Analysis of the Performance of Anaerobic Biological Wastewater Treatment Systems during Operation
https://doi.org/10.17586/0021-3454-2022-65-2-140-147
Abstract
A structural model of processes interrelation in biological wastewater treatment is proposed. The model accounts for the mutual influence of physical and biochemical processes and provides an analysis of the performance of anaerobic biological treatment systems during operation. It has been proven that continuous monitoring of the technical condition of these systems is necessary, focused primarily on identifying the causes of degradation of microorganisms. Based on a general approach to diagnostics of complex technical systems, algorithms for continuous monitoring of the technical condition of an anaerobic biological wastewater treatment system are proposed, which make it possible to identify the causes of malfunctions of various nature and reduce the number of laboratory tests carried out.
Keywords
About the Author
А. А. FomenkovaRussian Federation
Anastasia A. Fomenkova — Institute of Computational Systems and Programming, Department of Computer Technologies and Software Engineering; Senior Lecturer
References
1. Dmitriev A.K., Yusupov R.M. Identifikatsiya i tekhnicheskaya diagnostika (Identification and Technical Diagnostics), Moscow, 1987, 521 р. (in Russ.)
2. Kopkin E.V., Kravtsov A.N., Myshko V.V. Analiz tekhnicheskogo sostoyaniya kosmicheskikh sredstv (Analysis of the Technical Condition of Space Vehicles), St. Petersburg, 2016, 190 р. (in Russ.)
3. Okhtilev M.Yu., Sokolov B.V., Yusupov R.M. Intellektual'nyye tekhnologii monitoringa i upravleniya strukturnoy dinamikoy slozhnykh tekhnicheskikh ob"yektov (Intelligent Technologies for Monitoring and Controlling the Structural Dynamics of Complex Technical Objects), Moscow, 2006, 408 р. (in Russ.)
4. Kazemi P., Bengoa C., Steyer J.-P., Giralt J. Process Safety and Environmental Protection, 2021, vol. 146, рр. 905–915, DOI:10.1016/j.psep.2020.12.016.
5. Sánchez-Fernández A., Baldán F.J.J., Sainz-Palmero G.I.I., Benítez J.M.M., Fuente M.J.J. Chemometr. Intell. Lab. Syst., 2018, vol. 182, рр. 57–69, DOI:10.1016/j.chemolab.2018.08.003.
6. Lardon L., Punal A., Steyer J.-P. Journal of Process Control, 2004, vol. 14, рp. 747–763, DOI: 10.1016/j.jprocont.2003.12.007.
7. Boe K., Batstone D.J., Steyer J.-P., Angelidaki I. Water Res., 2010, vol. 44, рp. 5973–5980, DOI:10.1016/j.watres.2010.07.043.
8. Alcaraz-Gonzalez V., Lopez-Banuelos R.H., Steyer J.-P., Mendez-Acosta H.O., Gonzalez-Alvarez V., Pelayo-Ortiz C. CLEAN Soil, Air, Water, 2012, vol. 40, рр. 941–949, DOI: 10.1002/clen.201100721.
9. Xiao H., Huang D., Pan Y., Liu Y., Song K. Chemometrics and Intelligent Laboratory Systems, 2017, vol. 161, рр. 96– 107, DOI:10.1016/j.chemolab.2016.12.009.
10. Hill A., Tait S., Baillie C., Virdis B., McCabe B. Biosensors and Bioelectronics, 2020, vol. 165, рр. 112409–112420, DOI: 10.1016/j.bios.2020.112409.
11. Klyucharev A.A., Fomenkova A.A. Proceedings of the St. Petersburg State Technological Institute (Technical University), 2018, no. 34(60), pp. 95–100. (in Russ.)
12. Certificate on the state registration of the computer programs №2021613417. Programmnyy modul' dlya imitatsionnogo modelirovaniya sistemy anaerobnoy ochistki stochnykh vod (Software module for simulation of an anaerobic wastewater treatment system), A.A. Fomenkova, A.A. Klyucharev. Priority 09.03.2021. (in Russ.)
Review
For citations:
Fomenkova А.А. Analysis of the Performance of Anaerobic Biological Wastewater Treatment Systems during Operation. Journal of Instrument Engineering. 2022;65(2):140-147. (In Russ.) https://doi.org/10.17586/0021-3454-2022-65-2-140-147