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Title Study of the Magnetic Water Treatment Mechanism
Authors Vaskina, Iryna Valeriivna  
Roi, Ihor Oleksandrovych  
Pliatsuk, Leonid Dmytrovych  
Vaskin, Roman Anatoliiovych
Yakhnenko, Olena Mykolaivna  
ORCID http://orcid.org/0000-0001-5904-9640
http://orcid.org/0000-0002-6106-3449
http://orcid.org/0000-0003-0095-5846
http://orcid.org/0000-0001-8455-1536
Keywords wastewater
aqueous solutions
water isomers
magnetic induction
non-equilibrium system
librational fluctuations
Type Article
Date of Issue 2020
URI https://essuir.sumdu.edu.ua/handle/123456789/82622
Publisher Bentus
License Creative Commons Attribution 4.0 International License
Citation Vaskina, I., Roi, I., Plyatsuk, L., Vaskin, R., Yakhnenko, O. (2020). Study of the Magnetic Water Treatment Mechanism. Journal of Ecological Engineering, 21(2), 251-260. https://doi.org/10.12911/22998993/116341
Abstract The main problem of widespread introduction of magnetic water treatment (MWT) in the processes of water and wastewater treatment is the lack of modern research aimed at studying the mechanisms of MWT effects, in particular the influence on the physicochemical properties of aqueous solutions. This study explains the effect of MWT taking into account the physical and chemical properties of aqueous solutions due to the presence of the quantum differences in water molecules. All the MWT effects are related to the change in the physicochemical properties of aqueous solutions. It is due to the presence of two types of water molecule isomers and their librational oscillations. The result of MWT is a violation of the synchronism of para-isomers vibrations, with the subsequent destruction of ice-like structures due to the receiving of energy from collisions with other water molecules (ortho-isomers). One of the most important MWT effects includes the change in the nature and speed of the physicochemical processes in aqueous solutions by increasing the number of more physically and chemically active ortho-isomers. The MWT parameters specified in the work allow explaining the nature of most MWT effects and require developing the scientific and methodological principles for the implementation of the MWT process and mathematical modeling of the MWT process in the water and wastewater treatment. It can be used in the design of the MWT devices taking into account the constructive and mode parameters of MWT devices.
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