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首页> 外文期刊>Analytical Sciences >Development of Directly Coupled Supercritical Fluid Chromatography-Mass Spectrometry with Self-Spouting and Vacuum Nebulizing Assisted Interface
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Development of Directly Coupled Supercritical Fluid Chromatography-Mass Spectrometry with Self-Spouting and Vacuum Nebulizing Assisted Interface

机译:具有自动喷射和真空雾化辅助接口的直接耦合超临界流体色谱-质谱联用技术的发展

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Supercritical fluid chromatograph (SFC) with a fused silica separation column (0.5mm I.D.×70cm) packed with ODS-Q3 (30-50μm) was directly coupled with a quadrupole mass spectrometer (MS) through a vacuum nebulizing interface originally developed for the combination of high performance liquid chromathograph (HPLC) with MS. Mixtures of hexane and ethanol were used as the mobile phase for SFC at a flow rate of 40μl/min (50kg/cm2). The column temperatures were maintained above the critical ones of the mobile phase between 260 and 280°C. Introduction of line filters to remove possible small particles in the SFC effluent and the subtle control of the optimum flow and/or the pressure for the SFC column enabled fairly long term stable operation for this SFC-MS system. Thus developed new system was successfully applied to the analysis of various samples such as styrene oligomers, phthalates, triglycerides, and polyethylene glycol derivatives.
机译:通过最初为该组合开发的真空雾化接口,将装有装有ODS-Q3(30-50μm)的熔融石英分离柱(0.5mm ID×70cm)的超临界流体色谱仪(SFC)与四极质谱仪(MS)直接耦合MS的高效液相色谱仪(HPLC)的制备。己烷和乙醇的混合物用作SFC的流动相,流速为40μl/ min(50kg / cm2)。色谱柱温度保持在260至280°C的流动相临界温度以上。引入管线过滤器以去除SFC流出物中可能的细小颗粒,以及对SFC色谱柱的最佳流量和/或压力的微妙控制,使得该SFC-MS系统可以长期稳定运行。如此开发的新系统已成功应用于各种样品的分析,例如苯乙烯低聚物,邻苯二甲酸酯,甘油三酸酯和聚乙二醇衍生物。

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