Thin-layer wicking experiments were carried out using magnetically treated water and non-treated water. Two types of magnets of different constructions and strengths of the magnetic field (B = 15 mT and B = 0.27 T) were used. It was found that water circulating in the presence of a magnetic field penetrated faster into a porous layer of silica gel. This is reflected also in the changes in the electron donor and electron acceptor parameters of the surface free energy of the silica gel as calculated by using the Van Oss et al. approach. Based on this finding, it is hypothesized that changes in the water structure occur – that is, the water flow somehow destroys the network of hydrogen bonds in liquid water, while the magnetic field action promotes its formation.
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1 November 2022
Research Article|
April 11 2022
Thin-layer wicking experiments using magnetically treated water
Aleksandra Szcześ;
Department of Interfacial Phenomena, Institute of Chemical Sciences, Maria Curie-Skłodowska University, Lublin, Poland
(corresponding author: aszczes@poczta.umcs.lublin.pl)
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Emil Chibowski;
Emil Chibowski
Department of Interfacial Phenomena, Institute of Chemical Sciences, Maria Curie-Skłodowska University, Lublin, Poland
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Emilia Rzeźnik
Emilia Rzeźnik
Department of Interfacial Phenomena, Institute of Chemical Sciences, Maria Curie-Skłodowska University, Lublin, Poland
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(corresponding author: aszczes@poczta.umcs.lublin.pl)
Publisher: Emerald Publishing
Received:
March 23 2022
Accepted:
March 23 2022
Online ISSN: 2050-6260
Print ISSN: 2050-6252
ICE Publishing: All rights reserved
2022
Surface Innovations (2022) 10 (6): 395–401.
Article history
Received:
March 23 2022
Accepted:
March 23 2022
Citation
Szcześ A, Chibowski E, Rzeźnik E (2022), "Thin-layer wicking experiments using magnetically treated water". Surface Innovations, Vol. 10 No. 6 pp. 395–401, doi: https://doi.org/10.1680/jsuin.22.00999
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