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从缴获的含烟花的邮政包裹中检测烟火残留物的新兴技术。

Emerging techniques for the detection of pyrotechnic residues from seized postal packages containing fireworks.

机构信息

University of Amsterdam, Faculty of Science, Van 't Hoff Institute for Molecular Sciences, Amsterdam, the Netherlands; Netherlands Forensic Institute, The Hague, the Netherlands.

National Institute of Standards and Technology, Materials Measurement Science Division, Gaithersburg, MD, USA.

出版信息

Forensic Sci Int. 2020 Mar;308:110160. doi: 10.1016/j.forsciint.2020.110160. Epub 2020 Jan 24.

Abstract

High volume screening of parcels with the aim to trace the illegal distribution and selling of fireworks using postal services is challenging. Inspection services have limited manpower and means to perform extensive visual inspection. In this study, the presence of solid pyrotechnic residues collected from cardboard shipping parcels containing fireworks was investigated for direct in-field chemical detection. Two emerging trace detection techniques, i.e., capillary electrophoresis (CE)-based inorganic oxidizer detector and infrared thermal desorption (IRTD) coupled with direct analysis in real time mass spectrometry (DART-MS), were investigated for their potential as screening tools. Detection of non-visible pyrotechnic trace residues from real-case seized parcels was demonstrated using both screening techniques. However, the high nitrate background in the commercial CE system complicated its screening for black powder traces. IRTD-DART-MS allowed differentiation between flash and black powder by identification of the molecular inorganic ions. Compared to the portable CE instrument, rapid screening using IRTD-DART-MS is currently limited to laboratory settings. The capabilities of these emerging techniques established solid particle and trace residue chemical detection as interesting options for parcel screening in a logistic setting.

摘要

使用邮政服务对包裹进行大规模筛查,以追踪非法分销和销售烟花的行为具有挑战性。检查服务的人力和手段有限,无法进行广泛的目视检查。在这项研究中,研究了从含有烟花的纸板运输包裹中收集的固体烟火残留物的存在情况,以进行直接现场化学检测。研究了两种新兴的痕量检测技术,即基于毛细管电泳(CE)的无机氧化剂检测器和与实时直接分析质谱(DART-MS)直接耦合的红外热解吸(IRTD),以评估它们作为筛选工具的潜力。使用这两种筛选技术均证明了从实际扣押包裹中检测到不可见的烟火痕迹残留物。然而,商用 CE 系统中的高硝酸盐背景使其难以筛选黑火药痕迹。IRTD-DART-MS 通过识别分子无机离子来区分闪光粉和黑火药。与便携式 CE 仪器相比,IRTD-DART-MS 的快速筛选目前仅限于实验室环境。这些新兴技术的功能为物流环境中的包裹筛选提供了固体颗粒和痕量残留化学检测的有趣选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0ad/8041295/33f94f3fa9f8/nihms-1670456-f0001.jpg

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