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Journal of Environmental Science and Health, Part A
Toxic/Hazardous Substances and Environmental Engineering
Volume 50, 2015 - Issue 4
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ARTICLES

Simultaneous removal of nutrients from milking parlor wastewater using an AO2 sequencing batch reactor (SBR) system

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Pages 396-405 | Received 27 Aug 2014, Published online: 27 Feb 2015

References

  • Ying, C.; Umetsu, K.; Ihara, I.; Sakai, Y.; Yamashiro, T. Simultaneous removal of organic matter and nitrogen from milking parlor wastewater by a magnetic activated sludge (mas) process. Biores. Technol. 2010, 101(12), 4349–4353.
  • Safley Jr, L.M.; Westerman, P.W.; Barker, J.C. Fresh dairy manure characteristics and barnlot nutrient losses. Agri. Wastes 1986, 17(3), 203–215.
  • Hirooka, K.; Asano, R.; Yokoyama, A.; Okazaki, M.; Sakamoto, A.; Nakai, Y. Reduction in excess sludge production in a dairy wastewater treatment plant via nozzle-cavitation treatment: Case study of an on-farm wastewater treatment plant. Biores. Technol. 2009, 100(12), 3161–3166.
  • Chen, M.; Kim, J.H.; Kishida, N.; Nishimura, O.; Sudo, R. Enhanced nitrogen removal using c/n load adjustment and real-time control strategy in sequencing batch reactors for swine wastewater treatment. Water Sci. Technol. 2004, 49(5–6), 309–314.
  • Kishida, N.; Kim, J.; Tsuneda, S.; Sudo, R. Anaerobic/oxic/anoxic granular sludge process as an effective nutrient removal process utilizing denitrifying polyphosphate-accumulating organisms. Water Res. 2006, 40(12), 2303–2310.
  • Obaja, D.; Mace, S.; Costa, J.; Sans, C.; Mata-Alvarez, J. Nitrification, denitrification and biological phosphorus removal in piggery wastewater using a sequencing batch reactor. Biores. Technol. 2003, 87(1), 103–111.
  • Keller, J.; Subramaniam, K.; Gosswein, J.; Greenfield, P.F. Nutrient removal from industrial wastewater using single tank sequencing batch reactors. Water Sci.Technol. 1997, 35(6), 137–144.
  • Tilche, A.; Bacilieri, E.; Bortone, G.; Malaspina, F.; Piccinini, S.; Stante, L. Biological phosphorus and nitrogen removal in a full scale sequencing batch reactor treating piggery wastewater. Water Sci. Technol. 1999, 40(1), 199–206.
  • Lee, D.S.; Jeon, C.O.; Park, J.M. Biological nitrogen removal with enhanced phosphate uptake in a sequencing batch reactor using single sludge system. Water Res. 2001, 35(16), 3968–3976.
  • Ong, S.A.; Lim, P.E.; Seng, C.E. Effects of adsorbents and copper(ii) on activated sludge microorganisms and sequencing batch reactor treatment process. J. Hazard. Mater. 2003, 103(3), 263–277.
  • Sarfaraz, S.; Thomas, S.; Tewari, U.K.; Iyengar, L. Anoxic treatment of phenolic wastewater in sequencing batch reactor. Water Res. 2004, 38(4), 965–971.
  • Tsuneda, S.; Ohno, T.; Soejima, K.; Hirata, A. Simultaneous nitrogen and phosphorus removal using denitrifying phosphate-accumulating organisms in a sequencing batch reactor. Biochem. Eng. J. 2006, 27(3), 191–196.
  • Artan, N.; Tasli, R. Effect of aeration and filling patterns on nutrient removal performance in a sequencing batch reactor. Environ. Technol. 1999, 20(5), 507–513.
  • Yang, P.Y.; Wang, Z.Y. Integrating an intermittent aerator in a swine wastewater treatment system for land-limited conditions. Biores. Technol. 1999, 69(3), 191–198.
  • Ndegwa, P.M.; Wang, L.; Vaddella, V.K. Stabilisation of dairy wastewater using limited-aeration treatments in batch reactors. Biosyst. Eng. 2007, 97(3), 379–385.
