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Morphology and Separation Efficiency of Low-Aspect-Ratio Capillary Ultrahigh Pressure Liquid Chromatography Columns

机译:低长径比毛细管超高压液相色谱柱的形貌和分离效率

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We derive a quantitative relationship between the bed morphology and the chromatographic separation efficiency of capillary columns packed with sub-2 (mu)m particles, covering capillary inner diameters from 10 to 75 (mu)m. Our study focuses on wall effects and their impact on band broadening at increasing column-to-particle diameter (aspect) ratios. We approach these complex effects by a morphological analysis of reconstructed column segments composed of several thousand particles that were imaged by confocal laser scanning microscopy. Radial interparticle porosity profiles including wall effects are quantified through an integral porosity deviation, a scalar measure that proves to be a general descriptor of transcolumn porosity heterogeneity. It correlates with the associated transcolumn eddy dispersion, which dominates band broadening in the capillaries and is visualized in the plate height curves by a simple velocity-proportional term. Our comprehensive approach identifies the packing structure features that contribute to decreased efficiency as reflected, e.g., in subtle variations of the wall effect at different aspect ratios, or a particle size-segregation effect in larger-diameter columns as a result of an increased number of packing voids near the wall-bed interface.
机译:我们推导了床形态与填充有亚2 µm颗粒的毛细管色谱柱的色谱分离效率之间的定量关系,该色谱柱覆盖了从10到75μm的毛细管内径。我们的研究重点在于壁效应及其在色谱柱与粒径(纵横比)比增加时对谱带展宽的影响。我们通过对由数千个通过共聚焦激光扫描显微镜成像的颗粒组成的重建柱段进行形态分析来解决这些复杂的影响。包括壁效应在内的径向粒子间孔隙度分布是通过积分孔隙度偏差量化的,该偏差是一种标量度量,被证明是跨柱孔隙度非均质性的一般描述。它与相关的跨柱涡流色散相关,后者主导着毛细管中的谱带展宽,并通过简单的速度比例项在板高曲线中可视化。我们的综合方法确定了填料结构特征,这些特征会导致效率降低,例如,在不同长宽比下壁效应的细微变化,或由于直径增加而导致的大直径色谱柱中的粒径分离效应。壁床界面附近的填充空隙。

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