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在全二维气相色谱系统中产生更高的气体线性速度。

Generation of improved gas linear velocities in a comprehensive two-dimensional gas chromatography system.

作者信息

Tranchida Peter Quinto, Casilli Alessandro, Dugo Paola, Dugo Giovanni, Mondello Luigi

机构信息

Dipartimento Farmaco-Chimico, Facoltà di Farmacia, Università di Messina, viale Annunziata, 98168-Messina, Italy.

出版信息

Anal Chem. 2007 Mar 15;79(6):2266-75. doi: 10.1021/ac0618066. Epub 2007 Feb 9.

Abstract

A comprehensive two-dimensional gas chromatography (GC x GC) system (for convenience defined as "split flow" GC x GC), which may be operated at improved gas linear velocities in both dimensions, has been developed. The setup is formed of an apolar 30 m x 0.25 mm i.d. column connected, by means of a Y press fit, to a detector-linked 1 m x 0.1 mm i.d. polar analytical column, which passes through the (cryogenic) modulator, and to a 0.3 m x 0.1 mm i.d. retention gap, which is connected to a manually operated split valve. The latter enables the regulation of gas flows through the second analytical column [e.g., 60:40 (FID) ratio, 50:50 ratio, 40:60 (FID) ratio, etc.], in order to generate the most appropriate gas linear velocity, which is related to each specific analysis. In the pre-sent investigation, two sets of traditional and split flow GC x GC analyses were carried out on a cod liver oil fatty acid methyl ester sample by using the same temperature programs [180-250 degrees C at (a) 3 degrees C/min and at (b) 1.3 degrees C/min] and at an average first-dimension linear velocity of approximately 35.0 cm/s; thus, primary column retention times (and therefore elution temperatures) were essentially maintained. The second-dimension linear velocity was calculated to be approximately 333 cm/s in the traditional applications, while it was split valve-regulated until the most appropriate values [(a) approximately 213 cm/s; (b) approximately 264 cm/s] were attained in the alternative applications. Substantial improvements were observed and measured in the chromatography along the y-axis, while the contour plot chemical class structure was maintained.

摘要

已开发出一种全面的二维气相色谱(GC×GC)系统(为方便起见定义为“分流”GC×GC),该系统在两个维度上都可以在提高的气体线性速度下运行。该装置由一根内径为0.25 mm、长30 m的非极性柱组成,通过Y型压配合连接到一根与检测器相连的内径为0.1 mm、长1 m的极性分析柱,该分析柱穿过(低温)调制器,还连接到一根内径为0.1 mm、长0.3 m的保留间隙柱,该保留间隙柱连接到一个手动操作的分流阀。后者能够调节通过第二根分析柱的气体流量[例如,60:40(FID)比例、50:50比例、40:60(FID)比例等],以产生与每个特定分析相关的最合适的气体线性速度。在本次研究中,对鳕鱼肝油脂肪酸甲酯样品进行了两组传统和分流GC×GC分析,使用相同的温度程序[在(a)3℃/min和(b)1.3℃/min下从180 - 250℃],且第一维度的平均线性速度约为35.0 cm/s;因此,主柱保留时间(以及洗脱温度)基本保持不变。在传统应用中,计算得出第二维度的线性速度约为333 cm/s,而在替代应用中,通过分流阀调节直至达到最合适的值[(a)约213 cm/s;(b)约264 cm/s]。沿y轴的色谱分析有显著改善并可测量,同时轮廓图化学类别结构得以保持。

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