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首页> 外文期刊>Analytical methods >Separation and identification of anions using porous graphitic carbon and electrospray ionization mass spectrometry: Application to inorganic explosives and their post blast residues
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Separation and identification of anions using porous graphitic carbon and electrospray ionization mass spectrometry: Application to inorganic explosives and their post blast residues

机译:使用多孔石墨碳和电喷雾电离质谱法分离和鉴定阴离子:在无机炸药及其爆炸后残留物中的应用

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Identification of the anions in inorganic explosives and their post-blast residues using ion chromatography (IC) and/or capillary electrophoresis (CE) is well established. However, IC and CE instrumentation are not as common in forensic science laboratories. Furthermore, coupling IC and CE to a mass spectrometer can be challenging as volatile buffers are required or ion suppressors must be used. Porous Graphitic Carbon (PGC) is a relatively new stationary phase type that is available for High Performance Liquid Chromatography (HPLC). PGC is known for its high retention of polar species and separation of anions using PGC has been demonstrated. In this work, a PGC (2.1 × 100 mm) column was coupled to an electrospray ionization mass spectrometer (ESI-MS) for the analysis and detection of anions. Several parameters of the method were optimized including ion source temperature (550 °C), MS cone voltage (75 V), injection volume (1 μL), solvent composition (1% formic acid in water), and column temperature (80 °C). This resulted in a method that separated 6 anions Cl?, NO3?, ClO3?, HSO4?, ClO4?, and dicyandiamide (DCDA) in less than 5 min. Several low explosive powders were analyzed intact and after burning. Finally, the post-blast residues of two black powder substitutes were extracted from pipe bomb container fragments and analyzed using this technique...
机译:使用离子色谱(IC)和/或毛细管电泳(CE)鉴定无机炸药中的阴离子及其爆炸后残留物的方法已得到广泛确立。但是,IC和CE仪器在法医学实验室中并不常见。此外,由于需要挥发性缓冲液或必须使用离子抑制剂,因此将IC和CE耦合至质谱仪可能具有挑战性。多孔石墨碳(PGC)是一种相对较新的固定相类型,可用于高效液相色谱(HPLC)。 PGC以其对极性物质的高度保留着称,已证明使用PGC分离阴离子。在这项工作中,将PGC(2.1×100 mm)色谱柱连接到电喷雾电离质谱仪(ESI-MS)上,以分析和检测阴离子。优化了该方法的几个参数,包括离子源温度(550°C),MS锥孔电压(75 V),进样量(1μL),溶剂组成(水中1%甲酸)和柱温(80°C) )。这导致在不到5分钟的时间内分离出6个阴离子Cl 3,NO 3 +,ClO 3,HSO 4 +,ClO 4和双氰胺(DCDA)的方法。燃烧后,完整分析了几种低爆炸药粉末。最后,从管炸弹容器碎片中提取了两种黑色粉末替代品的爆炸后残留物,并使用该技术进行了分析...

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