首页> 外文期刊>International Journal of Heat and Mass Transfer >Electroosmotic flow driven by oscillating zeta potentials: Comparison of the Poisson-Boltzmann model, the Debye-Hiickel model and the Nernst-Planck model
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Electroosmotic flow driven by oscillating zeta potentials: Comparison of the Poisson-Boltzmann model, the Debye-Hiickel model and the Nernst-Planck model

机译:振荡zeta电位驱动的电渗流:Poisson-Boltzmann模型,Debye-Hiickel模型和Nernst-Planck模型的比较

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摘要

We consider electroosmotic flows (EOF) generated by temporally varying zeta potential which is usually adopted for pumping or mixing of fluids. In this case the dynamics of ions in the electric double layer (EDL) influences the induced electric field and consequently the EOF significantly. Therefore, the appropriate model should be the Nernst-Planck (NP) model for all zeta potentials or the Debye-Huckel (DH) model for low zeta potentials rather than the Poisson-Boltzmann (PB) model which is based on the equilibrium distribution of ions in the EDL. In the present investigation, we compare the predictions from the DH model and the PB model with the exact ones from the NP model for a range of frequency of zeta potential oscillation. It is found that one may adopt the PB model when the frequency is low and the DH model when the zeta potential is low. However, for either high frequency of zeta potential oscillation or large value of zeta potential, one must adopt the NP model to get accurate predictions of EOF.
机译:我们考虑了随时间变化的zeta电位而产生的电渗流(EOF),通常用于泵送或混合流体。在这种情况下,双电层(EDL)中离子的动力学会影响感应电场,从而影响EOF。因此,合适的模型应该是适用于所有zeta电位的Nernst-Planck(NP)模型,或者适用于低zeta电位的Debye-Huckel(DH)模型,而不是基于平衡分布的Poisson-Boltzmann(PB)模型。 EDL中的离子。在本研究中,我们将DH模型和PB模型的预测与NP模型的精确预测进行了比较,以预测zeta电位振荡的频率范围。研究发现,当频率较低时,可以采用PB模型,而当ζ电位较低时,可以采用DH模型。但是,对于zeta电位振荡的高频或zeta电位的较大值,必须采用NP模型才能准确预测EOF。

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