Local and structural characterisation of chlorinated phases formed on ferrous archaeological artefacts by μXRD and μXANES
Author:
Publisher
Elsevier BV
Subject
Instrumentation,Nuclear and High Energy Physics
Reference11 articles.
1. The corrosion of excavated archaeological iron with details on weeping and akaganéite
2. Post-excavation changes in iron antiquities
3. Characterisation of iron archaeological analogues using micro diffraction under synchrotron radiation. Application to the study of long term corrosion behaviour of low alloy steels
4. D. Neff, P. Dillmann, L. Bellot-Gurlet, G. Béranger, Corros. Sci., in press.
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1. Structural and spectroscopic study of well-developed crystals of parahibbingite, β-Fe2(OH)3Cl, formed from terrestrial weathering of the Muonionalusta iron meteorite;Mineralogical Magazine;2022-09-19
2. Ferrous hydroxychlorides hibbingite (γ -Fe2(OH)3Cl) and parahibbingite (β-Fe2(OH)3Cl) as a concealed sink of Cl and H2O in ultrabasic and granitic systems;American Mineralogist;2021-08-01
3. Microbial-Driven Stabilisation of Archaeological Iron Artefacts;Corrosion and Materials Degradation;2021-06-04
4. XANES at the Cl K-edge as a relevant technique to reveal the iron archaeological artefact dechlorination treatments;Journal of Analytical Atomic Spectrometry;2020
5. Archaeometallurgical investigation of ancient artefacts’ degradation phenomenon;npj Materials Degradation;2019-10-21
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