首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Ultra high efficiency/low pressure supercritical fluid chromatography with superficially porous particles for triglyceride separation☆
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Ultra high efficiency/low pressure supercritical fluid chromatography with superficially porous particles for triglyceride separation☆

机译:超高效/低压超临界流体色谱,具有表面多孔颗粒,用于甘油三酸酯的分离☆

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This paper reports the development of the separation of vegetable oil triglycerides (TG) in supercritical chromatography (SFC), using superficially porous particles (SPPs). The SPP, having a small diameter (2-3 μm), provide a higher theoretical plate number (N), which allows to improve separation of critical pairs of compounds. However, compared to fully porous particles of larger diameter (5 μm), the pressure drop is also increased. Fortunately, supercritical fluids have a low viscosity, which allows coupling several columns to achieve high N values, while maintaining flow rate above 1 ml/min, ensuring a ultra high efficiency (UHE) at low pressure (LP) (below 40MPa), with regards to the one reached with liquid and sub-two micron particles (around 100 MPa). The use of two detector systems (UV and ELSD) connected in series to the UHE-LP-SFC system provides complementary responses, due to their specific detection principles. Working in a first part with three coupled Kinetex C18 columns (45 cm total length), the effect of modifier nature and percentage were studied with two reference oils, argan and rapeseed, chosen for their different and well-known TG composition. The analytical method was developed from previous studies performed with fully porous particles (FPP). Optimized conditions with three Kinetex were as follows: 17℃, 12% of ACN/MeOH (90/10; v/v). With these conditions, and by using an increased length of Kinetex C18 column (60 cm), another additional column was selected from ten different commercial SPP C18 bonded phases, by applying a Derringer function on varied parameters: theoretical plate number (TPN), separation index (SI) for critical pairs of peaks (the peaks of compounds difficult to separate due to subtle structural differences), the analysis duration, and the total peak number. This function normalizes the values of any parameters, between 0 and 1, from the worst value to the better, allowing to take account of various parameters in the final choice. Finally, by using four Kinetex C18 plus one Accucore C18 (75 cm total column length), a high-performance separation of triglycerides was achieved, with reasonable analysis duration and isocratic conditions. These conditions can be applied to varied vegetable oils. Identification of the numerous separated peaks of rapeseed oil was achieved by using published data and chromatographic retention behaviour.
机译:本文报道了使用表面多孔颗粒(SPPs)在超临界色谱(SFC)中分离植物油甘油三酸酯(TG)的进展。具有较小直径(2-3μm)的SPP提供更高的理论塔板数(N),从而可以改善关键化合物对的分离。但是,与较大直径(5μm)的全多孔颗粒相比,压降也增加了。幸运的是,超临界流体的粘度低,因此可以连接多个色谱柱以实现高N值,同时保持流速高于1 ml / min,从而确保在低压(LP)(低于40MPa)下具有超高效率(UHE),关于液态和亚两微米微粒(约100 MPa)所达到的一种。由于UHE-LP-SFC系统的两个检测器系统(UV和ELSD)串联使用,由于其特定的检测原理,它们可提供互补的响应。在第一部分中,使用三根耦合的Kinetex C18色谱柱(总长45 cm),使用两种参考油(摩洛哥坚果油和菜籽油)研究了改性剂性质和百分率的影响,这些参考油是根据其不同的和众所周知的TG组成选择的。分析方法是根据先前对全多孔颗粒(FPP)进行的研究开发的。三个Kinetex的最佳条件如下:17℃,12%的ACN / MeOH(90/10; v / v)。在这些条件下,并通过使用增加长度的Kinetex C18色谱柱(60厘米),通过对各种参数应用Derringer函数:理论塔板数(TPN),分离,从十种不同的商品SPP C18键合相中选择另一根色谱柱关键峰对(化合物的峰由于细微的结构差异而难以分离)的指数(SI),分析时间和总峰数。此功能将从最差值到最佳值的0到1之间的任何参数值进行归一化,从而在最终选择时考虑各种参数。最后,通过使用四台Kinetex C18和一台Accucore C18(色谱柱总长75厘米),在合理的分析时间和等度条件下,实现了甘油三酸酯的高效分离。这些条件可以应用于各种植物油。通过使用公开的数据和色谱保留行为,可鉴定出菜籽油的多个分离峰。

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