TECHNICAL PAPERS
Sep 1, 1999

Speciation and Chemical Interactions in Nitrifying Biofilms. I: Model Development

Publication: Journal of Environmental Engineering
Volume 125, Issue 9

Abstract

Steady-state models of nitrifying biofilms are developed taking into account the mass transfer of neutral and ionic species, electroneutrality, pH-dependent Monod kinetics, chemical equilibrium, and the presence of a boundary layer. Due to the assumption of bulk conditions, the rigorous biofilm model often predicts the washout of one of the biofilm species involved in a series of sequential biofilm transformations such as nitrification. Coupling the rigorous biofilm model with reactor mass balances yields the rigorous reactor model, which calculates the bulk conditions where both of the biofilm species remain and is thus more widely applicable. Substantial changes in the pH across the boundary layer and the biofilm are predicted; therefore, rates of nitrification may be improved by increasing bulk pH to high (alkaline) values, which results in optimum (neutral) pH within the biofilm. Varying influent conditions such as pH and buffer capacity can result in significant changes in reactor performance with respect to complete nitrification. The validity of the nitrification models are tested by comparison of profile predictions with that of experimental data, with encouraging results.

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References

1.
Alleman, J. E. (1985). “Elevated nitrite occurrence in biological wastewater treatment systems.” Water Sci. and Technol., 17, 409–419.
2.
Bishop, P. L., Zhang, T. C., and Fu, Y. C. (1995). “Effects of biofilm structure, microbial distributions and mass transport on biodegradation processes.” Water Sci. and Technol., 31(1), 143–152.
3.
Boon, B., and Laudelot, H. (1962). “Kinetics of nitrite oxidation by Nitrobacter winogradskyi.” Biochem. J., 85, 440–447.
4.
Cussler, E. L. (1984). Diffusion: mass transfer in fluid systems. Cambridge University Press, New York.
5.
de Beer, D. ( 1990). “Microelectrode studies in biofilms and sediments,” PhD thesis, University of Amsterdam, The Netherlands.
6.
de Beer, D., Huisman, J. W., van den Heuvel, J. C., and Ottengraf, S. P. P. (1992). “The effect of pH profiles in methanogenic aggregates on the kinetics of acetate conversion.” Water Res., 26, 1329–1336.
7.
Flora, J. R. V., Suidan, M. T., Islam, S., Biswas, P., and Sakakibara, Y. (1994). “Numerical modeling of a biofilm-electrode reactor used for enhanced dentrification.” Water Sci. and Technol., 29, 10–11, 517–524.
8.
Flora, J. R. V., Suidan, M. T., Biswas, P., and Sayles, G. D. (1995a). “Modeling algal biofilms: role of carbon, light, cell surface charge, and ionic species.” Water Envir. Res., 67, 1, 87–94.
9.
Flora, J. R. V., Suidan, M. T., Biswas, P., Sayles, G. D. (1995b). “A modeling study of anaerobic biofilm systems: I, detailed biofilm modeling.” Biotechnol. Bioengrg., 46, 43–53.
10.
Flora, J. R. V., Suidan, M. T., Biswas, P., and Sayles, G. D. (1995c). “A modeling study of anaerobic biofilm systems: II, reactor modeling.” Biotechnol. Bioengrg., 46, 43–53.
11.
Gee, C. S., Pfeffer, J. T., and Suidan, M. T. (1990). “Nitrosomonas and Nitrobacter interactions in biological nitrification.”J. Envir. Engrg., ASCE, 116(1), 4–17.
12.
Hanaki, K., Wantawin, C., and Ohgaki, S. (1990). “Nitrification at low levels of dissolved oxygen with or without organic loading in a suspended-growth reactor.” Water Res., 24, 297–302.
13.
IMSL contents document, ver. 1.0. (1987). International Mathematical and Statistical Libraries, Houston.
14.
Lange's handbook of chemistry, 11th Ed. (1973). J. A. Dean, ed., McGraw-Hill, New York.
15.
Liehr, S. K., Eheart, J. W., and Suidan, M. T. (1988). “A modeling study of the effect of pH on carbon limited algal biofilms.” Water Res., 22(8), 1033–1041.
16.
Metcalf & Eddy, Inc. (1991). Wastewater engineering: treatment, disposal & reuse, 3rd Ed. McGraw-Hill, New York.
17.
Quinlan, A. V. (1984). “Prediction of the optimum pH for ammonia-N oxidation by Nitrosomonas europaea in well-aerated natural and domestic-waste waters.” Water Res., 18, 561–566.
18.
Rittmann, B. E., and McCarty, P. L. (1981). “Substrate flux into biofilms of any thickness.”J. Envir. Engrg. Div., ASCE, 107(4), 831–849.
19.
Rittmann, B. E., and Manem, J. A. (1992). “Development and experimental evaluation of a steady-state, multispecies biofilm model.” Biotechnol. Bioengrg., 39, 914–922.
20.
Robinson, R. A., and Stokes, R. H. (1970). Electrolyte solutions. Butterworth, London.
21.
Siegrist, H., and Gujer, W. (1985). “Mass transfer mechanisms in a heterotrophic biofilm.” Water Res., 19(11), 1369–1378.
22.
Siegrist, H., and Gujer, W. (1987). “Demonstration of mass transfer and pH effects in a nitrifying biofilm.” Water Res., 21, 1481–1487.
23.
Strand, S. E. (1986). “Model of ammonia and carbon oxidation in biofilms.”J. Envir. Engrg., ASCE, 112(4), 785–804.
24.
Suidan, M. T., and Wang, Y.-T. (1985). “Unified analysis of biofilm kinetics.”J. Envir. Engrg., ASCE, 111(5), 634–646.
25.
Suzuki, I., Dular, U., and Kwok, S. C. (1974). “Ammonia or ammonium ion as substrate for oxidation by Nitrosomonas europaea cells and extracts.” J. Bacteriol., 120, 556–558.
26.
Szwerinski, H., Arvin, E., and Harremoes, P. (1986). “pH decrease in nitrifying biofilms.” Water Res., 20, 971–976.
27.
Williamson, K., and McCarty, P. L. (1976). “A model of substrate utilization by bacterial films.” J. Water Pollution Control Fedn., 48(1), 9–24.

Information & Authors

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Published In

Go to Journal of Environmental Engineering
Journal of Environmental Engineering
Volume 125Issue 9September 1999
Pages: 871 - 877

History

Received: Jun 25, 1998
Published online: Sep 1, 1999
Published in print: Sep 1999

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Authors

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Member, ASCE
Grad. Student, Dept. of Civ. and Envir. Engrg., Univ. of Cincinnati, Cincinnati, OH 45221-0071.
Prof. of Envir. Engrg., Dept. of Civ. and Envir. Engrg., Univ. of Cincinnati, Cincinnati, OH.
Assoc. Prof. of Envir. Engrg., Dept. of Civ. and Envir. Engrg., Univ. of South Carolina, Columbia, SC 29208.
Res. Engr., U.S. Army Constr. Engrg. Res. Lab., Champaign, IL 61820.

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