Calculation Of Interfacial Tensions Between Macromolecular Solutions And Soltrol-130 From Contact Angles Measurements
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Date
2013-02
Journal Title
Journal ISSN
Volume Title
Publisher
ARPN Journal of Engineering and Applied Sciences
Abstract
The determination of the surface tension of some liquids or solutions has been carried out using a tensiometer.
The determination of the contact angle between the liquids and a planar surface has also been carried out using
photography. Polar and dispersive contributions of the surface tension were obtained by calculation while the polarities of
the liquids and solutions were determined applying Wu equations. This method gave the different results for solutions
prepared from macromolecular compounds (acroleine - ethanolamine macromolecular solution 1g/l, acroleine -
diethanolamine macromolecular solution 1g/l, polyglutaraldehyde-ethanolamine macromolecular solution 0.7 g/l and
polyglutaraldehyde - diethanolamine macromolecular solution 1 g/l) synthesized by Malonda from glutaraldehyde and
acroleine. The dispersive and polar contributions of the surface tension were computed and used to calculate the interfacial
tensions of solutions by the simple measurement of the contact angle. The results have revealed that the computed
interfacial tensions were comparable to the values measured directly by the tensiometer for polyglutaraldehyde-
ethanolamine macromolecular solution 0.7 g/l and polyglutaraldehyde - diethanolamine macromolecular solution 1 g/l)
making an interface with Soltrol-130 of 17.1 and 16.9 dynes/cm compared to direct measured values of 17.2 and 17.7
dynes/cm respectively representing 1% and 5% error, respectively.
Description
Keywords
Surface tension, Interfacial tension, Contact angle, Polarity, Dispersive, Polar contributions
Citation
Sinayobye, E., Mensah-Brown, H., Yaya, A., Kakane, V. C. K., & Baryeh, E. A. (2013). Calculation of interfacial tensions between Macromolecular solutions and soltrol-130 from contact angles measurements. ARPN Journal of Engineering and Applied Sciences, 8, 99-104.