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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Effects of comprehensive function of factors on retention behavior of microparticles in gravitational field-flow fractionation
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Effects of comprehensive function of factors on retention behavior of microparticles in gravitational field-flow fractionation

机译:因子的综合功能对重力流分离中微粒保留行为的影响

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Gravitational field-flow fractionation (GrFFF) is a useful technique for separation and characterization for micrometer-sized particles. Elution behavior of micrometer-sized particles in GrFFF was researched in this study. Particles in GrFFF channel are subject to hydrodynamic lift forces (HLF), fluid inertial forces and gravity, which drive them to different velocities by carrier flow, resulting in a size-based separation. Effects of ionic strength, flow rate and viscosity as well as methanol were investigated using polystyrene latex beads as model particles. This study is devoted to experimental verification of the effect of every factor and their comprehensive function. All experiments were performed to show isolated influence of every variable factor. The orthogonal design test was used to evaluate various factors comprehensively. Results suggested that retention ratio of particles increases with increasing flow rate or the viscosity of carrier liquid by adjusting external forces acting on particles. In addition, retention ratio increases as ionic strength decreases because of decreased electrostatic repulsion between particles and channel accumulation wall. As far as methanol, there is no general trend due to the change of both density and viscosity. On the basis of orthogonal design test it was found that viscosity of carrier liquid plays a significant role in determining resolution of micrometer-sized particles in GrFFF. (C) 2016 Elsevier B.V. All rights reserved.
机译:重力场流分级分离(GrFFF)是用于分离和表征微米级颗粒的有用技术。本研究研究了微米级颗粒在GrFFF中的洗脱行为。 GrFFF通道中的颗粒会受到流体动力升力(HLF),流体惯性力和重力的作用,这些颗粒会通过载流将其驱动到不同的速度,从而导致基于尺寸的分离。使用聚苯乙烯乳胶珠作为模型颗粒,研究了离子强度,流速和粘度以及甲醇的影响。这项研究致力于对每个因素及其综合功能的效果进行实验验证。进行所有实验以显示每个可变因素的孤立影响。正交设计检验用于综合评价各种因素。结果表明,通过调节作用在颗粒上的外力,颗粒的保留率随流速或载液粘度的增加而增加。此外,由于离子和通道堆积壁之间的静电排斥力降低,保留率随着离子强度的降低而增加。至于甲醇,由于密度和粘度的变化没有普遍趋势。在正交设计测试的基础上,发现载液的粘度在确定GrFFF中微米级颗粒的分辨率方面起着重要作用。 (C)2016 Elsevier B.V.保留所有权利。

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