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首页> 外文期刊>Forensic science international >Stable isotope ratio mass spectrometry and physical comparison for the forensic examination of grip-seal plastic bags.
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Stable isotope ratio mass spectrometry and physical comparison for the forensic examination of grip-seal plastic bags.

机译:稳定的同位素比质谱法和物理比较,用于抓紧密封塑料袋的法医检查。

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摘要

Plastic bags are frequently used to package drugs, explosives and other contraband. There exists, therefore, a requirement in forensic casework to compare bags found at different locations. This is currently achieved almost exclusively by the use of physical comparisons such as birefringence patterns. This paper discusses some of the advantages and shortcomings of this approach, and presents stable isotope ratio mass spectrometry (IRMS) as a supplementary tool for effecting comparisons of this nature. Carbon and hydrogen isotopic data are presented for sixteen grip-seal plastic bags from a wide range of sources, in order to demonstrate the range of values which is likely to be encountered. Both isotopic and physical comparison (specifically birefringence) techniques are then applied to the analysis of rolls of bags from different manufacturing lots from a leading manufacturer. Both approaches are able to associate bags from a common production batch. IRMS can be applied to small fragments which are notamenable to physical comparisons, and is able to discriminate bags which could be confused using birefringence patterns alone. Similarly, in certain cases birefringence patterns discriminate bags with similar isotopic compositions. The two approaches are therefore complementary. When more than one isotopically distinct region exists within a bag (e.g. the grip-seal is distinct from the body) the ability to discriminate and associate bags is greatly increased.
机译:塑料袋通常用于包装毒品,爆炸物和其他违禁品。因此,在法医案件中需要比较在不同位置发现的袋子。当前,这几乎完全是通过使用物理比较(例如双折射图案)来实现的。本文讨论了该方法的一些优点和缺点,并提出了稳定同位素比质谱(IRMS)作为进行这种性质比较的补充工具。提供了来自各种来源的十六种密封塑料袋的碳和氢同位素数据,目的是证明可能会遇到的数值范围。然后,将同位素和物理比较(特别是双折射)技术应用于来自领先制造商的不同制造批次的袋子卷的分析。两种方法都可以关联来自同一生产批次的袋子。 IRMS可以应用于不宜进行物理比较的小碎片,并且能够区分仅使用双折射图案可能会混淆的袋子。同样,在某些情况下,双折射图案可区分具有相似同位素组成的袋子。因此,这两种方法是互补的。当袋子中存在一个以上的同位素不同的区域时(例如,手柄密封件与身体不同),区分和关联袋子的能力将大大提高。

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