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径向柱床密度梯度影响下分析型液相色谱柱中并行分段进出口流概念的效率增益限制。

Efficiency gain limits of the parallel segmented inlet and outlet flow concept in analytical liquid chromatography columns suffering from radial transcolumn packing density gradients.

机构信息

Vrije Universiteit Brussel, Department of Chemical Engineering, Pleinlaan 2, 1050 Brussels, Belgium.

出版信息

J Chromatogr A. 2012 Oct 5;1258:66-75. doi: 10.1016/j.chroma.2012.08.035. Epub 2012 Aug 17.

DOI:10.1016/j.chroma.2012.08.035
PMID:22939209
Abstract

The maximal gain in efficiency that can be expected from the use of the segmented column end fittings that were recently introduced to alleviate the effect of transcolumn packing density gradients has been quantified and generalized using numerical computations of the band broadening process. It was found that, for an unretained compound in a column with a parabolic packing density gradient, the use of a segmented inlet or a segmented outlet allows to eliminate about 60-100% of the plate height contribution (H(tc)) originating from a parabolic transcolumn velocity gradient in a d(c)=4.6 mm column. In a d(c)=2.1 mm column, these percentages change from 10 to 100%. Using a combined segmented in- and outlet, H(tc) can be reduced by about 90-100% (d(c)=4.6 mm column) or 20-100% (d(c)=2.1 mm column). The strong variation of these gain percentages is due to fact that they depend very strongly on the column length and the flow rate. Dimensionless graphs have been established that allow to directly quantify the effect for each specific case. It was also found that, in agreement with one's physical intuition, trans-column velocity profiles that are more flat in the central region benefit more from the concept than sharp, parabolic-like profiles. The gain margins furthermore tend to become smaller with increasing retention and increasing diffusion coefficient.

摘要

使用最近引入的分段柱端配件可以最大程度地提高效率,这些配件缓解了柱内填充密度梯度的影响。通过对带展宽过程的数值计算,对这种效率增益进行了量化和概括。研究发现,对于在抛物线填充密度梯度柱中未保留的化合物,使用分段入口或分段出口可以消除约 60-100%的来自柱内抛物线速度梯度的板高贡献(H(tc))。在 d(c)=4.6 mm 的柱中,这些百分比从 10%变为 100%。使用组合的分段进出口,可以将 H(tc)降低约 90-100%(d(c)=4.6 mm 柱)或 20-100%(d(c)=2.1 mm 柱)。这些增益百分比的强烈变化是由于它们强烈依赖于柱长和流速。已经建立了无量纲图,可以直接定量分析每种特定情况的效果。还发现,与人们的物理直觉一致,在中心区域更平坦的柱内速度分布比尖锐的抛物线状分布更受益于该概念。随着保留时间和扩散系数的增加,增益幅度趋于变小。

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