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使用第二根色谱柱的脉冲加热对串联耦合色谱柱进行气相色谱的可编程选择性。

Programmable selectivity for GC with series-coupled columns using pulsed heating of the second column.

作者信息

Whiting Joshua, Sacks Richard

机构信息

Department of Chemistry, University of Michigan, Ann Arbor, Michigan 48109, USA.

出版信息

Anal Chem. 2003 May 15;75(10):2215-23. doi: 10.1021/ac020614h.

DOI:10.1021/ac020614h
PMID:12918958
Abstract

A series-coupled ensemble of a nonpolar dimethyl polysiloxane column and a polar trifluoropropylmethyl polysiloxane column with independent at-column heating is used to obtain pulsed heating of the second column. For mixture component bands that are separated by the first column but coelute from the column ensemble, a temperature pulse is initiated after the first of the two components has crossed the column junction point and is in the second column, while the other component is still in the first column. This accelerates the band for the first component. If the second column cools sufficiently prior to the second component band crossing the junction, the second band experiences less acceleration, and increased separation is observed for the corresponding peaks in the ensemble chromatogram. High-speed at-column heating is obtained by wrapping the fused-silica capillary column with resistance heater wire and sensor wire. Rapid heating for a temperature pulse is obtained with a short-duration linear heating ramp of 1000 degrees C/min. During a pulse, the second-column temperature increases by 20-100 degrees C in a few seconds. Using a cold gas environment, cooling to a quiescent temperature of 30 degrees C can be obtained in approximately 25 s. The effects of temperature pulse initiation time and amplitude on ensemble peak separation and resolution are described. A series of appropriately timed temperature pulses is used to separate three coeluting pairs of components in a 13-component mixture.

摘要

使用具有独立柱后加热功能的非极性二甲基聚硅氧烷柱和极性三氟丙基甲基聚硅氧烷柱的串联耦合组件来实现第二根柱的脉冲加热。对于被第一根柱分离但从柱组件中共洗脱的混合组分谱带,在两个组分中的第一个组分穿过柱连接点并进入第二根柱后,而另一个组分仍在第一根柱中时,启动温度脉冲。这会加速第一个组分的谱带。如果第二根柱在第二个组分谱带穿过连接点之前充分冷却,则第二个谱带的加速作用较小,并且在组件色谱图中相应峰的分离度会增加。通过用电阻加热丝和传感丝包裹熔融石英毛细管柱来实现高速柱后加热。通过1000℃/min的短持续时间线性加热斜坡获得温度脉冲的快速加热。在一个脉冲期间,第二根柱的温度在几秒钟内升高20 - 100℃。使用冷气体环境,大约25秒内可冷却至30℃的静态温度。描述了温度脉冲起始时间和幅度对组件峰分离和分辨率的影响。使用一系列适当定时的温度脉冲来分离13组分混合物中的三对共洗脱组分。

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