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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Estimations of temperature deviations in chromatographic columns using isenthalpic plots. I. Theory for isocratic systems
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Estimations of temperature deviations in chromatographic columns using isenthalpic plots. I. Theory for isocratic systems

机译:使用等焓图估算色谱柱中的温度偏差。一,等度体系理论

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We propose to use constant enthalpy or isenthalpic diagrams as a tool to estimate the extent of the temperature variations caused by the mobile phase pressure drop along a chromatographic column, e.g. of its cooling in supercritical fluid and its heating in ultra-performance liquid chromatography. Temperature strongly affects chromatographic phenomena. Any of its variations inside the column, whether intended or not, can lead to significant changes in separation performance. Although instruments use column ovens in order to keep constant the column temperature, operating conditions leading to a high pressure drop may cause significant variations of the column temperature, both in the axial and the radial directions, from the set value. Different ways of measuring these temperature variations are available but they are too inconvenient to be employed in many practical situations. In contrast, the thermodynamic plot-based method that we describe here can easily be used with only a ruler and a pencil. They should be helpful in developing methods or in analyzing results in analytical laboratories. Although the most effective application area for this approach should be SFC (supercritical fluid chromatography), it can be applied to any chromatographic conditions in which temperature variations take place along the column due to the pressure drop, e.g. in ultra-high pressure liquid chromatography (UHPLC). The method proposed here is applicable to isocractic conditions only.
机译:我们建议使用恒定焓图或等焓图作为工具来估算由沿色谱柱(例如色谱柱)的流动相压降引起的温度变化程度。超临界流体中的冷却和超高效液相色谱中的加热温度严重影响色谱现象。色谱柱内部的任何变化(无论是否有意)都可能导致分离性能发生重大变化。尽管仪器使用柱温箱以保持柱温恒定,但导致高压降的运行条件可能会导致柱温在轴向和径向上与设定值发生显着变化。可以使用不同的方法来测量这些温度变化,但是它们很不方便,无法在许多实际情况下使用。相反,我们在此描述的基于热力学图的方法仅需一把尺子和一支铅笔即可轻松使用。它们应有助于开发方法或分析实验室中的结果分析。尽管此方法最有效的应用领域应该是SFC(超临界流体色谱),但它可以应用于由于压力下降(例如,压力下降)而沿色谱柱温度变化的任何色谱条件。在超高压液相色谱(UHPLC)中此处提出的方法仅适用于等应变条件。

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