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Journal ArticleDOI

An Electrochemical Model for Prediction of Corrosion of Mild Steel in Aqueous Carbon Dioxide Solutions

TLDR
In this paper, a predictive model was developed for uniform carbon dioxide (CO2) corrosion, based on modeling of individual electrochemical reactions in a water-CO2 system, taking into account the reactions of hydrogen ion (H+) reduction, carbonic acid (H2CO3) reduction, direct water reduction, oxygen reduction, and anodic dissolution of iron.
Abstract
A predictive model was developed for uniform carbon dioxide (CO2) corrosion, based on modeling of individual electrochemical reactions in a water-CO2 system. The model takes into account the electrochemical reactions of hydrogen ion (H+) reduction, carbonic acid (H2CO3) reduction, direct water reduction, oxygen reduction, and anodic dissolution of iron. The required electrochemical parameters (e.g., exchange current densities and Tafel slopes) for different reactions were determined from experiments conducted in glass cells. The corrosion process was monitored using polarization resistance, potentiodynamic sweep, electrochemical impedance, and weight-loss measurements. The model was calibrated for two mild steels over a range of parameters: temperature (t) = 20°C to 80°C, pH = 3 to 6, partial pressure of CO2 (PCO2) = 0 bar to 1 bar (0 kPa to 100 kPa), and ω = 0 rpm to 5,000 rpm (vp = 0 m/s to 2.5 m/s). The model was applicable for uniform corrosion with no protective films present. Performance of...

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Journal ArticleDOI

Electrochemical Study of AISI C1018 Steel in Methanesulfonic Acid Containing an Acetylenic Alcohol–Based Corrosion Inhibitor Formulation:

TL;DR: In this work, the electrochemical potentiodynamic behavior of AISI C1018 lower-grade steel material was investigated in 20 wt.% methanesulfonic acid (MSA) solutions to design corrosion inhibitor formulations based on acetylenic alcohol, cinnamaldehyde, 1-dodecylpyridinium chloride, and methanol.

Corrosion Behavior of X70 Steel in the Supercritical CO2 mixed with SO2 and Saturated Water

TL;DR: In this article, the corrosion rates of X70 steel and iron exposed in supercritical CO2 mixed with SO2 and saturated water vapor were investigated by weightloss tests, and the results were compared to the case without SO2.
Journal ArticleDOI

Investigation of Cathodic Reaction Mechanisms of H2S Corrosion Using a Passive SS304 Rotating Cylinder Electrode

TL;DR: In this paper, an electrochemical model of H2S corrosion was developed in both pure H 2S and H 2 S/CO2 aqueous systems, and an additional electrochemical cathodic reaction was uncovered based upon the carbon steel corrosion experimental results.
Journal ArticleDOI

Uncovering Carbide on Carbon Steels by Use of Anodic Galvanostatic Polarization and Its Effect on CO2 Corrosion

TL;DR: In this article, a galvanostatic method was used to accelerate pre-corrosion of three low-alloyed carbon steels and the resulting surface morphology, cathodic reaction rates and corrosion rates were discussed.
References
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Book

CRC Handbook of Chemistry and Physics

TL;DR: CRC handbook of chemistry and physics, CRC Handbook of Chemistry and Physics, CRC handbook as discussed by the authors, CRC Handbook for Chemistry and Physiology, CRC Handbook for Physics,
Book

Fundamentals of electrochemistry

TL;DR: In this article, a rigorous outline of the basic concepts forming the subject matter of modern theoretical and applied electrochemistry, originally published in Russian in 1988 by Khimiya Press, Moscow.
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IUPAC Chemical Data Series

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