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Experimental Investigation of the Band Broadening Arising from Short-Range Interchannel Heterogeneities in Chromatographic Beds under the Condition of Identical External Porosity

机译:相同孔隙度条件下色谱床中短程通道间异质性引起的谱带展宽的实验研究

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摘要

The interesting possibilities offered by micropillar array columns to investigate the relation between bed heterogeneity and band broadening in chromatographic columns are illustrated and investigated. The perfect control over the microscopic bed structure offered by the photolithographic fabrication technique could be used to produce a heterogeneous bed displaying a short-range interchannel heterogeneity and having exactly the same particle size and external porosity as the perfectly ordered bed that was used as the reference system. According to this approach, any observed difference in band broadening could be directly owed to the effect of the bed heterogeneity. Knowing that the only difference between the investigated beds was their degree of heterogeneity, the obtained plate height measurements provided a unique test to distinguish among the abilities to recognize short-range inter-channel heterogeneity of the different existing plate height models. Interpreting the data with the classical van Deemter and Knox models, it was found that the increased bed heterogeneity leads not only to an increase in the A-term constant but also to a clear increase in the C-term constant.
机译:图示和研究了微柱阵列色谱柱为研究色谱柱中床非均质性与谱带展宽之间的关系提供的有趣可能性。光刻制造技术提供的对微观床结构的完美控制可用于生产异质床,该异质床显示出短程通道间异质性,并且具有与用作参考的理想有序床完全相同的粒度和外部孔隙率系统。根据这种方法,任何观察到的谱带展宽差异都可以直接归因于床层异质性的影响。知道所研究床之间的唯一差异是它们的异质性程度,获得的板高测量结果提供了独特的测试,以区分识别不同现有板高模型的短程通道间异质性的能力。用经典的van Deemter和Knox模型解释数据,发现床层非均质性的增加不仅导致A项常数增加,而且导致C项常数明显增加。

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