Sigman M E, Ma C Y
Chemical and Analytical Sciences Division, Oak Ridge National Laboratory, P.O. Box 2008, MS 6100, Oak Ridge, Tennessee 37831-6100.
Anal Chem. 1999 Oct 1;71(19):4119-24. doi: 10.1021/ac9901079.
A gas chromatographic method utilizing thermal desorption of a dry surface wipe for the analysis of explosives trace chemical evidence has been developed and validated using electron capture and negative ion chemical ionization mass spectrometric detection. Thermal desorption was performed within a split/splitless injection port with minimal instrument modification. Surface-abraded Teflon tubing provided the solid support for sample collection and desorption. Performance was characterized by desorption efficiency, reproducibility, linearity of the calibration, and method detection and quantitation limits. Method validation was performed with a series of dinitrotoluenes, trinitrotoluene, two nitroester explosives, and one nitramine explosive. The method was applied to the sampling of a single piece of debris from an explosion containing trinitrotoluene.
已开发出一种气相色谱方法,该方法利用干燥表面擦拭物的热脱附来分析爆炸物微量化学证据,并使用电子捕获和负离子化学电离质谱检测进行了验证。热脱附在分流/不分流进样口内进行,对仪器的改动最小。表面磨损的聚四氟乙烯管为样品采集和解吸提供了固体支撑。通过解吸效率、重现性、校准曲线的线性以及方法的检测限和定量限来表征该方法的性能。使用一系列二硝基甲苯、三硝基甲苯、两种硝酸酯炸药和一种硝胺炸药进行了方法验证。该方法应用于对含有三硝基甲苯的爆炸碎片进行采样。