Corrosion of Bronzes by Extended Wetting with Single versus Mixed Acidic Pollutants

The corrosion of bronzes was examined in the context of single-acid versus mixed-acid (as in urban acid rain) solutions. Two bi-component bronzes (copper with either 3% Sn or 7% Sn) that closely represent those of historic artifacts were immersed for five weeks in conditions designed to replicate th...

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Main Authors: Liliana Gianni, Giovanni E. Gigante, Mauro Cavallini, Annemie Adriaens
Format: Article
Language:English
Published: MDPI AG 2014-04-01
Series:Materials
Subjects:
Online Access:http://www.mdpi.com/1996-1944/7/5/3353
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spelling doaj-2ec02c386a7b47e387d014393a4818832020-11-25T00:22:33ZengMDPI AGMaterials1996-19442014-04-01753353337010.3390/ma7053353ma7053353Corrosion of Bronzes by Extended Wetting with Single versus Mixed Acidic PollutantsLiliana Gianni0Giovanni E. Gigante1Mauro Cavallini2Annemie Adriaens3Department of Analytical Chemistry, Ghent University, Krijgslaan 281-S12, 9000 Ghent, BelgiumDipartimento di Scienze di Base e Applicate all'Ingegneria, Università di Roma La Sapienza, Via A. Scarpa 14/16, 00161 Rome, ItalyDipartimento di Ingegneria Chimica Materiali Ambiente (DICMA), Università di Roma La Sapienza, Via Eudossiana 18, 00184 Rome, ItalyDepartment of Analytical Chemistry, Ghent University, Krijgslaan 281-S12, 9000 Ghent, BelgiumThe corrosion of bronzes was examined in the context of single-acid versus mixed-acid (as in urban acid rain) solutions. Two bi-component bronzes (copper with either 3% Sn or 7% Sn) that closely represent those of historic artifacts were immersed for five weeks in conditions designed to replicate those experienced by statues and ornaments in cities where rainfall and humidity constantly produce an electrolyte layer on the surfaces of bronzes. Ions, acids, and particles of pollutants can dissolve in this layer, resulting in a variety of harsh corrosion processes. The kinetics of corrosion and the properties of the resulting patinas were monitored weekly by electrochemical impedance spectroscopy and open-circuit potential measurements. The sizes and appearances of the corrosion products were monitored and used to estimate the progress of the corrosion, whose crystalline structures were visualized using scanning electron microscopy with energy dispersive spectroscopy, identified by X-ray diffraction, and characterized by spectrocolorimetry. The electrochemical measurements demonstrated that greater damage (in terms of color change and corrosion product formation) did not correspond to deficiencies in protection. The mixed-acid solution did not corrode the bronzes, as would be expected from the additive effects of the single acids. The postulated mechanisms of metal dissolution appear to be specific to a particular bronze alloy, with the tin component playing an important role.http://www.mdpi.com/1996-1944/7/5/3353bronze corrosiontin influenceacid rainelectrochemical impedance spectroscopyspectrocolorimetry
collection DOAJ
language English
format Article
sources DOAJ
author Liliana Gianni
Giovanni E. Gigante
Mauro Cavallini
Annemie Adriaens
spellingShingle Liliana Gianni
Giovanni E. Gigante
Mauro Cavallini
Annemie Adriaens
Corrosion of Bronzes by Extended Wetting with Single versus Mixed Acidic Pollutants
Materials
bronze corrosion
tin influence
acid rain
electrochemical impedance spectroscopy
spectrocolorimetry
author_facet Liliana Gianni
Giovanni E. Gigante
Mauro Cavallini
Annemie Adriaens
author_sort Liliana Gianni
title Corrosion of Bronzes by Extended Wetting with Single versus Mixed Acidic Pollutants
title_short Corrosion of Bronzes by Extended Wetting with Single versus Mixed Acidic Pollutants
title_full Corrosion of Bronzes by Extended Wetting with Single versus Mixed Acidic Pollutants
title_fullStr Corrosion of Bronzes by Extended Wetting with Single versus Mixed Acidic Pollutants
title_full_unstemmed Corrosion of Bronzes by Extended Wetting with Single versus Mixed Acidic Pollutants
title_sort corrosion of bronzes by extended wetting with single versus mixed acidic pollutants
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2014-04-01
description The corrosion of bronzes was examined in the context of single-acid versus mixed-acid (as in urban acid rain) solutions. Two bi-component bronzes (copper with either 3% Sn or 7% Sn) that closely represent those of historic artifacts were immersed for five weeks in conditions designed to replicate those experienced by statues and ornaments in cities where rainfall and humidity constantly produce an electrolyte layer on the surfaces of bronzes. Ions, acids, and particles of pollutants can dissolve in this layer, resulting in a variety of harsh corrosion processes. The kinetics of corrosion and the properties of the resulting patinas were monitored weekly by electrochemical impedance spectroscopy and open-circuit potential measurements. The sizes and appearances of the corrosion products were monitored and used to estimate the progress of the corrosion, whose crystalline structures were visualized using scanning electron microscopy with energy dispersive spectroscopy, identified by X-ray diffraction, and characterized by spectrocolorimetry. The electrochemical measurements demonstrated that greater damage (in terms of color change and corrosion product formation) did not correspond to deficiencies in protection. The mixed-acid solution did not corrode the bronzes, as would be expected from the additive effects of the single acids. The postulated mechanisms of metal dissolution appear to be specific to a particular bronze alloy, with the tin component playing an important role.
topic bronze corrosion
tin influence
acid rain
electrochemical impedance spectroscopy
spectrocolorimetry
url http://www.mdpi.com/1996-1944/7/5/3353
work_keys_str_mv AT lilianagianni corrosionofbronzesbyextendedwettingwithsingleversusmixedacidicpollutants
AT giovanniegigante corrosionofbronzesbyextendedwettingwithsingleversusmixedacidicpollutants
AT maurocavallini corrosionofbronzesbyextendedwettingwithsingleversusmixedacidicpollutants
AT annemieadriaens corrosionofbronzesbyextendedwettingwithsingleversusmixedacidicpollutants
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