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Evaluation of the Evidential Value of the Elemental Composition of Glass, Ink and Paper by Laser-Based Micro-Spectrochemical Methods

机译:用激光微光谱法评价玻璃,油墨和纸张元素组成的证据价值

摘要

Elemental analysis can become an important piece of evidence to assist the solution of a case. The work presented in this dissertation aims to evaluate the evidential value of the elemental composition of three particular matrices: ink, paper and glass.In the first part of this study, the analytical performance of LIBS and LA-ICP-MS methods was evaluated for paper, writing inks and printing inks. A total of 350 ink specimens were examined including black and blue gel inks, ballpoint inks, inkjets and toners originating from several manufacturing sources and/or batches. The paper collection set consisted of over 200 paper specimens originating from 20 different paper sources produced by 10 different plants.Micro-homogeneity studies show smaller variation of elemental compositions within a single source (i.e., sheet, pen or cartridge) than the observed variation between different sources (i.e., brands, types, batches). Significant and detectable differences in the elemental profile of the inks and paper were observed between samples originating from different sources (discrimination of 87 – 100% of samples, depending on the sample set under investigation and the method applied). These results support the use of elemental analysis, using LA-ICP-MS and LIBS, for the examination of documents and provide additional discrimination to the currently used techniques in document examination.In the second part of this study, a direct comparison between four analytical methods (µ-XRF, solution-ICP-MS, LA-ICP-MS and LIBS) was conducted for glass analyses using interlaboratory studies. The data provided by 21 participants were used to assess the performance of the analytical methods in associating glass samples from the same source and differentiating different sources, as well as the use of different match criteria (confidence interval (±6s, ±5s, ±4s, ±3s, ±2s), modified confidence interval, t-test (sequential univariate, p=0.05 and p=0.01), t-test with Bonferroni correction (for multivariate comparisons), range overlap, and Hotelling’s T2 tests. Error rates (Type 1 and Type 2) are reported for the use of each of these match criteria and depend on the heterogeneity of the glass sources, the repeatability between analytical measurements, and the number of elements that were measured. The study provided recommendations for analytical performance-based parameters for µ-XRF and LA-ICP-MS as well as the best performing match criteria for both analytical techniques, which can be applied now by forensic glass examiners.
机译:元素分析可以成为协助解决案件的重要证据。本文的工作旨在评估墨水,纸张和玻璃这三种特定基质的元素组成的证据价值。在本研究的第一部分中,对LIBS和LA-ICP-MS方法的分析性能进行了评估。纸,书写墨水和印刷墨水。总共检查了350个墨水样品,包括黑色和蓝色凝胶墨水,圆珠笔墨水,喷墨打印机和来自多个制造来源和/或批次的墨粉。论文集包括200份纸质标本,这些标本来自10个不同工厂生产的20种不同纸张来源。微观均匀性研究表明,单一来源(即纸张,钢笔或​​墨盒)中元素组成的变化小于观察到的不同的来源(即品牌,类型,批次)。在不同来源的样品之间观察到了油墨和纸张元素分布的显着和可检测的差异(区分87 – 100%的样品,取决于所研究的样品集和所采用的方法)。这些结果支持使用LA-ICP-MS和LIBS进行元素分析的元素分析,并为当前使用的文件检验技术提供了额外的判别方法。在本研究的第二部分中,对四种分析方法进行了直接比较使用实验室间研究进行玻璃分析的方法(µ-XRF,溶液-ICP-MS,LA-ICP-MS和LIBS)。由21名参与者提供的数据用于评估分析方法在关联来自同一来源和区分不同来源的玻璃样品时的性能以及使用不同的匹配标准(置信区间(±6s,±5s,±4s ,±3s,±2s),修改后的置信区间,t检验(顺序单变量,p = 0.05和p = 0.01),带有Bonferroni校正的t检验(用于多变量比较),范围重叠和Hotelling的T2检验。报告了使用每种匹配标准(类型1和类型2)的情况(类型1和类型2),这些条件取决于玻璃源的不均一性,分析测量之间的可重复性以及所测量元素的数量,该研究为分析性能提供了建议-XRF和LA-ICP-MS的基于参数,以及两种分析技术的最佳匹配标准,现在可以由法医玻璃检查员应用。

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    Trejos Tatiana;

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