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Archive | 2017

Experimental and Computational Analysis of Fluid Interfaces Influenced by Soluble Surfactant

Chiara Pesci; Holger Marschall; Talmira Kairaliyeva; V. Ulaganathan; R. Miller; Dieter Bothe

The present contribution is the result of a collaboration between the Max Planck Institute of Colloids and Interfaces and the Technical University of Darmstadt (MMA group). The main objective is to give a quantitative description of fluid interfaces influenced by surfactants, comparing experimental and computational results. Surfactants are amphiphilic molecules subject to ad- and desorption processes at fluid interfaces. In fact, they accumulate at the interface, modifying the respective interfacial properties. Since these interfaces are moving, continuously deforming and expanding, the local time-dependent interfacial coverage is the most relevant quantity. The description of such processes poses severe challenges both to the experimental and to the simulation sides. Two prototypical problems are considered for comparison between experiments and simulations: the formation of droplets under the influence of surfactants and rising bubbles in aqueous solutions contaminated by surfactants. Direct Numerical Simulations (DNS) provide valuable insights into local quantities such as local surfactant distribution and surface tension, but at high computational costs and restricted to short time frames. On the other hand, experiments can give global quantities necessary for the validation of the numerical procedures and can afford longer time frames. The two methodologies thus yield complementary results which help to understand such complex interfacial phenomena.


European Physical Journal-special Topics | 2013

Characterization methods for liquid interfacial layers

A. Javadi; N. Mucic; M. Karbaschi; J.Y. Won; M. Lotfi; Abhijit Dan; V. Ulaganathan; Georgi Gochev; A. V. Makievski; V. I. Kovalchuk; N. M. Kovalchuk; J. Krägel; R. Miller


Colloids and Surfaces A: Physicochemical and Engineering Aspects | 2012

Adsorption and shear rheology of β-lactoglobulin/SDS mixtures at water/hexane and water/MCT interfaces

V. Ulaganathan; Björn Bergenståhl; J. Krägel; R. Miller


Colloids and Surfaces A: Physicochemical and Engineering Aspects | 2014

Influence of β-lactoglobulin and its surfactant mixtures on velocity of the rising bubbles

V. Ulaganathan; M. Krzan; Marizeh Lotfi; Stanislav S. Dukhin; Volodja I. Kovalchuk; A. Javadi; D. Z. Gunes; C. Gehin-Delval; K. Malysa; R. Miller


Colloids and Surfaces A: Physicochemical and Engineering Aspects | 2017

β-Lactoglobulin adsorption layers at the water/air surface: 2. Dilational rheology: Effect of pH and ionic strength

V. Ulaganathan; I. Retzlaff; J.Y. Won; Georgi Gochev; D. Z. Gunes; C. Gehin-Delval; Martin E. Leser; Boris A. Noskov; R. Miller


Colloids and Surfaces A: Physicochemical and Engineering Aspects | 2016

Effect of pH and electrolyte concentration on rising air bubbles in β-lactoglobulin solutions

V. Ulaganathan; Georgi Gochev; C. Gehin-Delval; Martin E. Leser; D. Z. Gunes; R. Miller


Colloids and Surfaces A: Physicochemical and Engineering Aspects | 2014

Bubble in flow field: A new experimental protocol for investigating dynamic adsorption layers by using capillary pressure tensiometry

Marizeh Lotfi; D. Bastani; V. Ulaganathan; R. Miller; A. Javadi


Colloids and Surfaces A: Physicochemical and Engineering Aspects | 2017

Mixed adsorption mechanism for the kinetics of BLG interfacial layer formation at the solution/tetradecane interface

J.Y. Won; Georgi Gochev; V. Ulaganathan; J. Krägel; E. V. Aksenenko; V. B. Fainerman; R. Miller


Colloids and Surfaces A: Physicochemical and Engineering Aspects | 2017

Effect of solution pH on the adsorption of BLG at the solution/tetradecane interface

J.Y. Won; Georgi Gochev; V. Ulaganathan; J. Krägel; E. V. Aksenenko; V. B. Fainerman; R. Miller


Colloids and Surfaces A: Physicochemical and Engineering Aspects | 2017

Dilational visco-elasticity of BLG adsorption layers at the solution/tetradecane interface – Effect of pH and ionic strength

J.Y. Won; Georgi Gochev; V. Ulaganathan; J. Krägel; E. V. Aksenenko; V. B. Fainerman; R. Miller

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E. V. Aksenenko

National Academy of Sciences

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