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Journal of Environmental Science and Health, Part A
Toxic/Hazardous Substances and Environmental Engineering
Volume 50, 2015 - Issue 12
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ARTICLES

UASB reactor effluent disinfection by ozone and chlorine

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Pages 1215-1222 | Received 19 Feb 2015, Published online: 24 Aug 2015

References

  • El-Gohary, F.A.; Nasr, F.A. Cost effective pre-treatment of wastewater. Water Sci. Technol. 1999, 39, 97–103.
  • Seghezzo, L.; Lettinga, G. In Towards more sustainable sanitation systems: Anaerobic treatment of domestic wastewater in subtropical regions; Lambert Academic Publishing (LAP): Saarbrücken, Germany, 2010; 244 p.
  • von Sperling, M.; Mascarenhas, L.C.A.M. Performance of very shallow ponds treating effluents from an UASB reactor. Water Sci Technol. 2005, 51(12), 83–90.
  • Souza, J.T.; Lima, G.G.C.; Lopes, W.S.; Santo, E.C.; Oliveira Jr., J.L.O. Anaerobic effluent post-treatment applying photolytic reactor prior to agricultural use in Brazilian's semiarid region. J. Urban Environ. Engng. 2013, 7, 157–163.
  • White, G.C. Handbook of Chlorination and Alternative Disinfectants, 4th ed.; Wiley-Interscience: New York, 1999.
  • Xu, P.; Janex, M.L.; Savoye, P.; Cockx, A.; Lazarova, V. Wastewater disinfection by ozone: main parameters for process design. Water Res. 2002, 36, 1043–1055.
  • Gerrity, D.; Gamage, S.; Holady, J.C.; Mawhinney, D.B.; Quinones, O.; Trenholm, R.A.; Snyder, S.A. Pilot-scale evaluation of ozone and biological activated carbon for trace organic contaminant mitigation and disinfection. Water Res. 2011, 45, 2155–2165.
  • Hollender, J.; Zimmermann, S.G.; Koepke, S.; Krauss, M.; McArdell, C.S.; Ort, C.; H. Singer, H.; von Gunten, U.; Siegrist, H. Elimination of organic micropollutants in a municipal wastewater treatment plant upgraded with a full-scale post-ozonation followed by sand filtration. Environ. Sci. Technol. 2009, 43, 7862–7869.
  • Reungoat, J.; Escher, B.I.; Macova, M.; Argaud, F.X.; Gernjak, W.; Keller, J. Ozonation and biological activated carbon filtration of wastewater treatment plant effluents. Water Res. 2012, 46, 863–872.
  • Lee, L.Y.; Ng, H.Y.; Ong, S.L.; Hu, J.Y.; Tao, G.; Kekre, K.; Viswanath, B.; Lay, W.; Seah, H. Ozone-biological activated carbon as a pretreatment process for reverse osmosis brine treatment and recovery. Water Res. 2009, 43, 3948–3955.
  • Stanford, B.D.; Pisarenko, A.N.; Holbrook, D.R.; Snyder, S.A. Preozonation effects on the reduction of reverse osmosis membrane fouling in water reuse. Ozone Sci. Eng. 2011, 33, 379–388.
  • Blatchley, E.R.; Weng, S.C.; Afifi, M.Z.; Chiu, H.H.; Reichlin, D.B.; Jousset, S.; Erhardt, R.S. Ozone and UV254 radiation for municipal wastewater disinfection. Water Environ. Res. 2012, 84, 2017–2027.
  • Gerrity, D.; Pisarenko A.N.; Marti, E.; Trenholm, R.A.; Gerringer, F.; Reungoat, J.; Dickenson, E. Nitrosamines in pilot-scale and full-scale wastewater treatment plants with ozonation. Water Res. 2015, 72, 251–261.
  • Wert, E.C.; Rosario-Ortiza, F.L.; Druryb, D.D.; Snydera, S.A. Formation of oxidation byproducts from ozonation of wastewater. Water Res. 2007, 41, 1481–1490.
  • Bull, R.J.; Kopfler, F.C. Chloramine by-product profiles. In: Health effects of disinfectants and disinfection by-products. Prepared for the American Water Works Association Research Foundation. American Water Works Association Research Foundation: Denver, CO, 1991.
  • Glaze, W.H.; Koga, M.; Cancilla, D.; Wang, K.; Mcguire, M.J.; Liang, S.; Davis, M.K.; Tate, C.H.; Aieta, E.M. Evaluation of ozonation by-products from two California surface waters. J. AWWA 1989, 81, 66–73.
