Literature DB >> 28389921

In situ X-ray fluorescence-based method to differentiate among red ochre pigments and yellow ochre pigments thermally transformed to red pigments of wall paintings from Pompeii.

Iker Marcaida1, Maite Maguregui2, Silvia Fdez-Ortiz de Vallejuelo3, Héctor Morillas3, Nagore Prieto-Taboada3, Marco Veneranda3, Kepa Castro3, Juan Manuel Madariaga3.   

Abstract

Most of the magnificent wall paintings from the ancient city of Pompeii are decorated with red and yellow colors coming from the ochre pigments used. The thermal impact of the pyroclastic flow from the eruption of Vesuvius, in AD 79, promoted the transformation of some yellow painted areas to red. In this work, original red ochre, original yellow ochre, and transformed yellow ochre (nowadays showing a red color) of wall paintings from Pompeian houses (House of Marcus Lucretius and House of Gilded Cupids) were analyzed by means of a handheld energy-dispersive X-ray fluorescence spectrometer to develop a fast method that allows chemical differentiation of the original red ochre and the transformed yellow ochre. Principal component analysis of the multivariate obtained data showed that arsenic is the tracer element to distinguish between both red colored ochres. Moreover, Pompeian raw red and yellow ochre pigments recovered from the burial were analyzed in the laboratory with use of a benchtop energy-dispersive X-ray fluorescence spectrometer to confirm the elemental composition and the conclusions drawn from the in situ analysis according to the yellow ochre pigment transformation in real Pompeian wall paintings.

Entities:  

Keywords:  Arsenic traces; Color transformation; Dehydration process; Red ochre; X-ray fluorescence spectrometry; Yellow ochre

Year:  2017        PMID: 28389921     DOI: 10.1007/s00216-017-0329-3

Source DB:  PubMed          Journal:  Anal Bioanal Chem        ISSN: 1618-2642            Impact factor:   4.142


  1 in total

1.  When Red Turns Black: Influence of the 79 AD Volcanic Eruption and Burial Environment on the Blackening/Darkening of Pompeian Cinnabar.

Authors:  Silvia Pérez-Diez; Africa Pitarch Martí; Anastasia Giakoumaki; Nagore Prieto-Taboada; Silvia Fdez-Ortiz de Vallejuelo; Alberta Martellone; Bruno De Nigris; Massimo Osanna; Juan Manuel Madariaga; Maite Maguregui
Journal:  Anal Chem       Date:  2021-11-24       Impact factor: 6.986

  1 in total

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