Page 800 - Fundamentals of Water Treatment Unit Processes : Physical, Chemical, and Biological
P. 800

Biological Reactors                                                                              755


            Pearson, E. A., Kinetics of biological treatment, in: Gloyna E. F. and  held in London, September, 1962), Volume 2, Pergamon
                Eckenfelder Jr., W. W. (Eds.), Advances in Water Quality  Press, Macmillan Company, New York, 1964.
                Improvement, University of Texas Press, Austin, TX, 1968.  Tchobanoglous, G. and Burton, F. L. (Metalf & Eddy, Inc.), Waste-
            Pitkin, J., Effect of temperature on rate of gas generation from  water Engineering-Treatment, Disposal, Reuse, 3rd edn.,
                municipal sludge, MS Thesis, Department of Civil Engineer-  McGraw-Hill, New York, 1991.
                ing, Utah State University, Logan, UT, 1969.   USEPA, Standards for the Use and Disposal of Sewage Sludge, Final
            Prescott, L. M., Harley, J. P., and Klein, D. A., Microbiology, 6th  Rule, 40 CFR Parts 257, 403, and 503, Water Environment
                edn., McGraw-Hill, Dubuque, IA, 2005.               Federation, Stock #P0100, Alexandria, VA, 1993.
            Rittman, B. E. and McCarty, P. L., Environmental Biotechnology:  van Niekerk, A. M., Jenkins, D., and Richard, M. G., The competi-
                Principles and Applications, McGraw-Hill, New York, 2001.  tive growth of Zoogloea ramigera and Type 021N in activated
            Sawyer, C. N. and McCarty, P. L., Chemistry for Sanitary Engineers,  sludge and pure culture—A model for low F:M bulking,
                McGraw-Hill, New York, 1967.                        Journal of the Water Pollution Control Federation,59
            Stewart, M. J., Activated sludge process variations, The complete  (5):262–273, May 1987.
                spectrum, Water and Sewage Works, Part I, April 1964; Part II,  Williamson, K. and McCarty, P. L., A model of substrate utilization
                May 1964; Part III, June 1964.                      by bacterial films, Journal Water Pollution Control Feder-
            Stryer, L., Biochemistry, W. H. Freeman, New York, 1981.  ation, Washington, D.C., 48(1):9–24, January 1976a.
            Stumm, W., Discussion of paper, Rohlich, G. A., Methods for  Williamson, K. and McCarty, P. L., Verification studies of the
                removal of phosphorous and nitrogen from sewage plant efflu-  biofilm model for bacterial substrate utilization, Journal
                ents, in: Eckenfelder, W. W. (Ed.), Advances in Water Pollu-  Water Pollution Control Federation, Washington, D.C.,
                tion Research (Proceedings of the International Conference  48(2):281–296, February 1976b.
   795   796   797   798   799   800   801   802   803   804   805