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The Development of High Performance Liquid Chromatography Systems for the Analysis of Improvised Explosives

机译:用于简易爆炸物分析的高效液相色谱系统的开发

摘要

Existing instrumental techniques must be adaptable to the analysis of novel explosives if science is to keep up with the practices of terrorists and criminals. The focus of this work has been the development of analytical techniques for the analysis of two types of novel explosives: ascorbic acid-based propellants, and improvised mixtures of concentrated hydrogen peroxide/fuel. In recent years, the use of these explosives in improvised explosive devices (IEDs) has increased. It is therefore important to develop methods which permit the identification of the nature of the original explosive from post-blast residues. Ascorbic acid-based propellants are low explosives which employ an ascorbic acid fuel source with a nitrate/perchlorate oxidizer. A method which utilized ion chromatography with indirect photometric detection was optimized for the analysis of intact propellants. Post-burn and post-blast residues if these propellants were analyzed. It was determined that the ascorbic acid fuel and nitrate oxidizer could be detected in intact propellants, as well as in the post-burn and post-blast residues. Degradation products of the nitrate and perchlorate oxidizers were also detected. With a quadrupole time-of-flight mass spectrometer (QToFMS), exact mass measurements are possible. When an HPLC instrument is coupled to a QToFMS, the combination of retention time with accurate mass measurements, mass spectral fragmentation information, and isotopic abundance patterns allows for the unequivocal identification of a target analyte. An optimized HPLC-ESI-QToFMS method was applied to the analysis of ascorbic acid-based propellants. Exact mass measurements were collected for the fuel and oxidizer anions, and their degradation products. Ascorbic acid was detected in the intact samples and half of the propellants subjected to open burning; the intact fuel molecule was not detected in any of the post-blast residue. Two methods were optimized for the analysis of trace levels of hydrogen peroxide: HPLC with fluorescence detection (HPLC-FD), and HPLC with electrochemical detection (HPLC-ED). Both techniques were extremely selective for hydrogen peroxide. Both methods were applied to the analysis of post-blast debris from improvised mixtures of concentrated hydrogen peroxide/fuel; hydrogen peroxide was detected on variety of substrates. Hydrogen peroxide was detected in the post-blast residues of the improvised explosives TATP and HMTD.
机译:如果科学要跟上恐怖分子和罪犯的作法,那么现有的仪器技术必须适应于分析新型爆炸物。这项工作的重点是开发用于分析两种新型炸药的分析技术:抗坏血酸基推进剂和浓过氧化氢/燃料的简易混合物。近年来,在简易爆炸装置(IED)中使用了这些炸药。因此,重要的是开发能够从爆炸后残留物中识别出原始爆炸物性质的方法。基于抗坏血酸的推进剂是低爆炸药,其使用具有硝酸盐/高氯酸盐氧化剂的抗坏血酸燃料源。优化了一种使用离子色谱与间接光度检测的方法来分析完整推进剂的方法。如果分析了这些推进剂,则燃烧后和爆炸后的残留物。已确定可以在完整的推进剂中以及燃烧后和爆炸后的残留物中检测到抗坏血酸燃料和硝酸盐氧化剂。还检测到硝酸盐和高氯酸盐氧化剂的降解产物。使用四极杆飞行时间质谱仪(QToFMS),可以进行精确的质量测量。当HPLC仪器与QToFMS结合使用时,保留时间与准确的质量测量值,质谱碎片信息和同位素丰度图样的结合,可以明确鉴定目标分析物。优化的HPLC-ESI-QToFMS方法用于抗坏血酸基推进剂的分析。收集了燃料和氧化剂阴离子及其降解产物的精确质量测量值。在完整的样品中检测到抗坏血酸,一半推进剂进行明火燃烧。在任何爆炸后残留物中均未检测到完整的燃料分子。优化了两种分析痕量过氧化氢的方法:带荧光检测的HPLC(HPLC-FD)和带电化学检测的HPLC(HPLC-ED)。两种技术对过氧化氢都具有极高的选择性。两种方法均用于分析浓缩的过氧化氢/燃料混合物的爆炸后碎片。在各种基材上检测到过氧化氢。在简易爆炸物TATP和HMTD的爆炸后残留物中检测到过氧化氢。

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    Bottegal Megan N;

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  • 年度 2010
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