用气相色谱-离子迁移谱法揭示非法药物实验室

IF 2.5 3区 医学 Q1 MEDICINE, LEGAL
Martin Lippmann , Christoph Schaefer , Clara Schindler , Michiel Beukers , Niels Beijer , Moritz Hitzemann , Ben van de Kamp , Ruud Peters , Jaap Knotter , Stefan Zimmermann
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引用次数: 0

摘要

在秘密化验室非法生产合成药物是欧洲联盟内部一个新出现的威胁,因此执法机构必须改进查找这些非法场所的方法。气相色谱法和离子迁移谱法相结合是一种可靠地检测气相痕量物质的有前途的技术。因此,本研究探讨了检测甲基苯丙胺合成前体的可行性。结果表明,在浓度低至个位数ppbv水平的情况下,可以检测到最主要的三种主要合成途径——苄基甲基酮的相关前体,即Dakin-West法、硝基苯乙烯法和Baeyer-Villinger途径。这些物质的可靠检测是基于保留时间和降低离子迁移率,最大限度地减少交叉灵敏度。最后,使用实际查获的苄基甲基酮样品,证明可以在这种样品的顶空中检测到合成的副产物,可能允许通过在可疑场所附近取样气相来进行药物分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Revealing illicit drug laboratories by gas chromatography-ion mobility spectrometry
The illegal production of synthetic drugs in clandestine laboratories is an emerging threat within the European Union, necessitating improved methods for law enforcement agencies to locate these illegal sites. Combining gas chromatography and ion mobility spectrometry is a promising technology for reliably detecting trace amounts of substances in the gas phase. Therefore, the feasibility of detecting precursors involved in methamphetamine synthesis was investigated in this work. It is shown that relevant precursors of the three main synthesis pathways of the most prominent precursor, benzyl methyl ketone, naming the Dakin-West method, the nitrostyrene method and the Baeyer-Villinger pathway can be detected at concentrations down to single-digit ppbv levels. Reliable detection of these substances is based on retention time and reduced ion mobility, minimizing cross-sensitivities. Finally, using a real seized sample of benzyl methyl ketone, it was demonstrated that by-products from the synthesis can be detected in the headspace of such a sample, potentially allowing for drug profiling by sampling the gas phase near suspicious premises.
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来源期刊
Forensic science international
Forensic science international 医学-医学:法
CiteScore
5.00
自引率
9.10%
发文量
285
审稿时长
49 days
期刊介绍: Forensic Science International is the flagship journal in the prestigious Forensic Science International family, publishing the most innovative, cutting-edge, and influential contributions across the forensic sciences. Fields include: forensic pathology and histochemistry, chemistry, biochemistry and toxicology, biology, serology, odontology, psychiatry, anthropology, digital forensics, the physical sciences, firearms, and document examination, as well as investigations of value to public health in its broadest sense, and the important marginal area where science and medicine interact with the law. The journal publishes: Case Reports Commentaries Letters to the Editor Original Research Papers (Regular Papers) Rapid Communications Review Articles Technical Notes.
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