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首页> 外文期刊>Analytical chemistry >LONG PACKED COLUMN SUPERCRITICAL FLUID CHROMATOGRAPHY - INFLUENCE OF PRESSURE DROP ON APPARENT EFFICIENCY
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LONG PACKED COLUMN SUPERCRITICAL FLUID CHROMATOGRAPHY - INFLUENCE OF PRESSURE DROP ON APPARENT EFFICIENCY

机译:超长柱超临界流体色谱法-压降对表观效率的影响

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摘要

Supercritical fluid chromatography, when performed on a packed column, is a powerful and fast separation technique, To enhance the number of theoretical plates (TP) available, long packed columns (>1 m) have been used successfully, despite controversy over the effect on column efficiency of the density gradient induced by the pressure drop, Peak broadening and deformation were reported, and packings with larger particle diameter than those used in liquid chromatography (10 mu m instead of 3-5 mu m) were advised in order to reduce the column pressure drop, Velocity gradient induced by the density gradient was reported to reduce efficiency, This paper presents the results of investigations on the influence of density gradient on the apparent efficiency obtained on a series of four 25-cm x 4.6-mm-i.d. Nucleosil C18 columns connected in series (particle size, 5 mu m), Apparent column efficiency is found to vary from less than 10 000 TP to more than 100 000 TP versus the density and the density gradient. The higher the density gradient, the higher the efficiency loss, A model is presented which accounts for the effect of linear velocity and density gradients on peak broadening, It confirms that it is the linear velocity variation rather than the variation of the density which causes band broadening and allows prediction of conditions for which apparent efficiency loss occurs, To reduce the density gradient induced by column pressure drop, one can compensate for pressure gradient by a superimposed temperature gradient (multitemperature control of the mobile phase via three column ovens), It allows one to obtain the highest efficiency and to use CO2 at lower density without any loss of efficiency. When methanol is added to the CO2, no pressure drop compensation is required in order to obtain the highest apparent efficiency. As density gradient compensation via multitemperature control of the mobile phase provides higher apparent efficiency and, consequently, higher resolution than in isothermal operation, it is especially useful for separation of complex oil samples.
机译:当在填充柱上进行超临界流体色谱分析时,它是一种强大而快速的分离技术。为了增加可用的理论塔板数(TP),尽管存在关于柱效的争议,但成功使用了长填充柱(> 1 m)。报告了由压降引起的密度梯度的色谱柱效率,峰加宽和变形,并建议使用比液相色谱法使用的填料(10微米而不是3-5微米)更大的粒径的填料,以减少柱压降,据报道由密度梯度引起的速度梯度降低了效率,本文给出了密度梯度对一系列四个25-cm x 4.6-mm-id的表观效率的影响的研究结果。串联连接的Nucleosil C18色谱柱(粒径5μm),表观色谱柱效率相对于密度和密度梯度变化范围从小于10000 TP到大于100000 TP。密度梯度越高,效率损失就越大,提出了一个模型,该模型考虑了线速度和密度梯度对峰展宽的影响,证实了引起线峰的是线速度变化而不是密度变化扩大范围并允许预测出现明显效率损失的条件,为减少由色谱柱压降引起的密度梯度,可以通过叠加的温度梯度(通过三个色谱柱炉对流动相进行多温度控制)来补偿压力梯度,一种获得最高效率并以较低密度使用CO2而不会降低效率的方法。当将甲醇添加到CO2中时,不需要压降补偿即可获得最高的表观效率。由于通过等温流动相的密度梯度补偿可提供比等温运行更高的表观效率,因此具有更高的分离度,因此它对于分离复杂的油样特别有用。

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