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首页> 外文期刊>Journal of Colloid and Interface Science >A Phenomenon of the Change in Particle Drift Velocity Direction in High-Field Electrophoresis
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A Phenomenon of the Change in Particle Drift Velocity Direction in High-Field Electrophoresis

机译:高场电泳中颗粒漂移速度方向变化的现象

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The sign-alternating electric field in rectangular impulses has been used to eliminate linear electrophoresis and to study nonlinear electrophoresis in water at strong fields. We found out that the par-ticle drift velocity could change its direction with the growth of the strength of the field. This new phenomenon has obtained its expla-nation in the framework of the Debye—Huckel theory of strong elec-trolyte where we consider a particle as a “heavy” effective ion and take into account all relevant nonlinear effects, grounding ourselves on basic physics. With the help of our theory we have succeeded in good fitting of our experimental data on black oil and A1203 particles in distilled water using reasonable values for the basic parameters such as the Debye screening length.
机译:矩形脉冲中的正负号交替电场已用于消除线性电泳并研究强电场下水中的非线性电泳。我们发现粒子漂移速度可以随着场强的增长而改变。这种新现象已经在强电解质的德拜-哈克尔理论的框架内得到了解释,在该理论中,我们将粒子视为“重”有效离子,并考虑到所有相关的非线性效应,从而使自己立足于基础物理学。借助我们的理论,我们成功地使用了基本参数(例如,德拜筛分长度)的合理值,很好地拟合了蒸馏水中黑油和A1203颗粒的实验数据。

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