Adsorption studies of non-ionic surfactants at different vegetable oil-water interfaces

The adsorption studies of non-ionic surfactants (tween 20, tween 40 and tween 80) were conducted at olive oil-water, sunflower oil-water and corn oil-water interfaces by ring detachment method with a du Nouy Tensiometer at 20 °C. A decrease in interfacial tension with an increase in surfactant conce...

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Autores principales: Hameed, Rao A., Rabbani, Mehboob-e, Shah, Syed, Khan, Shujaat A., Yameen, Muhammad A., Asad, Muhammad H.H.B., Murtaza, Ghulam
Formato: Articulo
Lenguaje:Inglés
Publicado: 2012
Materias:
Acceso en línea:http://sedici.unlp.edu.ar/handle/10915/25698
http://www.latamjpharm.org/resumenes/31/6/LAJOP_31_6_1_11.pdf
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id I19-R120-10915-25698
record_format dspace
institution Universidad Nacional de La Plata
institution_str I-19
repository_str R-120
collection SEDICI (UNLP)
language Inglés
topic Farmacia
boiling point
critical micelle concentration
interfacial tension
Adsorción
Tensión Superficial
spellingShingle Farmacia
boiling point
critical micelle concentration
interfacial tension
Adsorción
Tensión Superficial
Hameed, Rao A.
Rabbani, Mehboob-e
Shah, Syed
Khan, Shujaat A.
Yameen, Muhammad A.
Asad, Muhammad H.H.B.
Murtaza, Ghulam
Adsorption studies of non-ionic surfactants at different vegetable oil-water interfaces
topic_facet Farmacia
boiling point
critical micelle concentration
interfacial tension
Adsorción
Tensión Superficial
description The adsorption studies of non-ionic surfactants (tween 20, tween 40 and tween 80) were conducted at olive oil-water, sunflower oil-water and corn oil-water interfaces by ring detachment method with a du Nouy Tensiometer at 20 °C. A decrease in interfacial tension with an increase in surfactant concentration was observed at all the oil-water interfaces under investigation. Surface excess was calculated from Gibb’s equation while area per molecule was computed from surface excess. Surface pressure-area curves were plotted to study the states of films formed. On close examination of π-A graphs, it was indicated that all the graphs have three distinct parts. The extreme left portion (a) of the graphs represents condensed state, called solid film region, the curved region (b) of the π-A graphs corresponds to liquid film region, while the gaseous film region (c) is indicated by the shallow right hand part of the curves. The solid film region was more prominent in corn oil-water system while a more distinct gaseous film region was observed in olive oil-water system than in other oil-water systems studied. However, liquid film region was observed in all the systems investigated. The observed difference in the behaviour of surfactants at different vegetable oil-water interfaces could be attributed to the difference in types of interacting forces between the surfactant molecules and various vegetable oil phases
format Articulo
Articulo
author Hameed, Rao A.
Rabbani, Mehboob-e
Shah, Syed
Khan, Shujaat A.
Yameen, Muhammad A.
Asad, Muhammad H.H.B.
Murtaza, Ghulam
author_facet Hameed, Rao A.
Rabbani, Mehboob-e
Shah, Syed
Khan, Shujaat A.
Yameen, Muhammad A.
Asad, Muhammad H.H.B.
Murtaza, Ghulam
author_sort Hameed, Rao A.
title Adsorption studies of non-ionic surfactants at different vegetable oil-water interfaces
title_short Adsorption studies of non-ionic surfactants at different vegetable oil-water interfaces
title_full Adsorption studies of non-ionic surfactants at different vegetable oil-water interfaces
title_fullStr Adsorption studies of non-ionic surfactants at different vegetable oil-water interfaces
title_full_unstemmed Adsorption studies of non-ionic surfactants at different vegetable oil-water interfaces
title_sort adsorption studies of non-ionic surfactants at different vegetable oil-water interfaces
publishDate 2012
url http://sedici.unlp.edu.ar/handle/10915/25698
http://www.latamjpharm.org/resumenes/31/6/LAJOP_31_6_1_11.pdf
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