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文艺复兴时期绘画层的组成:同步粒子诱导X射线发射和背散射光谱法。

Composition of Renaissance paint layers: simultaneous particle induced X-ray emission and backscattering spectrometry.

作者信息

de Viguerie L, Beck L, Salomon J, Pichon L, Walter Ph

机构信息

Centre de Recherche et de Restauration des Musées de France (C2RMF, CNRS UMR 171), Palais du Louvre-Porte des Lions, 14 Quai François Mitterrand, 75001 Paris, France.

出版信息

Anal Chem. 2009 Oct 1;81(19):7960-6. doi: 10.1021/ac901141v.

DOI:10.1021/ac901141v
PMID:19731942
Abstract

Particle induced X-ray emission spectroscopy (PIXE) is now routinely used in the field of cultural heritage. Various setups have been developed to investigate the elemental composition of wood/canvas paintings or of cross-section samples. However, it is not possible to obtain information concerning the quantity of organic binder. Backscattering spectrometry (BS) can be a useful complementary method to overcome this limitation. In the case of paint layers, PIXE brings the elemental composition (major elements to traces) and the BS spectrum can give access to the proportion of pigment and binder. With the use of 3 MeV protons for PIXE and BS simultaneously, it was possible to perform quantitative analysis including C and O for which the non-Rutherford cross sections are intense. Furthermore, with the use of the same conditions for PIXE and BS, the experiment time and the potential damage by the ion beam were reduced. The results obtained with the external beam of the Accélérateur Grand Louvre pour l'Analyse Elementaire (AGLAE) facility on various test painting samples and on cross sections from Italian Renaissance masterpieces are shown. Simultaneous combination of PIXE and BS leads to a complete characterization of the paint layers: elemental composition and proportion of the organic binder have been determined and thus provide useful information about ancient oil painting recipes.

摘要

粒子诱导X射线发射光谱法(PIXE)如今在文化遗产领域已得到常规应用。人们开发了各种装置来研究木材/帆布画作或横截面样本的元素组成。然而,无法获取有关有机粘合剂数量的信息。背散射光谱法(BS)可以作为一种有用的补充方法来克服这一局限性。对于油漆层而言,PIXE能提供元素组成(从主要元素到痕量元素),而BS光谱可以得出颜料和粘合剂的比例。通过同时使用3兆电子伏特的质子进行PIXE和BS分析,能够进行包括碳和氧在内的定量分析,因为它们的非卢瑟福截面很强。此外,在相同条件下进行PIXE和BS分析,减少了实验时间以及离子束造成潜在损伤的可能性。展示了利用卢浮宫大加速器元素分析装置(AGLAE)的外束对各种测试绘画样本以及意大利文艺复兴时期杰作的横截面所获得的结果。PIXE和BS的同时结合能够对油漆层进行全面表征:已确定了元素组成和有机粘合剂的比例,从而为古代油画配方提供了有用信息。

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