Kong Hongwei, Ye Fen, Lu Xin, Dong Mingquan, Guo Lei, Xu Guowang
National Chromatographic R. & A. Center, Dalian Institute of Chemical Physics, The Chinese Academy of Sciences, Dalian 116011, China.
Se Pu. 2005 Jan;23(1):37-40.
Comprehensive two-dimensional gas chromatography (GC x GC) is rapidly gaining importance for the analysis of complex samples. In order to predict chromatogram and optimize the operational conditions, the dead time of each dimension should be obtained exactly. Two methods to calculate the dead time of the second dimension were introduced. In the first method, based on the relationship between the time differences of a series of n-alkanes substances and the apparent retention times under different pressures, the true retention time can be calculated for non-synchronous GC x GC. The retention times of homologous series were used to calculate the dead time. Another rapid method to calculate the dead time of the second dimension is based on three or more apparent retention times in a single temperature programmed chromatographic run. The results show that the dead time of the second dimension can be calculated successfully by using the proposed methods and the deviation between the two methods is less than 0.05 s.
全二维气相色谱法(GC×GC)在复杂样品分析中迅速变得愈发重要。为了预测色谱图并优化操作条件,应精确获取每一维的死时间。介绍了两种计算第二维死时间的方法。在第一种方法中,基于一系列正构烷烃物质的时间差与不同压力下的表观保留时间之间的关系,可以计算非同步GC×GC的真实保留时间。利用同系物的保留时间来计算死时间。另一种计算第二维死时间的快速方法基于在一次程序升温色谱运行中的三个或更多表观保留时间。结果表明,使用所提出的方法能够成功计算第二维的死时间,并且两种方法之间的偏差小于0.05秒。