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Practical Examination of a Nonporous Silica Stationary Phase for Reversed-Phase Fast LC Applications

机译:反相快速液相色谱应用中无孔二氧化硅固定相的实际检查

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The performance of a nonporous silica reversed-phase high-performance liquid chrumatographic stationary phase (1.5 μm) is examined and contrasted with that of a conventional stationary phase. The conventional column exhibits classic van Deemter behavior with respect to the impact of flow rate on efficiency, but the "fast" liquid chromatographic (LC) column's efficiency is not as strongly affected by flow rate because of its lessened contributions of longitudinal diffusion and stagnant mobile phase mass transfer effects and greater sensitivity to system void volume effects. Both columns exhibit roughly equivalent efficiencies on a per meter basis; however, the efficiency of the fast LC column was more strongly influenced by solute capacity factor. Retention by the fast LC column is more strongly influenced by mobile phase composition. In general, the fast LC column produces multispecies separations more rapidly with a weaker mobile phase than does the conventional column which results in considerable reduction in solvent usage without a significant loss of efficiency. The performance of the fast LC column is strongly influenced by the system configuration, especially with respect to total system void volume.
机译:检查了无孔二氧化硅反相高效液相色谱固定相(1.5μm)的性能,并与常规固定相进行了对比。常规色谱柱在流速对效率的影响方面表现出经典的范德姆特性能,但是“快速”液相色谱(LC)色谱柱的效率并未受到流速的强烈影响,因为它对纵向扩散和流动停滞的贡献减少了相传质效应和对系统空隙体积效应的更高灵敏度。两根色谱柱每米的效率大致相当;但是,快速液相色谱柱的效率受溶质容量因子的影响更大。快速液相色谱柱的保留率受流动相组成的影响更大。通常,与传统色谱柱相比,快速LC色谱柱在流动相较弱的情况下能更快地进行多物种分离,这导致溶剂用量显着减少,而效率没有明显降低。快速液相色谱柱的性能在很大程度上受到系统配置的影响,特别是在总系统空体积方面。

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