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Effects of extra-column band spreading, liquid chromatography system operating pressure, and column temperature on the performance of sub-2-mu m porous particles

机译:柱外色谱带扩展,液相色谱系统工作压力和柱温对亚2微米以下多孔颗粒性能的影响

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摘要

The effects of extra-column band spreading, LC system operating pressure, and separation temperature were investigated for sub-2-mu m particle columns using both a conventional HPLC system as well as a UPLC (R) system. The contributions of both volume- and time-based extra-column effects were analyzed in detail. In addition, the performance difference between columns containing 2.5 and 1.7-mu m particles (same stationary phase) was studied. The performance of these columns was compared using a conventional HPLC system and a low dead volume UPLC system capable of routine operation up to 1000 bar. The system contribution to band spreading and the pressure limitations of the conventional HPLC system were found to be the main difficulties that prevented acceptable performance of the sub-2-mu m particle columns. Finally, an increase in operating temperature needs to be accompanied by an increase in flow rate to prevent a loss of separation performance. Thus, at a fixed column length, an increase in temperature is not a substitute for the need for very high operating pressures.
机译:使用常规HPLC系统和UPLC(R)系统,对亚2微米以下颗粒色谱柱研究了柱外色谱带扩展,液相色谱系统工作压力和分离温度的影响。详细分析了基于体积和基于时间的柱外效应的贡献。此外,还研究了含有2.5和1.7微米颗粒(固定相相同)的色谱柱之间的性能差异。使用常规HPLC系统和能够在高达1000 bar的常规操作下运行的低死体积UPLC系统比较了这些色谱柱的性能。发现系统对谱带扩展的贡献和常规HPLC系统的压力限制是阻碍亚2微米以下颗粒色谱柱可接受性能的主要困难。最后,操作温度的升高需要伴随着流速的增加,以防止分离性能的损失。因此,在固定的柱长下,温度的升高不能替代非常高的工作压力。

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