№8|2025
WASTEWATER TREATMENT
UDC 628.35
DOI 10.35776/VST.2025.08.02
Comparing bioreactors with activated sludge and moving bed
Part 1. Kinetic approach to the estimation of the efficiency (for discussion)
Summary
The objective of this work is to analyze the conditions that provide for moving-bed bioreactors actually surpassing the traditional activated sludge systems in efficiency. The test subject is kinetic and diffusion processes that determine the rate of substrate consumption in both types of reactors. The study uses Monod models supplemented with analytical equations describing substrate consumption in the biofilm with account of the diffusion limitations. The modes that provide for the kinetics of substrate consumption in a biofilm passing from zero order to 0.5 order and first order are considered, depending on the substrate concentration, biofilm thickness and diffusion coefficient. An analytical expression is proposed for determining the maximum substrate concentration, upon reaching which the oxidative capacity of a moving-bed bioreactor exceeds the similar indicator of an activated sludge bioreactor. Numerical examples and engineering formulas for practical application are given. The obtained results provide for estimating the real potential of moving-bed bioreactors and identifying the cases where their use is truly justified from the point of view of kinetics and diffusion, rather than perceived as a universal solution.
Key words
wastewater , biological treatment , activated sludge , biofilm , moving bed , Monod kinetics , diffusion limitations , permeability criterion , maximum concentration
For citation: Kolbasov G. A., Korolev M. A., Raff P. A., Usmanov R. R. Comparing bioreactors with activated sludge and moving bed. Part 1. Kinetic approach to the estimation of the efficiency (for discussion). Vodosnabzhenie i Sanitarnaia Tekhnika, 2025, no. 8, pp. 14–20. DOI: 10.35776/VST.2025.08.02. (In Russian).
The further text is accessible on a paid subscription.
For authorisation enter the login/password.
Or subscribe
REFERENCES
- Хенце М., Армоэс П., Ля-Кур-Янсен Й., Арван Э. Очистка сточных вод: биологические и химические процессы / Перевод с английского; под редакцией С. В. Калюжного. – М.: Мир, 2004. 480 с.
- Henze М., Harremoёs P., La Cour Jansen J., Arvin E. Ochistka stochnykh vod. Biologicheskie i khimicheskie protsessy [Wastewater Treatment. Biological and chemical processes. Translated from English under the editorship of S. V. Kaliuzhnyi. Moscow, Mir Publ., 2004, 480 p.].
- Andreottola G., Foladori P., Ragazzi M. Upgrading of a small wastewater treatment plant in a cold climate region using a moving bed biofilm reactor (MBBR) system. Water Science and Technology, 2000, v. 41, no. 1, pp. 177–185.
- McQuarrie J. P., Boltz J. P. Moving bed biofilm reactor technology: Process applications, design, and performance. Water Environment Research, 2011, v. 83, no. 6, pp. 560–575.
- Ødegaard H. Innovations in wastewater treatment: the moving bed biofilm process. Water Science and Technology, 2006, v. 53, no. 9, pp. 7–33.
- Horn H., Lackner S. Modeling of biofilm systems: A review. Advances in Biochemical Engineering/Biotechnology, 2014, v. 146, pp. 53–76.
- Morgenroth E., Eberl H., Van Loosdrecht M. C. M. Evaluating 3-D and 1-D mathematical models for mass transport in heterogeneous biofilms. Water Science and Technology, 2000, v. 41, pp. 347–356.
- Morgenroth E., Wilderer P. A. Influence of detachment mechanisms on competition in biofilms. Water Research, 2000, v. 34, pp. 417–426.
- Henze M., van Loosdrecht M. C. M., Ekama G. A., Brdjanovic D. Biological wastewater treatment: Principles, modelling and design. 1st ed. IWA Publishing, 2008, 528 p.
- Ødegaard H., Rusten B.; Westrum T. A new moving bed biofilm reactor: Applications and results. Water Science and Technology, 1994, v. 29, no. 10–11, pp. 157–165.
- Biofilm Reactors. WEF Manual of Practice No. 35. New York: McGraw-Hill, 2010, 565 p.
- Rittmann B. E., McCarty P. L. Environmental biotechnology: Principles and applications. New York: McGraw-Hill, 2001, 754 p.
- Wanner O., Eberl H. J., Morgenroth E., Noguera D., Picioreanu C., Rittmann B. E., Loosdrecht M. V. Mathematical modeling of biofilms. IWA Publishing, 2005, 208 p.
- Tchobanoglous G., Burton F. L., Stensel H. D. Wastewater engineering: Treatment and resource recovery. 5th ed. New York: McGraw-Hill Education, 2014, 2018 p.