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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Forensic float glass fragment analysis using single- pulse laser ablation inductively coupled plasma time of flight mass spectrometry
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Forensic float glass fragment analysis using single- pulse laser ablation inductively coupled plasma time of flight mass spectrometry

机译:使用单脉冲激光烧蚀电感耦合等离子体飞行量的法医浮法玻璃片段分析

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摘要

The most discriminating method that is currently applied in routine forensic elemental analysis of glass is laser ablation in combination with quadrupole or sector field based inductively coupled plasma mass spectrometry (LA-ICPMS) following the standard method ASTM E2927~(-1)6E1. Due to the sequential measurement method, sample size constraints of approximately 400 μn × 200 μm × 100μm with six individual measurements have been reported to provide optimum parameters for glass discrimination. The necessary sample size is given by the spot size, number of laser pulses per replicate and number of replicate measurements. In this study, a single-pulse laser ablation inductively coupled plasma time of flight mass spectrometry (Single-Pulse LA-ICP-TOFMS) method was developed and applied for the matching and mismatching of forensic float glass evidence. 110 laser pulses with an ablation spot diameter of 90 μm were applied to float glass fragments of a size below 400 μm in diameter. 18 elements were quantified from each individual laser pulse in order to compare the corresponding concentrations between various glass fragments. In contrast to previous work, a modified 5-sigma criterion was used to successfully match fragments from the same source and mismatch fragments from differing sources. The data set generated within this study demonstrates new capabilities when using quasi simultaneous signal detection and reduced the necessary sample volume from 400 urn × 200 urn × 100 μm to 100 μm × 100 μm × 33 μm, which corresponds to a reduction in sample material from 20 μg to 0.8 μg. The proof of concept is shown for the application of a single-pulse based method for glass fragment analysis in a forensic context, which would allow the measurement of smaller fragments than previously possible.
机译:目前应用于玻璃常规的鉴定方法是玻璃的常规法证分析中的激光消融,与标准方法ASTM E2927〜(-1)6E1组合的激光消融与四极或扇形电感耦合等离子体质谱(LA-ICPMS)。由于顺序测量方法,据报道,具有六种单独测量的约400μn×200μm×100μm的样本尺寸约束,为玻璃鉴别提供最佳参数。必要的样品大小由点尺寸,每重复的激光脉冲数和复制测量数量给出。在该研究中,开发了一种单脉冲激光烧蚀电感耦合等离子体的飞行质谱(单脉冲La-ICP-TOFMS)方法,并应用了法医浮法玻璃证据的匹配和不匹配。 110激光脉冲具有90μm的光束直径为90μm的浮法玻璃碎片,其直径低于400μm。从每个单独的激光脉冲量化18个元素,以比较各种玻璃片段之间的相应浓度。与先前的工作相比,修改过的5-Sigma标准用于成功地与不同来源的相同源和不匹配片段的碎片匹配。本研究中生成的数据集可以在使用准同时信号检测时表现出新的能力,并将必要的样品体积从400 URN×200 URN×100μm降至100μm×100μm×33μm,这对应于来自的样品材料的减少20μg至0.8μg。显示概念证明,用于在法医上下文中应用用于玻璃片段分析的单脉冲方法,这将允许测量比以前的较小碎片。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2020年第10期|2248-2254|共7页
  • 作者单位

    Department of Chemistry and Applied Biosciences laboratory of Inorganic Chemistry ETH Zurich Vladimir-Prelog-Weg 1 8093 Zurich Switzerland;

    Department of Chemistry and Applied Biosciences laboratory of Inorganic Chemistry ETH Zurich Vladimir-Prelog-Weg 1 8093 Zurich Switzerland;

    Zurich Forensic Science Institute Zeughausstrasse 11 8004 Zurich Switzerland;

    Zurich Forensic Science Institute Zeughausstrasse 11 8004 Zurich Switzerland;

    Department of Chemistry and Applied Biosciences laboratory of Inorganic Chemistry ETH Zurich Vladimir-Prelog-Weg 1 8093 Zurich Switzerland;

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