Xu G W, Ye F, Kong H W, Lu X, Zhao X J
National Chromatographic R. & A. Center, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116011, China.
Se Pu. 2001 Mar;19(2):132-6.
Many analytical problems require more resolution than the conventional single column chromatographic technique can provide. In such cases the separation power can be enhanced by using more than one separation technique or mechanism. The sample is then dispersed in different time dimensions. The resolution obtained depends strongly on the difference between these dimensions. The highest resolution is gained when there is no correlation between the separations, the dimensions being orthogonal to each other. Comprehensive two-dimensional gas chromatography (GC x GC) provides a true orthogonal separation system in which a modulator serially couples two columns containing dissimilar stationary phases. It focuses and subsequently reinjects components eluting from the first column into the second one. The system generates a peak capacity that is approximately equal to the product of the peak capacities of the two individual separation systems. In this paper, technique and instrumental considerations of GC x GC are discussed. The three designs of contemporary GC x GC systems are presented and compared. A number of typical applications on complex samples such as petroleum products and environmental pollutants are also cited. Finally, the future perspectives of GC x GC are simply discussed.
许多分析问题需要比传统单柱色谱技术所能提供的更高的分离度。在这种情况下,可以通过使用不止一种分离技术或机制来提高分离能力。然后样品在不同的时间维度上分散。所获得的分离度很大程度上取决于这些维度之间的差异。当分离之间没有相关性,即维度相互正交时,可获得最高的分离度。全二维气相色谱(GC×GC)提供了一个真正的正交分离系统,其中调制器将两根含有不同固定相的色谱柱串联连接。它聚焦并随后将从第一根色谱柱洗脱的组分重新注入第二根色谱柱。该系统产生的峰容量大约等于两个单独分离系统的峰容量之积。本文讨论了GC×GC的技术和仪器方面的考虑因素。介绍并比较了当代GC×GC系统的三种设计。还列举了一些在复杂样品(如石油产品和环境污染物)上的典型应用。最后,简要讨论了GC×GC的未来前景。