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Novel mass spectrometric approaches for the analysis of modern oil paint media and organic additives in paintings

机译:新颖的质谱方法用于分析油漆中的现代油漆介质和有机添加剂

摘要

Modern unvarnished oil paints in paintings show degradation problems such as bleeding, efflorescence and solvent sensitivity1 which are related to specific lipidic media and additives in the paint. Micro-analytical techniques such as Fourier Transform Infrared Spectroscopy (FTIR) and Gas Chromatography/Mass spectrometry (GCMS) are routinely used for detection of organic materials in oil paints. The type of oil may be determined based on characteristic peak ratios of mainly palmitic and stearic acid, using GCMS. However, the techniques are less specific if other lipidic components are present. Moreover, using standard preparation techniques GCMS provides only limited information about important parameters which reflect the original composition and the state of ageing or degradation through oxidation, hydrolysis and soap formation. In general, a combination of analytical techniques and/or extensive sample pretreatment is required to obtain such information.2,3This paper discusses 20th C oil paint technology and the organic components that may be present in fresh and dried oil paints. An overview is given of novel mass spectrometric techniques which can be used for detection of these original materials and their drying and degradation products, and compared to GCMS techniques which involve pretreatment and derivatisation procedures.
机译:现代未上漆的油漆中存在降解问题,例如渗色,起花和溶剂敏感性1,这与油漆中的特定脂质介质和添加剂有关。诸如傅立叶变换红外光谱(FTIR)和气相色谱/质谱(GCMS)之类的微分析技术通常用于检测油漆中的有机材料。可以使用GCMS基于主要的棕榈酸和硬脂酸的特征峰比率来确定油的类型。但是,如果存在其他脂质成分,则该技术的特异性较低。此外,使用标准的制备技术,GCMS仅提供有关重要参数的有限信息,这些参数反映了原始成分以及通过氧化,水解和皂形成而引起的老化或降解状态。通常,需要将分析技术和/或大量样品预处理相结合才能获得此类信息。2,3本文讨论了20 C油漆技术以及新鲜和干燥油漆中可能存在的有机成分。概述了可用于检测这些原始物质及其干燥和降解产物的新型质谱技术,并将其与涉及预处理和衍生化程序的GCMS技术进行了比较。

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