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Influence of slip velocity at the core of a diffuse soft particle and ion partition effects on mobility

机译:漫射软颗粒核心岩芯对流动性的影响

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摘要

Nonlinear effects on the electrophoresis of a soft particle, consisting of a rigid hydrophobic core coated with a diffuse polymer layer (PEL) suspended in an electrolyte medium, are studied. The impact of the ion partitioning effect arising due to the Born energy difference between the PEL and the electrolyte is approximated based on the equilibrium Boltzmann equation, with which the ion distribution and hence, the charge density is modified. The equations describing the electrokinetic transport comprising the Darcy-Brinkman extended Navier-Stokes equations which includes the ion partitioning effect coupled with the modified Nernst-Planck equations and Poisson equations for electric field are solved numerically. The present numerical model for the soft particle compares well with the existing theoretical solutions and experimental results in the limiting cases. A deviation from existing simplified models based on the Boltzmann distribution of ions occurs when the Debye layer polarization, relaxation and the electroosmosis induced by the PEL immobile charge become significant. The hydrophobicity of the inner core strongly influences the nonlinear electrokinetic effects by modifying the Debye layer, electroosmotic flow in the PEL and surface conduction. The results indicate that the ion partitioning can significantly increase the electrophoretic mobility of the soft particle by attenuating the shielding effect. When the Debye layer is in the order of the particle size the hydrophobicity of the core surface and the ion partitioning effect manifest the surface conduction, which implies that the Boltzmann distribution of ions is no longer valid. The core hydrophobicity and ion partitioning effect have influence on the condensation of the PEL immobile charge, which creates a significant impact on the mobility.
机译:研究了对软颗粒的电泳的非线性效应,由涂覆有悬浮在电解质介质中的漫反射聚合物层(PEL)的刚性疏水芯。基于平衡Boltzmann等式,近似地,由邻壁板和电解质之间的出生差异产生的离子分区效应的影响。描述包括达西 - Brinkman扩展Navier-Stokes方程的电动传输的等式,该方程包括与改进的NERNST-CLACK方程和用于电场的泊松方程的离子分区效果进行了数值。软粒子的现有数值模型与现有的理论解决方案相比,在限制案件中的实验结果。当由PEL固定电荷诱导的德语层偏振,弛豫和电渗成为显着的德语层偏振,弛豫和电渗,从现有的基于离子分布的现有简化模型的偏差发生。内芯的疏水性强烈影响非线性电动效应来改变邻接层,电胶质流动和表面传导。结果表明,通过衰减屏蔽效果,离子分配可以显着增加软颗粒的电泳迁移率。当Debye层按粒径的顺序核心表面的疏水性和离子分配效果表明表面传导,这意味着离子的Boltzmann分布不再有效。核心疏水性和离子分配效果对PEL Immobile电荷的冷凝产生影响,这为迁移率产生了显着的影响。

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