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FT-NIR spectroscopy for non-invasive identification of natural polymers and resins in easel paintings

机译:FT-NIR光谱仪用于无损鉴定画架中的天然聚合物和树脂

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In the present study, the analytical strengths and limitations of near-infrared (NIR) spectroscopy to non-invasively characterize organic components in painting materials have been investigated. In spite of the increased amount of information available today from advanced modern analytical instrumentations dedicated to cultural heritage, the non-invasive identification of materials belonging to the wide class of organic compounds historically used in paintings is still a challenging task. Near-infrared spectroscopy offers several attractive features that make this technique particularly suitable to this purpose. In fact, it is non-invasive, allows for non-contact measurements in reflectance mode, gives molecular information on complex macromolecules, and can be performed on-site by means of portable devices. First-derivative transformation of reflectance spectroscopic data has been applied to provide a simple and fast way to deduce more information from NIR spectra. This approach has allowed spectral features to be identified that can be useful to distinguish different compounds belonging to the classes of lipids, proteins, and resins. To this purpose, at first, a spectral database of pure standard has been collected. Our analytical approach was then successfully validated on pictorial models reproducing the typical stratigraphy of an easel painting. As final step, the study of a real painting has been attempted and a drying oil, animal glue, and a terpenic natural resin, as well as an earth pigment were clearly identified, as cross-validated by GC-MS analysis.
机译:在本研究中,已经研究了近红外(NIR)光谱法无损表征涂料材料中有机成分的分析强度和局限性。尽管当今专用于文化遗产的先进现代分析仪器可提供的信息越来越多,但无创识别属于绘画历史上广泛使用的有机化合物的材料仍然是一项艰巨的任务。近红外光谱技术提供了多种吸引人的功能,使该技术特别适合于此目的。实际上,它是非侵入性的,允许在反射模式下进行非接触式测量,提供有关复杂大分子的分子信息,并且可以通过便携式设备现场进行。反射光谱数据的一阶导数转换已被应用,以提供一种简单快速的方法来从NIR光谱中推断出更多信息。这种方法可以识别光谱特征,这些光谱特征可用于区分属于脂质,蛋白质和树脂类别的不同化合物。为此,首先收集了纯标准品的光谱数据库。然后,我们的分析方法已在可再现画架绘画典型地层学的图画模型上得到成功验证。作为最后一步,已经尝试了对真实绘画的研究,并明确确定了干燥油,动物胶和萜烯天然树脂以及土类颜料,并通过GC-MS分析进行了交叉验证。

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