Effects and Consequences of an Alkali-Induced Cathodic Environment on Coating Aging

Author:

Pélissier Krystel1ORCID,Diler Erwan1ORCID,Dossot Manuel2ORCID,Carteret Cédric2,Vittonato Jean3,Castillon François4,Fontaine Sylvain5,Kerzerho Thierry5,Larché Nicolas1,Lucas Patrice6

Affiliation:

1. French Corrosion Institute, Part of Research Institutes of Sweden (RISE), 220 Rue Pierre Rivoalon, 29200 Brest, France

2. Laboratoire de Chimie Physique et Microbiologie pour les Matériaux et l’Environnement (LCPME), UMR CNRS—Université de Lorraine, 405 Rue de Vandoeuvre, 54600 Villers-lès-Nancy, France

3. TotalEnergies OneTech, Avenue Larribau, 64000 Pau, France

4. Téréga, 40 Avenue de l’Europe, 64000 Pau, France

5. GRTgaz, 5 A Rue Ferdinand de Lesseps, 60200 Compiègne, France

6. BS Coatings, 1 Allée Paul Sabatier, 27940 Le Val-d’Hazey, France

Abstract

The use of organic coatings in conjunction with cathodic protection (CP) for buried structures is the usual method for protecting steel against corrosion. When the organic coating loses its protective ability, regardless of the reason, the CP becomes the active protection, leading to a specific local environment. This environment can be characterized by high alkalinity, which can be detrimental for the coated structure, either by weakening the steel–coating interface or by the chemical aging of the coating. Thus, the coating must be compatible with CP and able to sustain aging under an alkaline environment. In this study, the susceptibility to alkaline aging and its consequences in regards to coating performance have been investigated for two commercial coatings used for buried structures—fusion bonded epoxy (FBE) and liquid epoxy (LE)—in free membrane and coated steel configurations. The results showed a clear impact of alkaline aging on the studied LE, leading to a significant reduction in coating resistance and ultimately, failure of the steel–coating interface, whereas the studied FBE remained stable. The presented results relate to a precise formulation of LE and FBE; however, the proposed chemical method appears to be relevant and shows the necessity of considering such specific aging results for coating specifications and improvements.

Publisher

MDPI AG

Subject

Materials Chemistry,Surfaces, Coatings and Films,Surfaces and Interfaces

Reference69 articles.

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