Department of Pesticides, Saxon State Laboratory of Health and Veterinary Affairs, Dresden, Germany.
J Sep Sci. 2013 Jul;36(13):2128-35. doi: 10.1002/jssc.201300007.
Precolumn back-flushing is a matrix minimization technique in GC in which the carrier gas flow of the precolumn is reversed after the transfer of the highest boiling analyte to the analytical column. Practical details concerning this technology have rarely been published although it is widely used. This paper now focuses on the practical implementation of precolumn back-flushing for pesticide residue analysis of complex food matrices. Fitting the analytical column into the precolumn was found to be essential for comparable analyte responses with and without back-flushing. The effectiveness of the reverse column flow technique is mainly affected by the transfer time after which back-flushing starts. The transfer time was found to depend on which kind of injected matrix is used and the state of the precolumn. For the regular adaptation of the transfer time in routine analysis, a simple test was introduced in which 13-C-labeled deltamethrin and indeno[1,2,3-c,d]pyrene were added to the prepared extract. Chromatograms, LOQ and RSD of up to 99 pesticides in citrus oil and liver extracts proved a clearer identification and enhanced quantification using precolumn back-flushing compared to measurements without this technology. Furthermore, reduced system maintenance could be achieved through back-flushing.
柱前反冲洗是气相色谱中的一种基质最小化技术,其中在将最高沸点的分析物转移到分析柱之前,反冲预柱的载气流。尽管该技术已被广泛应用,但有关该技术的实用细节却很少有文献报道。本文现在重点介绍柱前反冲洗在复杂食品基质中农药残留分析中的实际应用。将分析柱安装到预柱中对于有和没有反冲洗时的可比分析物响应是必不可少的。反向柱流技术的有效性主要受反冲洗开始后的传输时间影响。传输时间取决于所使用的注入基质的类型和预柱的状态。为了在常规分析中定期调整传输时间,引入了一种简单的测试,其中向制备的提取物中加入 13-C 标记的溴氰菊酯和苊并[1,2,3-c,d]芘。柑橘油和肝提取物中多达 99 种农药的色谱图、LOQ 和 RSD 表明,与不使用该技术的测量相比,使用柱前反冲洗可更清晰地识别和增强定量。此外,通过反冲洗可以实现系统维护的减少。