Research article | Open Access | Peer review: yes
Received: 12.03.2022 | Accepted: 15.12.2022 | Available online: 25.12.2022
Numerical studies of electrochemical water activation
Muhammadiev Ashraf1, Baymahanov Kenzhemirza2, Mustafaev Mustafa Gylman ogly3
, YUsupov Dilshod Rashidovich4,
Ergashev Gofur Muydinovich4
1 Kokand branch of Tashkent State Technical University named after Islam Karimov, Kokand, Republic of Uzbekistan
2 South Kazakhstan State University named after M. Auezov, Shymkent, Republic of Kazakhstan
3 Institute of Soil Science and Agrochemistry of the National Academy of Sciences of Azerbaijan, Baku, Azerbaijan
4 Namangan Civil Engineering Institute, Namangan, Republic of Uzbekistan
DOI: 10.35688/2413-8452-2022-04-002
Abstract
The purpose of the study is numerical modeling of the operation of a chemical electric water activator. The tasks of the study included calculations of the power required to heat water in the anode chamber to 70 °C with a stepwise increase in the temperature difference from 10 to 70 ° C with a step of 10 °C. It is noted that activated aqueous solutions have found wide use in all areas of human activity due to their unique properties. This is crop production, animal husbandry, poultry, beekeeping, medical construction, household needs, etc. The meaning of electrochemical activation is that diluted solutions of mineral salts as a result of anode or cathodic treatment in a diaphragm flow electric activator are transferred to an activated state characterized by abnormal physicochemical activity. The obtained results show that as the power supplied to the electric activator increases, the resistance of water in the anode chamber decreases. As the temperature increases, the resistance of the water also drops. Similar conclusions were made for the diaphragm of the electric activator. The obtained empirical dependencies can be used in calculations of water electrical activation.
Keywords
electrical activation, solutions, water, electrochemical activation, anolyte, catholyte, heating
Cite
Muhammadiev A., Baymahanov K., Mustafaev M.M.G., YUsupov D.R., Ergashev G.M. Numerical studies of electrochemical water activation // Ekologiya i stroitelstvo. 2022. # 4. P. 11–18. DOI: 10.35688/2413-8452-2022-04-002.
© 2022 The Author(s), Ekologiya i Stroitelstvo.