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平行分段流色谱对理论塔板高度的影响 III——柱长、粒径和分析物分子量对效率提高的影响。

Effect of parallel segmented flow chromatography on the height equivalent to a theoretical plate III--influence of the column length, particle diameter, and the molecular weight of the analyte on the efficiency gain.

机构信息

Department of Chemistry, University of Tennessee, Knoxville, TN 37996-1600, USA.

Australian Centre for Research on Separation Science (ACROSS), School of Science and Health, University of Western Sydney, Parramatta, NSW, Australia.

出版信息

J Chromatogr A. 2014 Mar 14;1333:32-44. doi: 10.1016/j.chroma.2014.01.055. Epub 2014 Jan 30.

Abstract

The effects of column length on performance in segmented flow chromatography were tested. Column efficiencies were measured for 4.6mm I.D. 3, 5, 7.5 and 10 cm long columns packed with 3.0 μm Hypurity-C18 fully porous particles and of 4.6mm I.D. 5, 10, 15 and 25 cm long columns packed with 5 μm Hypersil GOLD C18 particles. For each column length and particle type, two different configurations were tested: (1) both the inlet and outlet column endfittings were standard and (2) the inlet endfitting was standard but the outlet endfitting allowed parallel segmentation of the exiting flow into a central and a peripheral coaxial region. The segmentation flow ratio was set at 45% (for 3 μm) and at 43% or 21% (for 5 μm). Four samples were used, naphthalene, toluene, butylbenzene, and insulin, which has a ten times smaller diffusion coefficient than the small molecules. The column performance for the low molecular weight compound is significantly improved at velocities above the optimum value when the outlet flow rate is segmented because longitudinal diffusion and mass transfer resistance of this compound in the stationary phase are negligible sources of band broadening at reduced linear velocities between 5 and 25. At high flow rate (4 mL/min), the long-range eddy dispersion terms are about 3.9, 3.2, 2.6, and 1.8h unit lower for the 3, 5, 7.5 and 10 cm long columns, respectively. The longer the column, the lower the efficiency improvement because the border effects are smaller. This result was not systematically observed for the columns packed with 5 μm particles because the transverse dispersion is larger. In contrast, the gain in column efficiency is marginal for insulin because the mass transfer mechanism of this compound is mostly controlled by the slow diffusivity of insulin across Hypurity-C18 particles.

摘要

研究了柱长对分段流动色谱性能的影响。使用 3.0μm Hypurity-C18 全多孔颗粒填充 4.6mm ID 的 3、5、7.5 和 10cm 长的色谱柱,以及用 5μm Hypersil GOLD C18 颗粒填充 4.6mm ID 的 5、10、15 和 25cm 长的色谱柱,分别测量了柱效。对于每种柱长和颗粒类型,测试了两种不同的配置:(1)进样端和出样端的柱接头均为标准接头;(2)进样端为标准接头,但出样端的接头允许将流出的流动分成中央和外围同轴区域。分段比设定为 45%(对于 3μm)和 43%或 21%(对于 5μm)。使用了萘、甲苯、丁基苯和胰岛素四种样品,胰岛素的扩散系数比小分子小十倍。当出口流速分段时,在最佳流速以上的速度下,小分子的柱效显著提高,因为在较低的线性速度(5-25)下,这种化合物在固定相中的纵向扩散和传质阻力是峰展宽的可忽略的来源。在高流速(4mL/min)下,3、5、7.5 和 10cm 长的色谱柱的长程涡流扩散项分别降低了 3.9、3.2、2.6 和 1.8h 单位。柱越长,效率提高越小,因为边界效应越小。对于填充 5μm 颗粒的色谱柱,并未系统地观察到这种结果,因为横向扩散较大。相比之下,对于胰岛素,柱效率的提高微不足道,因为这种化合物的传质机制主要受胰岛素在 Hypurity-C18 颗粒中缓慢扩散的控制。

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