Title of article
Drop dispenser in a cross-junction microfluidic device: Scaling and mechanism of break-up
Author/Authors
Tan، J. نويسنده , , Xu، J.H. نويسنده , , Li، S.W. نويسنده , , Luo، G.S. نويسنده ,
Issue Information
روزنامه با شماره پیاپی 2 سال 2008
Pages
6
From page
306
To page
311
Abstract
This paper presents a new symmetrical flow route of perpendicular rupturing to realize the controllable preparation of monodisperse O/W and
W/O emulsions by using a cross-junction microfluidic device. Uniform plugs ranging from 300 to 1800 m were successfully prepared. The
effect of surfactants on two-phase flow performance, two-phase flow patterns under different continuous phase and dispersed phase flow, and the
influences of flow rates and the viscosity of continuous phase on plug length were studied. The formation mechanisms of plug flow have been
discussed. Considering both the equilibrium between shear force of the continuous flow and interfacial tension, the wetting property between
dispersed phase and walls of microchannel, and the influence of oil/water flow ratio on the shape of the interface, a quantitative equation was
developed to predict the plug length, which is consistent with the experimental results.
Keywords
Symmetrical , emulsion , Monodisperse , Microfluidic
Journal title
Chemical Engineering Journal
Serial Year
2008
Journal title
Chemical Engineering Journal
Record number
121375
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