In this work, a number of polychrome fragments from two recently discovered Roman villas have been studied with three non-invasive techniques, making use of transportable devices: Macro X-ray Fluorescence (MA-XRF) elemental mapping, multispectral scanning reflectography, and Fibre Optics Reflectance Spectroscopy (FORS). Specifically, the MA-XRF elemental maps were compared with the spectral correlation maps (SCM) computed from the Vis-NIR images acquired with the multispectral scanner, with the aim of displaying the distributions of the different pictorial materials, while assessing the chemical composition of the pigments present. The combined application of the two former mapping/imaging techniques represents a valid tool for the chemical and spectral characterization of archaeological paintings, providing easy-to-interpret data for the professionals involved in the conservation of Cultural Heritage. (C) 2019 Elsevier Masson SAS. All rights reserved.

The analysis of archaeological mural paintings may provide relevant information on the artistic techniques and the pictorial materials used in the past, expanding the knowledge of customs and technologies of ancient societies. Given their location, fragility and value, it is generally required to analyze mural paintings in situ, avoiding contact measurements, sampling or pre-treatments.

Non-invasive mapping methods for pigments analysis of Roman mural paintings

Dal Fovo Alice;Pampaloni Enrico;Striova Jana;Fontana Raffaella
2020

Abstract

The analysis of archaeological mural paintings may provide relevant information on the artistic techniques and the pictorial materials used in the past, expanding the knowledge of customs and technologies of ancient societies. Given their location, fragility and value, it is generally required to analyze mural paintings in situ, avoiding contact measurements, sampling or pre-treatments.
2020
Istituto Nazionale di Ottica - INO
In this work, a number of polychrome fragments from two recently discovered Roman villas have been studied with three non-invasive techniques, making use of transportable devices: Macro X-ray Fluorescence (MA-XRF) elemental mapping, multispectral scanning reflectography, and Fibre Optics Reflectance Spectroscopy (FORS). Specifically, the MA-XRF elemental maps were compared with the spectral correlation maps (SCM) computed from the Vis-NIR images acquired with the multispectral scanner, with the aim of displaying the distributions of the different pictorial materials, while assessing the chemical composition of the pigments present. The combined application of the two former mapping/imaging techniques represents a valid tool for the chemical and spectral characterization of archaeological paintings, providing easy-to-interpret data for the professionals involved in the conservation of Cultural Heritage. (C) 2019 Elsevier Masson SAS. All rights reserved.
Archaeological paintings
A secco paintings
MA-XRF
Multispectral scanning reflectography
Spectral correlation mapping
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/423120
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