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  5. Alteration of soda silicate glasses by organic pollutants in museums: Mechanisms and kinetics

Alteration of soda silicate glasses by organic pollutants in museums: Mechanisms and kinetics

Resource type
Journal article
Creator (person)
Robinet, L
Hall, Christopher
Eremin, Katherine
Fearn, Sarah
Tate, Jim
Date published
August 15, 2009
Abstract
The role of the organic pollutants formic acid, acetic acid and formaldehyde in the alteration of unstable soda silicate glasses is examined through SIMS depth profiling of replica glass aged in polluted and non-polluted atmospheres under ambient conditions. The effect of different controlled atmospheres is compared to the polluted atmosphere encountered in museum storage. The results show that formic acid rather than formaldehyde is responsible for the increased alteration in the National Museums of Scotland glass collection. Formic acid caused sodium formate crystals to form at the glass surface and increased the leaching of alkali. Acid pollutants increased both the alteration depth and the amount of sodium extracted from the altered layer, which fell to a concentration 1 at.%, compared to 4–5 at.% in the non-acidic atmospheres. The research highlights the gap existing between alteration models obtained from controlled laboratory experiments, predicting an eventual slowing down of the alteration, and the reaction process taking place in real environments (as found in museums), where the environmental fluctuations maintain a roughly linear progression of the alteration. The storage of unstable glasses in wooden cabinets or showcases emitting organic pollutants must be avoided and glasses should be kept in stable environmental conditions.
Journal title
Journal of Non-Crystalline Solids
Volume
355
Issue
28-30
Publisher
Elsevier
ISSN
0022-3093
Official URL
https://doi.org/10.1016/j.jnoncrysol.2009.05.011
Rights statement
In Copyright
DOI
10.1016/j.jnoncrysol.2009.05.011
Keywords
Iron exchange
Soda–lime–silica
Alkali silicates
corrosion
Secondary ion mass spectrocopy
Optical microscopy
Raman spectroscopy
Archaelogy
Additional information
Available online 1 July 2009
Managed by the British Library and supported by the AHRC

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