  • Yamada, H.; Somiya, I. Determination of carbonyl compounds in ozonated water by the PFBOA method. Ozone Sci. Eng. 1989, 11, 127–141.
  • Silva, G.H.R.; Daniel, L.A.; Bruning, H.; Rulkens, W.H. Anaerobic effluent disinfection using ozone: Byproducts formation. Biores. Technol. 2010, 10, 6981–6986.
  • Silva, G.H.R.; Daniel, L.A.; Bruning, H.; Rulkens, W.H. In Study of Anaerobic Effluent Disinfected with Ozone, Proceedings of the 2nd North American Conference on Ozone, Ultraviolet & Advanced Oxidation Technologies, Toronto, Canada, 2011 September, Session 7 – Ozone in Wastewater Treatment, 288-298 p.
  • Gracia R.; Aragues, J.L.; Ovelleiro, J.L. Study of the catalytic ozonation of humic substances in water and their ozonation byproducts. Ozone Sci. Eng. 1996, 18, 195–208.
  • Ko, Y.W.; Chiang, P.C.; Chang, E.E. Ozonation of p-hydroxybenzoic acid solution. Ozone Sci. Eng. 1998, 20(5), 343–360.
  • Rice, E.W.; Baird, R.B.; Eaton, A.D.; Clesceri, L.S. (Eds.). Standard methods for the Examination of Water and Waste Water, 22nd edition. American Public Health Association, American Water Works Association, Water Environment Federation: Washington, DC, 2012.
  • Glaze, W.H.; Koga, M.; Cancilla, D.; Wang, K.; Mcguire, M.J.; Liang, S.; Davis, M.K.; Tate, C.H.; Aieta, E.M. Evaluation of ozonation by-products from two California surface waters. J. AWWA 1989, 81(8), 66–73.
  • Miller, J.C.; Miller, J.N. Statistics for Analytical Chemistry, 3rd ed. Ellis Horwood PTR/Prentice Hall: New York, 1993; 233.
  • Gong, J.; Liu, Y, and Sun, X. O3 and UV/O3 oxidation of organic constituents of biotreated municipal wastewater. Water Res. 2008, 42, 1238–1244.
  • Domenjoud, B.; Tatari, C.; Esplugas, S.; Baig, S. Ozone-based processes applied to municipal secondary effluents. Ozone Sci. Eng. 2011, 33, 243–249.
  • Wu, J.J.; Park, S.; Hengemuehle, S.M.; Yokoyama, M.T.; Person, H.L.; Gerrish, J.B.; Masten, S.J. The use of ozone to reduce the concentration of malodorous metabolites in swine manure slurry. J. Agric. Eng. Res. 1999, 72, 317–327.
  • El-Rehaili, A.M. Response of BOD, COD and TOC of secondary effluents to chlorination. Water Res. 1995, 29, 1571–1577.
  • Langlais, B.; Reckhow, D.A.; Brink, D.R. Ozone in Water Treatment: Application and Engineering. Lewis Publishers: Boca Raton, FL, 1991; 569.
  • Nawrocki, J.; Świetlik, J.; Raczyk-Stanisławiak, U.; Dąbrowska, A.; Biłozor, S.; Ilecki, W. Influence of ozonation conditions on aldehyde and carboxylic acid formation. Ozone Sci. Eng. 2003, 25, 53–62.
  • Silva, G.H.R.; Daniel, L.A.; Bruning, H.; Rulkens, W.H. In Wastewater Disinfection Using Ozone: Study of By-Products Formation, Proceedings of the 6th IWA Specialty Conference on Wastewater Reclamation and Reuse for Sustainability, Antwerp, Belgium, 2007.
  • Nawrocki, J.; Kalkowska, I. Effect of pH and hydrogen peroxide on aldehyde formation in ozonation process. J. Water SRT—Aqua 1998, 47, 50–56.
  • Weinberg, H.S.; Glaze, W.H. An overview of ozonation and disinfection by-products. In Disinfection By-products in Water Treatment. The Chemistry of Their Formation and Control, Minear, R.A., Amy, G.L., Eds.; CRC Press: Boca Raton, FL; 1996.
  • World Health Organization (WHO). Concise International Chemical Assessment Document (CICAD) No. 40. Formaldehyde, World Health Organization, Geneva, 2002.
  • Nawrocki, J.; Biłozor, S. Brominated oxidation by-products in drinking water treatment. J. Water SRT – Aqua. 1997, 46, 304–232.
  • Sugaya, N.; Nakagawa, T.; Sakurai, K.; Morita, M.; Onodera, S. Analysis of aldehydes in water by head space-GC/MS. J. Health Sci. 2001, 47, 21–27.

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