  • Ndon, U.J.; Dague, R.R. Effects of temperature and hydraulic retention time on anaerobic sequencing batch reactor treatment of low-strength wastewater. Water Res. 1997, 31(10), 2455–2466.
  • Beun, J.J.; Hendriks, A.; van Loosdrecht, M.C.M.; Morgenroth, E.; Wilderer, P.A.; Heijnen, J.J. Aerobic granulation in a sequencing batch reactor. Water Res. 1999, 33(10), 2283–2290.
  • Wang, Y.; Peng, Y.; Stephenson, T. Effect of influent nutrient ratios and hydraulic retention time (hrt) on simultaneous phosphorus and nitrogen removal in a two-sludge sequencing batch reactor process. Bioresour. Technol. 2009, 100(14), 3506–3512.
  • Ng, W.J.; Ong, S.L.; Hu, J.Y. Denitrifying phosphorus removal by anaerobic/anoxic sequencing batch reactor. Water Sci. Technol. 2001, 43(3), 139–146.
  • Li, X.; Zhang, R.H. Intergrated Anaerobic and Aerobic Sequencing Batch Reactor Systems for Dairy Wastewater Treatment. Proceedings of the Annual International Meeting of American Society of Agricultural Engineers, Sacremento, California: ASAE#: 012294, 2001.
  • Janssen, P.M., Operating experiences on two full-scale plants, retrofitted for biological phosphorus removal. Nutrient Removal from Wastewaters; Horan, N.J., Ed.; Technomic Publishing Company, Inc.: Lancaster, Pennsylvania, 1994; 305–340.
  • vanLoosdrecht, M.C.M.; Pot, M.A.; Heijnen, J.J. Importance of bacterial storage polymers in bioprocesses. Water Sci. Technol. 1997, 35(1), 41–47.
  • Mamais, D.; Jenkins, D.; Prrr, P. A rapid physical-chemical method for the determination of readily biodegradable soluble cod in municipal wastewater. Water Res. 1993, 27(1), 195–197.
  • Munch, E.V.; Lant, P.; Keller, J. Simultaneous nitrification and denitrification in bench-scale sequencing batch reactors. Water Res. 1996, 30(2), 277–284.
  • Guillen-Jimenez, E.; Alvarez-Mateos, P.; Romero-Guzman, F.; Pereda-Marin, J. Bio-mineralization of organic matter in dairy wastewater, as affected by ph. The evolution of ammonium and phosphates. Water Res. 2000, 34(4), 1215–1224.
  • Kishida, N.; Kim, J.H.; Chen, M.X.; Sasaki, H.; Sudo, R. Effectiveness of oxidation-reduction potential and ph as monitoring and control parameters for nitrogen removal in swine wastewater treatment by sequencing batch reactors. J. Biosci. Bioeng. 2003, 96(3), 285–290.
  • Chang, C.H.; Hao, O.J. Sequencing batch reactor system for nutrient removal: Orp and ph profiles. J. Chem. Technol. Biotechnol. 1996, 67(1), 27–38.
  • ANUA. Nitrogen Reduction in Wastewater Treatment. ANUA: Greensboro, NC, 2011.
  • Obaja, D.; Mace, S.; Mata-Alvarez, J. Biological nutrient removal by a sequencing batch reactor (sbr) using an internal organic carbon source in digested piggery wastewater. Biores. Technol. 2005, 96(1), 7–14.
  • Cohen, Y.; Kirchmann, H. Increasing the ph of wastewater to high levels with different gases—CO2 stripping. Water Air Soil Poll. 2004, 159(1), 265–275.
  • Myers, M.; Myers, L.; Okey, R.W. The use of oxidation-reduction potential as a means of controlling effluent ammonia concentration in an extended aeration activated sludge system. In Water Environment Federation Annual Technical Exhibition and Conference, Washington DC, Oct 21–25, 2006; Water Environment Federation: Alexandria, VA, 2011; 5901–5926.
  • Heduit, A.; Thevenot, D.R. Relation between redox potential and oxygen levels in activated-sludge reactors. Water Sci. Technol. 1988, 21(8–9), 947–956.

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