Wastewater Characterization for Evaluation of
Biological Phosphorus Removal

Literature Cited

 

Albertson, O.E.
1995. Is CBOD5 test viable for raw and settled wastewater? Journal of Environmental Engineering, ASCE 121(7):515-20.
American Public Health Association.
1995. Standard methods for examination of water and wastewater. 19th Ed. American Public Health Association, Washington, D.C.
Barnes, D., and P.J. Bliss.
1983. Biological control of nitrogen in wastewater treatment. E. and F. N. Spon Inc, London.
Carlson, D.E.
1971. Nitrogen removal and identification for water quality control, OWRR, Project No. 4040, Department of Civil Engineering, University of Washington, Seattle.
Christensen, M.H., and P. Harremoes.
1977. Biological denitrification of sewage: A literature review. Progress in Water Technology 8:415, 509-55.
Eckenfelder, W.W., and R.F. Weston.
1956. Kinetics of biological oxidation. Pp. 18-34 in B.J. McCabe and W.W. Eckenfelder, eds. Biological treatment of sewage and industrial wastes. Vol. 1. Rheinhold Publishing Company, New York.
Ekama, G.A., G.v.R. Marais, I.P. Siebritz, A.R. Pitman, G.F.P. Keay, L. Buchan, A. Gerber, M. Smollen.
1984. Theory, design and operation of nutrient removal activated sludge process. Water Research Commission, Pretoria, South Africa.
Environmental Protection Agency (EPA).
1982. Handbook for sampling and sample preservation of wastewater. EPA-600/4-82-029. Environmental Monitoring and Support Lab, Cincinnati, OH. 402 pp.
EnviroSim Associates, Ltd.
1993. BIOSIM activated sludge system simulation program version 2.1 user's guide. EnviroSim Associates, Ltd., Ontario, Canada.
Fuhs, G.W., and M. Chen.
1975. Phosphate removal in activated sludge process. Microbial Ecology 2:119-39.
Henze, H., C.P.L. Grady, W. Gujer, G.v.R. Marais, and T. Matsuo.
1987. Activated Sludge Model No. 1. International Association on Water Pollution Research and Control Scientific and Technical Report No. 1. London. 38 pp.
Jardin, N., and H.J. Popel.
1995. Waste activated sludge production of the enhanced biological phosphorus removal process. Pp. 511-22 in Proceedings of the 68th annual conference and exposition of the Water Environment Federation, Miami Beach, Florida, USA.
Kang, S.J., T.J. Astfalk, C.J. Englert, and R.R. Deline.
1991. A new procedure for screening feasibility of biological phosphorus removal for a wastewater. Water Science and Technology 23: 595-602.
Mamais, D., D. Jenkins, and P. Pitt.
1993. A rapid physical-chemical method for the determination of readily biodegradable soluble COD in municipal wastewater. Water Research 27(1): 195-97.
McClintock, S.A., V.M. Patterkine, and C.W. Randall.
1992. Comparison of yields and decay rate for a biological nutrient removal process and a conventional activated sludge process. Water Science and Technology 26 (9-11):2195-98.
Mullis, M.K., and E.D. Schroeder.
1971. A rapid biochemical oxygen demand test suitable for operational control. Journal of Water Pollution Control Federation 43(2): 209-15.
Nicholls, M.A., and D.W. Osborn.
1979. Bacterial stress: A prerequisite for the biological removal of phosphorus. Journal of Water Pollution Control Federation 51(3):557-70.
Osborn, D.W., and H.A. Nicholls.
1978. Optimization of the activated sludge process for the biological removal of phosphorus. Progress in Water Technology 10:261-66.
Rozich, A.F., and A.F. Gaudy.
1992. Design and operation of activated sludge processes using respirometry. Lewis Publishers, Boca Raton, FL.
Sedlak, R., ed.
1991. Phosphorus and nitrogen removal from municipal wastewater. 2nd ed. Lewis Publishers, Boca Raton, FL.
Venter, S.L.V., J. Halliday, and A.R. Pitman.
1978. Optimization of the Johannesburg Olifantsvlei extended aeration plant for phosphorus removal. Progress in Water Technology 10:279-92.
Wentzel, M.C., G.A. Ekama, and G.v.R. Marais.
1990. Kinetic of nitrification denitrification biological excess phosphorus removal systems: A review. Water Science and Technology 17(11-12):57-71.
Wentzel, M.C., L.H. Lotter, G.A. Ekama, and G.v.R. Marais.
1991. Evaluation of biochemical models for biological excess phosphorus removal. Water Science and Technology 23(4-6): 567-76.

More information on this topic: Gerry Novotny


Last Revised: Tuesday July 25 2006