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Spectroscopic evaluation of painted layer structural changes induced by gamma radiation in experimental models

机译:在实验模型中通过光谱评估伽马辐射引起的涂装层结构变化

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摘要

The degradation of cultural heritage objects by insects and microorganisms is an important issue for conservators, art specialists and humankind in general. Gamma irradiation is an efficient method of polychrome wooden artifacts disinfestation. Color changes and other modifications in the physical chemical properties of materials induced by gamma irradiation are feared by cultural heritage responsible committees and they have to be evaluated objectively and precisely. In this paper FTIR and FT-Raman spectroscopy methods were used to investigate the structural changes in some experimental models of tempera paint layers on wood following 11 kGy gamma irradiation at two dose rates. Radiation chemistry depends on the particular pigment, matrix formed by protein, resin (in case of varnished samples) and water presence. For the majority of painted layer in experimental models very small spectral variations were observed. Small changes in the FTIR spectra were observed for the raw sienna experimental model: for the higher dose rate the egg yolk protein oxidation peaks and the CH stretching bands due to lipids degradation products increased.
机译:昆虫和微生物对文化遗产的破坏对保护者,艺术专家和整个人类来说都是重要的问题。伽马射线辐照是一种消灭多色木制品的有效方法。文化遗产负责委员会担心伽玛射线辐照引起的材料的颜色变化和物理化学性质的其他改变,必须对其进行客观而准确的评估。本文采用FTIR和FT-Raman光谱方法研究了在两种剂量率下11 kGyγ辐照后,木材上的蛋彩画层的一些实验模型的结构变化。辐射化学取决于特定的颜料,蛋白质,树脂(如果是清漆样品)形成的基质和水的存在。对于实验模型中的大多数涂漆层,观察到非常小的光谱变化。对于原始色实验模型,观察到FTIR光谱的微小变化:对于较高的剂量率,由于脂质降解产物而导致的蛋黄蛋白氧化峰和CH拉伸带增加。

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