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拉曼光谱分析可用于确定象牙的年龄。

Raman Spectroscopy Allows for the Determination of Elephant Ivory Age.

机构信息

Department of Physics, SUNY University at Albany, Albany, USA.

Center for Applied Isotope Studies, University of Georgia, Athens, USA.

出版信息

Appl Spectrosc. 2020 Aug;74(8):940-947. doi: 10.1177/0003702820930037. Epub 2020 Jun 11.

Abstract

Determination of the age of ivory is important for controlling illegal trafficking and the proper identification of ivory artifacts. Radiocarbon dating is the standard method of determining the age of ivories; however, it requires the destruction of a fragment of the sample. Raman spectroscopy is a nondestructive technique, and therefore can be used on artwork. Moreover, Raman measurements can be done using a portable system, and the data analysis can be performed on the spot once the groundwork is done. Ivories contain two primary components: collagen and bioapatite. Raman spectrum of ivory material is mainly a sum of the vibrational bands of these components. As collagen deteriorates with time, its Raman signal decreases; therefore, the ratio of collagen to bioapatite peaks is smaller in the older samples compared to the younger ones, providing a basis for sample dating. We have compared the results of Raman and radiocarbon measurements applied to a set of elephant ivory fragments and have successfully calibrated the Raman data set using radiocarbon measurements. We found that the Raman collagen to bioapatite peak ratios of the samples can be used as a metric to determine their age, providing a nondestructive technique to assess the age of ivory samples. We have also used singular value decomposition (SVD) to analyze the whole Raman spectra. We have observed clear separation between samples of different ages in the SVD component space. The samples also tended to align along the timeline diagonal in the correct order. The changes in multiple collagen and bioapatite peaks contribute to the differences in Raman spectra of ivory samples of different age.

摘要

象牙年龄的确定对于控制非法贸易和正确鉴定象牙制品非常重要。放射性碳测年是确定象牙年龄的标准方法;然而,它需要破坏样本的一部分。拉曼光谱是一种非破坏性技术,因此可以用于艺术品。此外,拉曼测量可以使用便携式系统进行,一旦完成基础工作,就可以在现场进行数据分析。象牙包含两种主要成分:胶原蛋白和生物磷灰石。象牙材料的拉曼光谱主要是这些成分的振动带的总和。由于胶原蛋白随时间恶化,其拉曼信号减弱;因此,与年轻样本相比,较老样本中胶原蛋白与生物磷灰石峰的比值较小,为样本定年提供了依据。我们比较了一组象象牙碎片的拉曼和放射性碳测量结果,并成功地使用放射性碳测量对拉曼数据集进行了校准。我们发现,样品的拉曼胶原蛋白与生物磷灰石峰比值可作为确定其年龄的指标,提供了一种无损技术来评估象牙样品的年龄。我们还使用奇异值分解 (SVD) 分析了整个拉曼光谱。我们在 SVD 分量空间中观察到不同年龄的样品之间有明显的分离。样品也倾向于按照正确的顺序沿着时间线对角线排列。不同年龄的象牙样品的拉曼光谱差异归因于多个胶原蛋白和生物磷灰石峰的变化。

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