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The interaction of fingermark deposits on metal surfaces and potential ways for visualisation

机译:Fingermark沉积物对金属表面的相互作用及潜在的可视化方式

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摘要

The interaction of fingermark deposits on metals has been examined by a variety of techniques. Visualisation by film growth has been the main area of investigation through: thermal oxidation, anodising, peroxide solution, and the interaction with vapour of iodine and ammonium sulphide. Corrosion of the underlying metal has also been examined as an alternative means of visualisation. Confocal microscopy was used to look at the film thickness and corrosion products around the prints. Scanning electron microscopy and energy dispersion of X-rays (SEM-EDX) examined a number of metal samples to investigate film growth and the elemental distribution. The observations suggest that differential oxidation was occurring as well as corrosion into the metal. Fingermark deposits on metals can corrode into the metal depending on the reactivity of the metal and leave a recoverable mark. However, fingermark deposits can also alter the rate of chemical reaction of the substrate metal by oxidation. In some cases organic matter can inhibit reaction, both when forming an oxide layer and when corroding the metal. However, signs of third level detail from pore contact may also be visible and the monovalent ions from salts could also influence film growth. Whilst further work would need to be carried out to decide whether any of these techniques may have application in fingermark recovery, this study does suggest that fingermarks on metals may be recoverable after incidents such as fires or immersion in water.
机译:通过各种技术研究了Fingermark沉积物对金属的相互作用。通过薄膜生长可视化是通过:通过:热氧化,阳性,过氧化物溶液以及与碘和硫化铵的蒸气相互作用的主要研究领域。还研究了底层金属的腐蚀作为可视化的替代手段。共聚焦显微镜用于看看印刷品周围的膜厚度和腐蚀产品。扫描电子显微镜和X射线(SEM-EDX)的能量分散检查了许多金属样品以研究薄膜生长和元素分布。观察结果表明,发生差异氧化以及腐蚀到金属中。根据金属的反应性并留下可回收的标记,金属上的Fingermark沉积物可以腐蚀到金属中。然而,Fingermark沉积物还可以通过氧化改变基材金属的化学反应速率。在某些情况下,有机物质可以抑制反应,当形成氧化物层时和腐蚀金属时。然而,孔隙接触的第三级细节的迹象也可以可见,并且来自盐的单价离子也可能影响膜生长。在进一步的工作中,需要进行以确定这些技术是否可以在Fingermark恢复中具有应用,而本研究表明金属上的指状物可以在诸如烟雾或浸入水中的事故后可回收。

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