from aqueous state by natural fibrous sorbent: An overview. Separation and Purification Technology, 113: 51–63. doi:10.1016/j.seppur.2013.04.015.
  • Nidheesh, P.V.; Singh, T.S.A. (2017) Arsenic removal by electrocoagulation process: Recent trends and removal mechanism. Chemosphere, 181: 418–432. doi:10.1016/j.chemosphere.2017.04.082.
  • Nidheesh, P.V.; Gandhimathi, R. (2012) Trends in electro-Fenton process for water and wastewater treatment: An overview. Desalination, 299: 1–15. doi:10.1016/j.desal.2012.05.011.
  • Chen, G. (2004) Electrochemical technologies in wastewater treatment. Separation and Purification Technology, 38: 11–41. doi:10.1016/j.seppur.2003.10.006.
  • Bilgili, M.S.; Ince, M.; Tari, G.T.; Adar, E.; Balahorli, V.; Yildiz, S. (2016) Batch and continuous treatability of oily wastewaters from port waste reception facilities: A pilot scale study. Journal of Electroanalytical Chemistry, 760: 119–126. doi:10.1016/j.jelechem.2015.11.024.
  • Anantha Singh, T.S.; Ramesh, S.T. (2013) New trends in electrocoagulation for the removal of dyes from wastewater: A review. Environmental Engineering Science, 30: 333–349. https://www.scopus.com/inward/record.uri?eid=2-s2.0-84887419627&partnerID=40&md5=d3f53dfa262a073204efec999d2af6ea. doi:10.1089/ees.2012.0417.
  • Al-Qodah, Z.; Al-Shannag, M. (2017) Heavy metal ions removal from wastewater using electrocoagulation processes: A comprehensive review. Separation Science and Technology, 52: 2649–2676. doi:10.1080/01496395.2017.1373677.
  • Vasudevan, S. (2012) Effects of alternating current (AC) and direct current (DC) in electrocoagulation process for the removal of iron from water. The Canadian Journal of Chemical Engineering, 90: 1160–1169. doi:10.1002/cjce.20625.
  • Cañizares, P.; Jiménez, C.; Martínez, F.; Sáez, C.; Rodrigo, M.A. (2007) Study of the electrocoagulation process using aluminum and iron electrodes. Industrial & Engineering Chemistry Research, 46: 6189–6195. doi:10.1021/ie070059f.
  • Vasudevan, S.; Lakshmi, J. (2011) Effects of alternating and direct current in electrocoagulation process on the removal of cadmium from water - A novel approach. Separation and Purification Technology, 80: 643–651. doi:10.1016/j.seppur.2011.06.027.
  • Vasudevan, S.; Lakshmi, J. (2012) Effect of alternating and direct current in an electrocoagulation process on the removal of cadmium from water. Water Science and Technology, 65: 353–360. doi:10.2166/wst.2012.069.
  • Vasudevan, S.; Lakshmi, J.; Sozhan, G. (2012) Optimization of electrocoagulation process for the simultaneous removal of mercury, lead, and nickel from contaminated water. Environmental Science and Pollution Research, 19: 2734–2744. doi:10.1007/s11356-012-0773-8.
  • Vasudevan, S.; Kannan, B.S.; Lakshmi, J.; Mohanraj, S.; Sozhan, G. (2011) Effects of alternating and direct current in electrocoagulation process on the removal of fluoride from water. Journal of Chemical Technology & Biotechnology, 86: 428–436. doi:10.1002/jctb.v86.3.
  • Vasudevan, S.; Lakshmi, J.; Sozhan, G. (2012) Simultaneous removal of Co, Cu, and Cr from water by electrocoagulation. Toxicological & Environmental Chemistry, 94: 1930–1940. doi:10.1080/02772248.2012.742898.
  • Al-Shannag, M.; Bani-Melhem, K.; Al-Anber, Z.; Al-Qodah, Z. (2013) Enhancement of COD-nutrients removals and filterability of secondary clarifier municipal wastewater influent using electrocoagulation technique. Separation Science and Technology, 48: 673–680. doi:10.1080/01496395.2012.707729.
  • Thirugnanasambandham, K.; Sivakumar, V.; Shine, K. (2016) Studies on treatment of egg processing industry wastewater using electrocoagulation method: Optimization using response surface methodology. Desalination and Water Treatment, 57: 21721–21729. doi:10.1080/19443994.2015.1129504.
