Preview

Modern Science and Innovations

Advanced search

Experimental study of the EMF of the Soderbergh electrolyzer using an information monitoring system

https://doi.org/10.37493/2307-910X.2024.3.1

Abstract

An information system for monitoring the electromagnetic field of the electrochemical electrolysis process has been developed, the main element of which is a spatially distributed sensor. This system makes it possible to identify the characteristics of the electromagnetic field at several points in space. Also, such a system can be used to support decision-making when developing a control action. An electrical circuit of a spatially distributed electromagnetic field sensor has been developed, theoretical and experimental studies have been carried out; the analysis of the results of the study was carried out.

About the Authors

E. A. Boronko
Saint Petersburg Mining University Empress Catherine II
Russian Federation

Egor A. Boronko – Postgraduate Student of the Department of System Analysis and Management

Saint Petersburg



Yu. V. Ilyushin
Saint Petersburg Mining University Empress Catherine II
Russian Federation

Yuri V. Ilyushin – Dr. Sci. (Techn.)

Saint Petersburg



А. N. Ilyushina
Saint Petersburg Technical College of Management and Commerce
Russian Federation

Alyona N. Ilyushina – Teacher of Special Disciplines

Saint Petersburg



O. A. Belyaevsky
Leading engineer of «Technoavtomatika» LLC OP
Russian Federation

Oleg A. Belyaevsky – Leading Engineer

Irkutsk



K. V. Martirosyan
North-Caucasus Federal University, Pyatigorsk Institute (branch)
Russian Federation

Karina V. Martirosyan – PhD, Associate Professor of the Department of Management Systems and Information Technologies

Pyatigorsk



References

1. Rastyannikova EV. Global non-ferrous metallurgy resources market. Eastern Analytics. 2020;(3):109-130. https://doi.org/10.31696/2227-5568-2020-03-109-130. EDN PHOINF. (In Russ.).

2. Volod'kina AA, Nemchinova NV, Dryagin DV. Studying the Effect of Technological Parameters of the Electrolysis Process on the Current Efficiency in the Production of Aluminum. Molodezhnyi vestnik IRGTU = Youth Bulletin of Irkutsk National Research Technical University. 2020;10(4):64-68. EDN EOWUCV. (In Russ.).

3. Gorlanov ES, Brichkin VN, Polyakov AA. Electrolytic production of aluminium. Review. Part 1. Conventional areas of development. Tsvetnye metally = Non-ferrous metals. 2020;(2):36-41. https://doi.org/10.17580/tsm.2020.02.04. EDN UTKUVO. (In Russ.).

4. Novozhilov IM, Boronko EA, Mazakov EB et al. Analytical Review of Electromagnetic Field Monitoring Systems for Primary Aluminum Production Plants. LETI Transactions on Electrical Engineering & Computer Science. 2023;16(7):26-38. https://doi.org/10.32603/2071-8985-2023-16-7-26-38. EDN RNVVHL. (In Russ.).

5. Boronko EA. Novozhilov IM. Designing an Information System for Monitoring the Electromagnetic Field of a Power Plant. In Proceedings of the 2024 Conference of YoungResearchers in Electrical and Electronic Engineering (ElCon), St. Petersburg, 29-31 January 2024, St. Petersburg. 2024;331-334. https://doi.org/10.1109/ElCon61730.2024.10468204

6. Boronko EA, Kapostei EI, Novozhilov IM. Development of an Information System for Monitoring the Electromagnetic Field of a Metallurgical Furnace. LETI Transactions on Electrical Engineering & Computer Science. 2023;16(5):33-48. https://doi.org/10.32603/2071-8985-2023-16-5-33-48. EDN WCXDPH. (In Russ.).

7. Ilyushin YuV, Kapostey YuV. Developing a Comprehensive Mathematical Model for Aluminium Production in a Soderberg Electrolyser. Energies. 2023;16(17):6313. https://doi.org/10.3390/en16176313. EDN: MTMGXW


Review

For citations:


Boronko E.A., Ilyushin Yu.V., Ilyushina А.N., Belyaevsky O.A., Martirosyan K.V. Experimental study of the EMF of the Soderbergh electrolyzer using an information monitoring system. Modern Science and Innovations. 2024;(3):9-19. https://doi.org/10.37493/2307-910X.2024.3.1

Views: 135


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 2307-910X (Print)