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Galvanic Corrosion Following Local Breakdown of a Scale Formed on X-65 in CO2 Saturated Solutions

R.M. Fernández-Domene, R. Leiva-Garcia, R. Akid, J. Andrews

In: Corrosion- PAper 5921: NACE Corrosion 2015; 15 Mar 2015-19 Mar 2015; Dallas, Texas, USA. Houston Texas, USA: National Association of Corrosion Engineers; 2015.

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Abstract

Under some conditions in sweet environments, the precipitation of corrosion products (primarily FeCO3) on the surface of X-65 pipeline steel can decrease the corrosion rate of the metal, this precipitated film acting like a protective scale. However, when these scales are damaged due to effects such as solid- particle erosion or mechanical stress, a galvanic pair can form between the bare steel (anode) and the surrounding undamaged scale (cathode). The aim of this work is to evaluate the magnitude of galvanic coupling that arises when the protective scale is broken and a corrosion cell is established between the defect and the surrounding scale. This study has been conducted in two stages: firstly, the formation of a protective scale on the surface of X-65 samples in CO2 saturated conditions (80 oC and a CO2 pressure of 0.53 bars); secondly, a scaled sample of X-65 steel was coupled with a fresh (non-scaled) X-65 sample in a brine solution saturated with CO2 at 60oC. Zero resistance ammeter (ZRA) measurements were then conducted using this galvanic couple. According to the results, there was galvanic coupling between the bare metal and a scaled surface where the magnitude of the galvanic pair was found to be dependent on the anode:cathode ratio.

Keyword(s)

Galvanic pair Sweet corrosion ZRA Carbon steel X-65

Bibliographic metadata

Type of resource:
Content type:
Type of conference contribution:
Publication date:
Conference title:
NACE Corrosion 2015
Conference venue:
Dallas, Texas, USA
Conference start date:
2015-03-15
Conference end date:
2015-03-19
Place of publication:
Houston Texas, USA
Proceedings title:
Abstract:
Under some conditions in sweet environments, the precipitation of corrosion products (primarily FeCO3) on the surface of X-65 pipeline steel can decrease the corrosion rate of the metal, this precipitated film acting like a protective scale. However, when these scales are damaged due to effects such as solid- particle erosion or mechanical stress, a galvanic pair can form between the bare steel (anode) and the surrounding undamaged scale (cathode). The aim of this work is to evaluate the magnitude of galvanic coupling that arises when the protective scale is broken and a corrosion cell is established between the defect and the surrounding scale. This study has been conducted in two stages: firstly, the formation of a protective scale on the surface of X-65 samples in CO2 saturated conditions (80 oC and a CO2 pressure of 0.53 bars); secondly, a scaled sample of X-65 steel was coupled with a fresh (non-scaled) X-65 sample in a brine solution saturated with CO2 at 60oC. Zero resistance ammeter (ZRA) measurements were then conducted using this galvanic couple. According to the results, there was galvanic coupling between the bare metal and a scaled surface where the magnitude of the galvanic pair was found to be dependent on the anode:cathode ratio.

Institutional metadata

University researcher(s):

Record metadata

Manchester eScholar ID:
uk-ac-man-scw:264067
Created by:
Akid, Robert
Created:
7th May, 2015, 11:05:34
Last modified by:
Akid, Robert
Last modified:
7th May, 2015, 11:05:34

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