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高速冷冻聚焦注射进样用于气相色谱:浓度浓缩降低进样带展宽。

High-speed cryo-focusing injection for gas chromatography: reduction of injection band broadening with concentration enrichment.

机构信息

Department of Chemistry, Box 351700, University of Washington, Seattle, WA 98195-1700, USA.

出版信息

Talanta. 2012 Aug 15;97:9-15. doi: 10.1016/j.talanta.2012.03.054. Epub 2012 Apr 25.

Abstract

In order to maximize peak capacity and detection sensitivity of fast gas chromatography (GC) separations, it is necessary to minimize band broadening, and in particular due to injection since this is often a major contributor. A high-speed cryo-focusing injection (HSCFI) system was constructed to first cryogenically focus analyte compounds in a 6 cm long section of metal MXT column, and second, reinject the focused analytes by rapidly resistively heating the metal column via an in-house built electronic circuit. Since the cryogenically cooled section of column is small (∼750 nl) and the direct resistive heating is fast (∼6000 °C/s), HSCFI is demonstrated to produce an analyte peak with a 6.3 ms width at half height, w(1/2). This was achieved using a 1m long column with a 180 μm inner diameter (i.d.) operated at an absolute head pressure of 55 psi and an oven temperature of 60 °C, with a 10 V pulse applied to the metal column for 50 ms. HSCFI was also used to demonstrate the head space sampling and fast GC analysis of an aqueous solution containing six test analytes (acetone, methanol, ethanol, toluene, chlorobenzene, pentanol). Using Henry's law constants for each of the analytes, injected mass limits of detection (LODs) were typically in the low pg levels (e.g., 1.2 pg for acetone) for the high speed separation. Finally, to demonstrate the use of HSCFI with a complex sample, a gasoline was separated using a 20 m × 100 μm i.d. column and the stock GC oven for temperature programming, which provided a separation time of 200 s and an average peak width at the base of 440 ms resulting in a total peak capacity of 460 peaks (at unit resolution).

摘要

为了最大限度地提高快速气相色谱(GC)分离的峰容量和检测灵敏度,有必要最小化带展宽,特别是由于进样,因为这通常是主要贡献者。构建了高速低温聚焦进样(HSCFI)系统,首先将金属 MXT 柱长 6cm 段中的分析物化合物低温聚焦,其次,通过内部电子电路快速电阻加热金属柱来重新注入聚焦的分析物。由于低温冷却柱段较小(∼750nl),直接电阻加热较快(∼6000°C/s),因此 HSCFI 能够产生半峰高处宽度为 6.3ms 的分析物峰,w(1/2)。这是通过使用 1m 长的 180μm 内径(i.d.)柱在绝对头压为 55psi 和炉温为 60°C 的条件下实现的,对金属柱施加 10V 脉冲 50ms。HSCFI 还用于演示包含六种测试分析物(丙酮、甲醇、乙醇、甲苯、氯苯、戊醇)的水溶液的顶空采样和快速 GC 分析。使用每种分析物的亨利定律常数,注入的检测限(LOD)通常在低 pg 水平(例如,丙酮为 1.2pg),用于高速分离。最后,为了演示 HSCFI 与复杂样品的结合使用,使用 20m×100μm i.d.柱和用于温度编程的原始 GC 炉对汽油进行了分离,该分离提供了 200s 的分离时间和 440ms 的平均峰底宽度,从而得到 460 个峰的总峰容量(在单位分辨率下)。

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