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The use of vibrational spectroscopy techniques as a tool for the discrimination and identification of the natural and synthetic organic compounds used in conservation

机译:振动光谱技术作为区分和鉴定用于保护的天然和合成有机化合物的工具的使用

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Early restoration work on archaeological objects generally made use of glues, fillers, consolidants or varnishes composed of natural or synthetic organic compounds. They were chosen for their chemical and physical properties as well as their compatibility with the constitutive material of the object in question. This paper aims to develop a methodology based on a discrimination tool to achieve step-by-step identification of the organic compounds according to their chemical characteristics, by a complementary use of infrared and Raman spectroscopy techniques. 23 representative references of commonly used natural and synthetic products were analyzed. A flowchart containing all the references was constructed based on the interpretation of their respective infrared and Raman spectra. 4 distinct families were differentiated, namely those consisting of long carbon chain molecules (e.g. alkanes), molecules with a CO bond (e.g. esters, ketones, carboxylic acids), ethers and amines. Within each family, organic compounds were identified by the presence or absence of intense and medium peaks in the infrared and Raman spectra. Only the distinction between different types of mineral wax or proteinaceous compounds proved inconclusive. Case studies on archaeological samples highlight the strengths and weaknesses of this tool. The flowchart was effective in identifying organic compounds.
机译:对考古对象的早期修复工作通常使用由天然或合成有机化合物组成的胶水,填充剂,固结剂或清漆。选择它们的原因是它们的化学和物理特性以及与所讨论对象的本构材料的相容性。本文旨在开发一种基于鉴别工具的方法,通过结合使用红外光谱和拉曼光谱技术,根据有机化合物的化学特征逐步鉴定有机化合物。分析了23种常用天然和合成产品的代表性参考文献。基于它们各自的红外和拉曼光谱的解释,构建了包含所有参考的流程图。区分了4个不同的族,即由长碳链分子(例如烷烃),带有CO键的分子(例如酯,酮,羧酸),醚和胺组成的族。在每个家族中,通过红外和拉曼光谱中是否存在强和中峰来鉴定有机化合物。仅证明了不同类型的矿物蜡或蛋白质化合物之间的区别尚无定论。有关考古样本的案例研究突出了该工具的优缺点。该流程图可有效识别有机化合物。

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