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紫外线对火灾现场的解读:对火灾现场紫外线可能用途的评估及后续程序建议。

Interpretation of a fire scene with ultraviolet light: An assessment of the possible utilisation of ultraviolet light at fire scenes and subsequent recommendations for procedures.

作者信息

Ljungkvist Eva, Thomsen Benny

机构信息

Danish National Police, National Forensic Services, Research and Development, Ejby Industrivej 125-135, 2600 Glostrup, Denmark.

Danish National Police, National Forensic Services, Crime Scene Unit, Ejby Industrivej 125-135, 2600 Glostrup, Denmark.

出版信息

Forensic Sci Int. 2019 Apr;297:284-292. doi: 10.1016/j.forsciint.2019.02.010. Epub 2019 Feb 19.

Abstract

A great deal of the earlier research regarding ultraviolet light was conducted in laboratory environments, rendering it difficult to interpret fluorescence at the scene of a fire. The purpose of this research project is to explore the ways in which ultraviolet light can be used as a tool in fire scene interpretation investigations and fire debris sampling. The results are based on an analysis of the literature as well as the research conducted over the last 25 years, including 11 fire investigations in which UV light was employed and approximately 1000 experiments. The factors involved in the studied fire experiments were time and climate. With regard to time, experiments were conducted with newly produced samples containing ignitable liquid after one day, three weeks, and 13 years. With regard to climate (the effect of the weather conditions prevailing in an area in general), several different climate zones are present in the jurisdiction of the National Police; for this reason, the experiments were conducted in Greenland (winter and summer), the Island of Fyn, and Sjælland (fall). Forensic technicians who were not involved in the current research project conducted blind tests with the purpose of interpreting fluorescence on the floor and ground. A basic premise of this work was to consider the conditions under which the forensic investigators of the Danish Police work, including routines, training, equipment, arson dogs, and work environment. The results demonstrated that ultraviolet light can be used to visualise liquid and fire patterns. It was concluded that investigations that use UV light enhance fire sampling in the presence of ignitable liquids. Another conclusion is that documentation by fluorescent photography can be used to detect liquid dispersion and scope. UV light enhances the analysis of liquid patterns; thus, fluorescent photography is in itself evidence. Ultraviolet light is useful in the interpretation of fire scenes and is a method that can be taken advantage of by forensic fire investigators; therefore, guidance and training in the interpretation of fluorescence should be further developed.

摘要

许多早期关于紫外线的研究是在实验室环境中进行的,这使得在火灾现场解释荧光变得困难。本研究项目的目的是探索将紫外线用作火灾现场解释调查和火灾碎片取样工具的方法。研究结果基于对文献的分析以及过去25年进行的研究,包括11次使用紫外线的火灾调查和约1000次实验。所研究的火灾实验涉及的因素是时间和气候。关于时间,对含有可燃液体的新制样品在一天、三周和13年后进行了实验。关于气候(一个地区普遍存在的天气条件的影响),国家警察管辖范围内有几个不同的气候区;因此,实验在格陵兰(冬季和夏季)、菲英岛和西兰岛(秋季)进行。未参与当前研究项目的法医技术人员进行了盲测,目的是解释地板和地面上的荧光。这项工作的一个基本前提是考虑丹麦警方法医调查人员的工作条件,包括工作程序、培训、设备、纵火犬和工作环境。结果表明,紫外线可用于观察液体和火灾模式。得出的结论是,在存在可燃液体的情况下,使用紫外线的调查可加强火灾取样。另一个结论是,通过荧光摄影进行记录可用于检测液体扩散情况和范围。紫外线增强了对液体模式的分析;因此,荧光摄影本身就是证据。紫外线在火灾现场解释中很有用,是法医火灾调查人员可以利用的一种方法;因此,应进一步开展荧光解释方面的指导和培训。

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