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Surface Tension Measurements with the Drop Profile Analysis Tensiometry—Consideration of the Surfactant Mass Balance in a Single Drop

Authors :
Talmira Kairaliyeva
Nenad Mucic
Ljiljana Spasojevic
Sandra Bucko
Jaroslav Katona
Eugene Aksenenko
Saule Aidarova
Valentin Fainerman
Alexander Makievski
Yuri Tarasevich
Reinhard Miller
Source :
Colloids and Interfaces, Vol 1, Iss 1, p 1 (2017)
Publication Year :
2017
Publisher :
MDPI AG, 2017.

Abstract

In drop profile analysis tensiometry, the ratio of drop surfaces area S to volume V is large, i.e., S/V >> 1. In such a case, the concentration of a surfactant within the drop bulk decreases due to adsorption at the drop surface. In contrast, in bubble profile analysis tensiometry, we have S/V << 1 so that depletion due to adsorption is negligible. A protocol is presented to determine the correct adsorption parameters of surfactants from surface tension data measured by bubble and drop profile analysis tensiometry. The procedure is applied to experimental data measured for selected surfactants of different adsorption activities: C10OH, CTAB, Tween 20, and the equimolar mixture SDS + DoTAB. The results show that for surfactants with higher surface activity, the differences between the surface tensions measured with the drops and bubbles profile analysis tensiometry, respectively, are larger, while for less surface-active surfactants, such as SDS, the results obtained from drop and bubble profile experiments are very close. The correction procedure is based on the same set of adsorption parameters used to fit both the experimental data obtained from drop-based measurements (which involve the depletion effects) and those data measured in a way that depletion effects are negligible.

Details

Language :
English
ISSN :
25045377 and 81747284
Volume :
1
Issue :
1
Database :
Directory of Open Access Journals
Journal :
Colloids and Interfaces
Publication Type :
Academic Journal
Accession number :
edsdoj.81747284b544304b4606d9a2c2f050c
Document Type :
article
Full Text :
https://doi.org/10.3390/colloids1010001