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全二维气相色谱中用于多类农药分析的双氮磷检测器/电子捕获检测器检测法

Dual NPD/ECD detection in comprehensive two-dimensional gas chromatography for multiclass pesticide analysis.

作者信息

Khummueng Weeraya, Morrison Paul, Marriott Philip J

机构信息

Australian Centre for Research on Separation Science, School of Applied Sciences, RMIT University, Melbourne, Australia.

出版信息

J Sep Sci. 2008 Oct;31(19):3404-15. doi: 10.1002/jssc.200800222.

Abstract

A comprehensive 2-D GC (GC x GC) dual detection system, coupled to nitrogen-phosphorus detection (NPD) and electron capture detection (ECD) has been developed for multiclass pesticide analysis in vegetable sample matrices. The second dimension column was connected to the parallel detectors via a microfluidic splitting device. The sample set comprised 17 organochlorine pesticides, 15 organophosphorus insecticides and 9 N-containing fungicides. Selective detection of vegetable sample extracts provides increased information content through simultaneous, correlated GC x GC plots for both ECD and NPD, which demonstrated improved separation of pesticide standards from each other, and from the sample matrix. The efficiency of NPD and ECD modes was investigated and compared; the ECD produced broader peaks, with the ECD generating greater response as measured by S/N ratio. Accuracy and precision of the approach were determined as repeatability and reproducibility for selected pesticides. The RSDs of the intraday (n = 5) and interday (3 days) analyses of the selected pesticides are less than 2.5 and 10%, respectively. The relative ratio of the ECD/NPD response is proposed to offer additional identification of individual pesticides, in addition to the (1)t(R) and (2)t(R) retention coordinates; ratios vary from 19 to over 1000 for selected pesticides that also exhibit ECD and NPD activities.

摘要

已开发出一种综合二维气相色谱(GC×GC)双检测系统,该系统与氮磷检测(NPD)和电子捕获检测(ECD)联用,用于蔬菜样品基质中的多类农药分析。第二维色谱柱通过微流分流装置连接到并行检测器。样品集包括17种有机氯农药、15种有机磷杀虫剂和9种含氮杀菌剂。通过ECD和NPD的同步、相关GC×GC图谱对蔬菜样品提取物进行选择性检测,可提供更多信息,这表明农药标准品之间以及与样品基质之间的分离得到了改善。研究并比较了NPD和ECD模式的效率;ECD产生的峰更宽,以信噪比衡量,ECD产生的响应更大。通过选定农药的重复性和再现性确定了该方法的准确度和精密度。选定农药日内(n = 5)和日间(3天)分析的相对标准偏差分别小于2.5%和10%。除了(1)t(R)和(2)t(R)保留坐标外,还建议用ECD/NPD响应的相对比率对单个农药进行额外鉴定;对于同时具有ECD和NPD活性的选定农药,该比率在19到1000以上之间变化。

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