  • Sridhar, R.; Sivakumar, V.; Prakash Maran, J.; Thirugnanasambandham, K. (2014) Influence of operating parameters on treatment of egg processing effluent by electrocoagulation process. International Journal of Environmental Science and Technology, 11: 1619–1630. doi:10.1007/s13762-013-0301-5.
  • Gandhimathi, R.; Babu, A.; Nidheesh, P.V.; Ramesh, S.T.; Anantha Singh, T.S. (2015) Laboratory study on leachate treatment by electrocoagulation using fly ash and bottom ash as supporting electrolytes. Journal of Hazardous, Toxic, and Radioactive Waste, 19: 04014033. doi:10.1061/(ASCE)HZ.2153-5515.0000240.
  • Lafi, W.K.; Al-Anber, M.; Al-Anber, Z.A.; Al-Shannag, M.; Khalil, A. (2010) Coagulation and advanced oxidation processes in the treatment of olive mill wastewater (OMW). Desalination and Water Treatment, 24: 251–256. doi:10.5004/dwt.2010.1567.
  • Aswathy, P.; Gandhimathi, R.; Ramesh, S.T.; Nidheesh, P.V. (2016) Removal of organics from bilge water by batch electrocoagulation process. Separation and Purification Technology, 159: 108–115. doi:10.1016/j.seppur.2016.01.001.
  • Al-Shannag, M.; Lafi, W.; Bani-Melhem, K.; Gharagheer, F.; Dhaimat, O. (2012) Reduction of COD and TSS from paper industries wastewater using electro-coagulation and chemical coagulation. Separation Science and Technology, 47: 700–708. doi:10.1080/01496395.2011.634474.
  • Kumar, A.; Nidheesh, P.V.; Suresh Kumar, M. (2018) Composite wastewater treatment by aerated electrocoagulation and modified peroxi-coagulation processes. Chemosphere, 205: 587–593. doi:10.1016/j.chemosphere.2018.04.141.
  • Al-Shannag, M.; Al-Qodah, Z.; Bani-Melhem, K.; Qtaishat, M.R.; Alkasrawi, M. (2015) Heavy metal ions removal from metal plating wastewater using electrocoagulation: Kinetic study and process performance. Chemical Engineering Journal, 260: 749–756. doi:10.1016/J.CEJ.2014.09.035.
  • Sharma, D. (2014) Treatment of dairy waste water by electro coagulation using aluminum electrodes and settling, filtration studies. International Journal of ChemTech Research, 6: 591–599.
  • Mollah, M.Y.A.; Schennach, R.; Parga, J.R.; Cocke, D.L. (2001) Electrocoagulation (EC)- Science and applications. Journal of Hazardous Materials, 84: 29–41. doi:10.1016/S0304-3894(01)00176-5.
  • Tir, M.; Moulai-Mostefa, N. (2008) Optimization of oil removal from oily wastewater by electrocoagulation using response surface method. Journal of Hazardous Materials, 158: 107–115. doi:10.1016/j.jhazmat.2008.01.051.
  • Gönder, Z.B.; Balcıoğlu, G.; Vergili, I.; Kaya, Y. (2017) Electrochemical treatment of carwash wastewater using Fe and Al electrode: Techno-economic analysis and sludge characterization. Journal of Environmental Management, 200: 380–390. doi:10.1016/j.jenvman.2017.06.005.
  • Thakur, L.S.; Mondal, P. (2017) Simultaneous arsenic and fluoride removal from synthetic and real groundwater by electrocoagulation process: Parametric and cost evaluation. Journal of Environmental Management, 190: 102–112. doi:10.1016/j.jenvman.2016.12.053.
  • Kamaraj, R.; Vasudevan, S. (2015) Evaluation of electrocoagulation process for the removal of strontium and cesium from aqueous solution. Chemical Engineering Research and Design, 93: 522–530. doi:10.1016/j.cherd.2014.03.021.
  • Vasudevan, S.; Lakshmi, J.; Sozhan, G. (2010) Studies relating to removal of arsenate by electrochemical coagulation: Optimization, kinetics, coagulant characterization. Separation Science and Technology, 45: 1313–1325. doi:10.1080/01496391003775949.

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