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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Low-capacity channel designed for particle separation with controlled electric fields and evaluation of involved forces
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Low-capacity channel designed for particle separation with controlled electric fields and evaluation of involved forces

机译:低容量通道,用于在电场受控的情况下分离颗粒并评估作用力

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摘要

Electric field is one of the suitable physical fields applicable to particle separations. Although long rectangular channel is used for particle separation in usual electrical field flow fractionation (FFF), a short low-capacity channel can replace it if the field is precisely controlled. Several separation principles are proposed with this channel. The elution behavior of particles has revealed that the gravitational, diffusion, and hydrodynamic lift force (HLF) play important roles in the determination of the elution behavior of particles. The elution threshold voltage (V-th) was defined and experimentally determined for various system configurations and particles. The electric force no longer overcomes the other forces, and particles are taken off the wall, when the applied voltage becomes lower than V(th)center dot V-th values have allowed us not only to estimate surface charge density of a particle but also to evaluate the hydrodynamic lift force against particle. (c) 2005 Elsevier B.V. All rights reserved.
机译:电场是适用于颗粒分离的合适物理场之一。尽管在通常的电场流分级分离(FFF)中使用长矩形通道进行颗粒分离,但如果精确控制电场,则可以使用短的低容量通道代替它。此通道提出了几种分离原则。颗粒的洗脱行为表明,重力,扩散和流体动力升力(HLF)在确定颗粒的洗脱行为中起着重要作用。定义了洗脱阈值电压(V-th)并通过实验确定了各种系统配置和颗粒。当施加的电压变得低于V(th)中心点时,电场力不再克服其他作用力,并且将粒子从壁上取下。Vth值不仅使我们能够估计粒子的表面电荷密度,而且评估针对颗粒的流体动力升力。 (c)2005 Elsevier B.V.保留所有权利。

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