Mayira Abulitifu, Zhong Zihao, Bai Xi
College of Chemistry and Chemical Engineer, Xinjiang Normal University, Urumqi 830054, China.
Se Pu. 2023 Jan;41(1):37-46. doi: 10.3724/SP.J.1123.2022.04013.
Gas chromatography (GC) yields superior separations of low boiling point volatile compounds. Therefore, preparative gas chromatography (Prep GC) was established by combining analytical GC with a sample collection system at the end of the column, enabling the efficient isolation of the volatile components from complex matrices and their subsequent collection after GC. As Prep GC is based on an analytical gas chromatograph, its injection, separation, detection, and fraction collection systems are continuously optimized and upgraded to improve the recoveries and purities of the target compounds. Prep GC, in combination with modern spectroscopic techniques (such as UV-Vis absorption spectroscopy, infrared absorption spectroscopy, Raman spectroscopy, mass spectrometry, X-ray diffraction, and nuclear magnetic resonance spectroscopy), enables accurate structural elucidation of a target compound. Reports of the separations of various volatile components from complex matrices using Prep GC have recently increased annually, revealing promising application prospects. However, Prep GC also displays several disadvantages, such as the failure to separate thermolabile compounds, high separation costs, and the likely introduction of exogenous contamination. Based on the recent related research, this review summarizes the evolution of the structure of Prep GC and its application in isolating essential oil monomers, insect pheromones, volatile food and plant components, geological biomarkers, and persistent environmental pollutants. Finally, this review also summarizes and prospects the use of Prep GC in separating volatile components to provide a reference for the expansion of its applications.
气相色谱法(GC)能对低沸点挥发性化合物进行出色的分离。因此,制备气相色谱法(Prep GC)是通过将分析型气相色谱仪与柱末端的样品收集系统相结合而建立的,它能够从复杂基质中有效分离挥发性成分,并在气相色谱分析后对其进行收集。由于Prep GC基于分析型气相色谱仪,其进样、分离、检测和馏分收集系统不断得到优化和升级,以提高目标化合物的回收率和纯度。Prep GC与现代光谱技术(如紫外 - 可见吸收光谱、红外吸收光谱、拉曼光谱、质谱、X射线衍射和核磁共振光谱)相结合,能够对目标化合物进行准确的结构解析。近年来,关于使用Prep GC从复杂基质中分离各种挥发性成分的报道逐年增加,显示出广阔的应用前景。然而,Prep GC也存在一些缺点,如无法分离热不稳定化合物、分离成本高以及可能引入外源污染。基于近期的相关研究,本综述总结了Prep GC的结构演变及其在分离精油单体、昆虫信息素、挥发性食品和植物成分、地质生物标志物以及持久性环境污染物方面的应用。最后,本综述还对Prep GC在分离挥发性成分方面的应用进行了总结和展望,为其应用拓展提供参考。