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Trace detection of explosives with a unique large volume injection gas chromatography-mass spectrometry (LVI-GC-MS) method

机译:用独特的大体积注射气相色谱 - 质谱(LVI-GC-MS)方法痕量探测炸药

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摘要

Highly sensitive splitless programmed temperature vaporizing (PTV)-large volume injection (LVI)-GC-MS-negative chemical ionization (NCI) method was developed and validated for the trace detection of explosives and related compounds from environmental matrices. Traditional LVI analysis, whether performed through solvent-vent mode PTV or on-column systems, is characterised by improved detection limits but has limited performance in multi-target and screening applications. Our new approach can reach trace detection levels within a broad range of molecular volatilities (4 orders of magnitude), including volatile compounds, and it represents the first time that this approach has been applied to assess challenging explosive compounds. This is attributed to a unique double-column configuration setup developed for the efficient removal of excess solvent through a flame detector before reaching the MS, with the precise timing of carrier-gas flows and the heating program. The new method simultaneously achieves record-high sensitivities for military and improvised explosives, related by-products and taggants. Detection and quantification limits of 0.1 pg mu L-1 (2 pg on column) with a linear dynamic range of at least 2 orders of magnitude, as well as high precision (20% RSD) and accuracy (+/- 30%), were determined for most of the compounds. When applying this method to the analysis of spiked soil samples, a detection limit of 0.5 ng g(-1) was successfully obtained. This high-performance method may be used for the trace analysis of explosives in real world samples. The principles of the proposed method can be further adjusted to fit other compound families where high sensitivity and broad range of screening are desired.
机译:开发和验证了高度敏感的不分流程序温度蒸发(PTV) - 储存注射(LVI)-GC-MS阴性化学电离(NCI)方法,用于痕量检测环境基质的炸药和相关化合物。传统的LVI分析,无论是通过溶剂 - 通风模式PTV还是柱系统进行的,都是通过改进的检测限,但在多目标和筛选应用中具有有限的性能。我们的新方法可以在广泛的分子挥发性(4个级别)内达到痕量检测水平(包括挥发性化合物,并且它代表该方法的第一次应用于评估挑战性爆炸性化合物。这归因于开发的独特的双柱配置设置,以便在到达MS之前通过火焰检测器有效地去除过量溶剂,具有载流气流和加热程序的精确定时。新方法同时实现了军事和简易爆炸物,相关的副产品和标签的历史高敏感性。检测和定量限制0.1pg mu l-1(柱上2 pg),线性动态范围为至少2个数量级,以及高精度(& 20%RSD)和精度(& +/-为大多数化合物测定30%)。在将该方法应用于分析尖刺土样品时,成功获得了0.5ng(-1)的检出限。这种高性能的方法可用于现实世界样本中爆炸物的痕量分析。可以进一步调整所提出的方法的原理,以适应其他化合物家族,其中需要高灵敏度和广泛的筛选。

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  • 来源
    《Analytical methods》 |2018年第23期|共10页
  • 作者单位

    IIBR Dept Analyt Chem POB 19 IL-74100 Ness Ziona * Israel;

    IIBR Dept Analyt Chem POB 19 IL-74100 Ness Ziona * Israel;

    IIBR Dept Analyt Chem POB 19 IL-74100 Ness Ziona * Israel;

    IIBR Dept Analyt Chem POB 19 IL-74100 Ness Ziona * Israel;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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