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闪光弹的多组分表征与鉴别 - 第二部分:塑料帽的元素剖析

Multicomponent characterization and differentiation of flash bangers - Part II: Elemental profiling of plastic caps.

作者信息

Bezemer Karlijn, Woortmeijer Rikus, Koeberg Mattijs, Wiarda Wim, Schoenmakers Peter, van Asten Arian

机构信息

Van't Hoff Institute for Molecular Sciences, Faculty of Science, University of Amsterdam, PO Box 94157, 1090 GD Amsterdam, The Netherlands; Netherlands Forensic Institute, P.O. Box 24044, 2490 AA The Hague, The Netherlands.

Netherlands Forensic Institute, P.O. Box 24044, 2490 AA The Hague, The Netherlands.

出版信息

Forensic Sci Int. 2018 Sep;290:336-348. doi: 10.1016/j.forsciint.2018.06.012. Epub 2018 Jun 18.

Abstract

This study builds on the multicomponent analysis strategy for flash bangers which was previously introduced and where a representative sample set has been collected of a certain type of flash bangers. To expand the forensic strategy, elemental analysis of the plastic caps which are present in these items was performed. Both x-ray fluorescence (XRF) and laser ablation-inductively coupled plasma-mass spectrometry (LA-ICP-MS) analysis was performed to explore the possibilities for differentiation. The inherent inhomogeneity of the plastics resulted in high variations, especially for LA-ICP-MS trace analysis. In addition, due to the lack of suitable reference materials the LA-ICP-MS results can only be used for qualitative comparisons. Although XRF is less sensitive it allows for semi-quantitative analysis and the effect of inhomogeneity is significantly reduced due to the larger sample areas. Therefore, XRF is the method of choice for elemental analysis of intact plastic caps. In this scenario initial differentiation based on visual examination is combined with elemental analysis to obtain the highest degree of discrimination. In post-explosive scenarios, using XRF is not as straightforward due the irregular shapes of the burned plastic cap residues and contamination by explosive residues. For the analysis of these post-explosive caps, LA-ICP-MS proved to be useful for characterization and differentiation. Overall, it was found that blue caps contain a considerable higher amount of elements than the white caps, mainly due to additives related to the coloring process. This limits differentiation for the flash bangers containing white caps. Therefore, isotope ratio mass spectrometry (IRMS) analysis was performed to increase the differentiation potential. Based on carbon and hydrogen isotope ratios additional sets could be distinguished, both for flash bangers containing white and blue caps, that otherwise have similar visual and elemental characteristics. With the elemental and isotopic analysis of the plastic caps, an analysis strategy has been introduced that is not based on the pyrotechnic charge and therefore provides a unique opportunity to perform characterization and differentiation of flash bangers in pre- and post-explosive casework.

摘要

本研究基于先前介绍的针对闪光弹的多组分分析策略,在此过程中已经收集了某类闪光弹的代表性样本集。为扩展法医鉴定策略,对这些物品中存在的塑料帽进行了元素分析。采用了X射线荧光光谱法(XRF)和激光烧蚀-电感耦合等离子体质谱法(LA-ICP-MS)进行分析,以探索区分的可能性。塑料的固有不均匀性导致差异很大,特别是对于LA-ICP-MS痕量分析。此外,由于缺乏合适的参考材料,LA-ICP-MS结果仅可用于定性比较。虽然XRF灵敏度较低,但它允许进行半定量分析,并且由于样本区域较大,不均匀性的影响显著降低。因此,XRF是完整塑料帽元素分析的首选方法。在这种情况下,基于目视检查的初步区分与元素分析相结合,以获得最高程度的鉴别。在爆炸后场景中,由于燃烧后的塑料帽残留物形状不规则且存在爆炸残留物污染,使用XRF并不那么直接。对于这些爆炸后帽的分析,LA-ICP-MS被证明对表征和区分很有用。总体而言,发现蓝色帽比白色帽含有相当多的元素,主要是由于与着色过程相关的添加剂。这限制了对含白色帽闪光弹的区分。因此,进行了同位素比质谱法(IRMS)分析以增加区分潜力。基于碳和氢同位素比,可以区分另外的样本集,包括含白色和蓝色帽的闪光弹,否则它们具有相似的外观和元素特征。通过对塑料帽的元素和同位素分析,引入了一种不基于烟火药的分析策略,因此为在爆炸前和爆炸后案件工作中对闪光弹进行表征和区分提供了独特的机会。

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