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Elemental Analysis of Glass and Ink by Laser Ablation Inductively Coupled Plasma Mass Spectrometry (LA-ICP-MS) and Laser Induced Breakdown Spectroscopy (LIBS)

机译:激光烧蚀电感耦合等离子体质谱(La-ICp-ms)和激光诱导击穿光谱(LIBs)对玻璃和油墨的元素分析

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摘要

The necessity of elemental analysis techniques to solve forensic problems continues to expand as the samples collected from crime scenes grow in complexity. Laser ablation ICP-MS (LA-ICP-MS) has been shown to provide a high degree of discrimination between samples that originate from different sources. In the first part of this research, two laser ablation ICP-MS systems were compared, one using a nanosecond laser and another a femtosecond laser source for the forensic analysis of glass. The results showed that femtosecond LA-ICP-MS did not provide significant improvements in terms of accuracy, precision and discrimination, however femtosecond LA-ICP-MS did provide lower detection limits. In addition, it was determined that even for femtosecond LA-ICP-MS an internal standard should be utilized to obtain accurate analytical results for glass analyses. In the second part, a method using laser induced breakdown spectroscopy (LIBS) for the forensic analysis of glass was shown to provide excellent discrimination for a glass set consisting of 41 automotive fragments. The discrimination power was compared to two of the leading elemental analysis techniques, µXRF and LA-ICP-MS, and the results were similar; all methods generated u3e99% discrimination and the pairs found indistinguishable were similar. An extensive data analysis approach for LIBS glass analyses was developed to minimize Type I and II errors en route to a recommendation of 10 ratios to be used for glass comparisons. Finally, a LA-ICP-MS method for the qualitative analysis and discrimination of gel ink sources was developed and tested for a set of ink samples. In the first discrimination study, qualitative analysis was used to obtain 95.6% discrimination for a blind study consisting of 45 black gel ink samples provided by the United States Secret Service. A 0.4% false exclusion (Type I) error rate and a 3.9% false inclusion (Type II) error rate was obtained for this discrimination study. In the second discrimination study, 99% discrimination power was achieved for a black gel ink pen set consisting of 24 self collected samples. The two pairs found to be indistinguishable came from the same source of origin (the same manufacturer and type of pen purchased in different locations). It was also found that gel ink from the same pen, regardless of the age, was indistinguishable as were gel ink pens (four pens) originating from the same pack.
机译:随着从犯罪现场收集的样本越来越复杂,元素分析技术解决法医问题的必要性不断扩大。激光烧蚀ICP-MS(LA-ICP-MS)已被证明可以对不同来源的样品进行高度区分。在本研究的第一部分中,比较了两种激光烧蚀ICP-MS系统,一种使用纳秒激光,另一种使用飞秒激光源进行玻璃法医分析。结果表明,飞秒LA-ICP-MS在准确度,精确度和辨别力方面并未提供显着改善,但是飞秒LA-ICP-MS确实提供了较低的检测限。此外,已确定即使对于飞秒LA-ICP-MS,也应使用内标来获得玻璃分析的准确分析结果。在第二部分中,显示了一种使用激光诱导击穿光谱法(LIBS)进行玻璃法医分析的方法,可以很好地区分由41个汽车碎片组成的玻璃。将辨别力与两种领先的元素分析技术进行了比较,分别为µXRF和LA-ICP-MS,结果相似。所有方法都产生了99%的辨别力,发现难以区分的对相似。开发了用于LIBS玻璃分析的广泛数据分析方法,以最大程度地减少I型和II型误差,建议将10个比率的建议用于玻璃比较。最后,开发了一种LA-ICP-MS方法,用于定性分析和辨别凝胶油墨的来源,并测试了一组油墨样品。在第一个判别研究中,定性分析用于由美国特勤局提供的45种黑色凝胶墨水样本组成的盲法研究中,获得了95.6%的判别率。此区分研究获得0.4%的错误排除(I型)错误率和3.9%的错误包含(II型)错误率。在第二个鉴别研究中,由24个自收集样品组成的黑色中性笔套装的鉴别力达到了99%。被发现无法区分的两对来自相同的来源(相同的制造商和在不同位置购买的笔的类型)。还发现,来自同一支笔的凝胶墨水,无论年龄如何,都与来自同一支笔包的凝胶墨水笔(四支笔)没有区别。

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    Naes Benjamin E.;

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  • 年度 2009
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