Electroosmotic flow in a water column surrounded by an immiscible liquid

Journal of Colloid and Interface Science
Saeid MovahedDongqing Li

Abstract

In this paper, we conducted numerical simulation of the electroosmotic flow in a column of an aqueous solution surrounded by an immiscible liquid. While governing equations in this case are the same as that in the electroosmotic flow through a microchannel with solid walls, the main difference is the types of interfacial boundary conditions. The effects of electric double layer (EDL) and surface charge (SC) are considered to apply the most realistic model for the velocity boundary condition at the interface of the two fluids. Effects on the flow field of ς-potential and viscosity ratio of the two fluids were investigated. Similar to the electroosmotic flow in microchannels, an approximately flat velocity profile exists in the aqueous solution. In the immiscible fluid phase, the velocity decreases to zero from the interface toward the immiscible fluid phase. The velocity in both phases increases with ς-potential at the interface of the two fluids. The higher values of ς-potential also increase the slip velocity at the interface of the two fluids. For the same applied electric field and the same ς-potential at the interface of the two fluids, the more viscous immiscible fluid, the slower the system moves. The viscosity of the imm...Continue Reading

References

Mar 9, 2005·Journal of Colloid and Interface Science·Yandong GaoKim Tiow Ooi
Jul 13, 2005·Journal of Colloid and Interface Science·Xiangchun Xuan, Dongqing Li
Apr 20, 2010·Journal of Colloid and Interface Science·WooSeok ChoiSang Woo Joo

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Citations

Aug 23, 2016·Advances in Colloid and Interface Science·Mengqi Li, Dongqing Li
Sep 20, 2017·Journal of Colloid and Interface Science·Junyan ZhangDongqing Li
Jan 10, 2018·The Journal of Physical Chemistry. B·Chengfa WangDongqing Li

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