XANES at the Cl K-edge as a relevant technique to reveal the iron archaeological artefact dechlorination treatments

Author:

Reguer Solenn1234ORCID,Kergourlay Florian12345,Foy Eddy56789ORCID,Neff Delphine56789,Vantelon Delphine1234ORCID,Cotte Marine101141213,Mirambet Francois1415161718,Dillmann Philippe56789ORCID

Affiliation:

1. DiffAbs Beamline

2. Synchrotron SOLEIL

3. L'Orme des Merisiers

4. France

5. LAPA NIMBE UMR3685

6. LMC – IRAMAT UMR 5060

7. CEA/CNRS

8. Université Paris Saclay

9. Bât. 637 CEA Saclay

10. ESRF

11. 38043 Grenoble Cedex 9

12. Sorbonne Université

13. CNRS

14. C2RMF

15. Palais du Louvre – Porte des Lions

16. Institut de Recherche de Chimie Paris (IRCP)

17. Chimie Paris Tech PSL Université

18. Paris

Abstract

Degradation state evaluation, corrosion diagnosis methods' reliability, and also the development and improvement of conservation strategies are dramatically important to preserve iron archaeological objects.

Publisher

Royal Society of Chemistry (RSC)

Subject

Spectroscopy,Analytical Chemistry

Reference34 articles.

1. R. Betholon , Archaeological metal artefacts and conservation issues: long-term corrosion studies corrosion of metallic heritage artefacts . Investigation, Conservation and Prediction of Long Term Behaviour , EFC Series , 2007 , pp. 31–40

2. Removal of Chloride and Iron Ions from Archaeological Wrought Iron with Sodium Hydroxide and Ethylenediamine Solutions

3. Buried iron archaeological artefacts: Corrosion mechanisms related to the presence of Cl-containing phases

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