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A Mechanistic Model of Uniform Hydrogen Sulfide/Carbon Dioxide Corrosion of Mild Steel

2009/05/01 by Wei Sun, W. Sun, Srdjan Nešić +1
Engineering · Materials Science · #Corrosion Behavior and Inhibition #Hydrogen embrittlement and corrosion behaviors in metals #Structural Integrity and Reliability Analysis

paper · doi:10.5006/1.3319134

crossref issued 2009/05/01 · crossref published 2009/05/01 · crossref published-print 2009/05/01 · openalex publication_date 2009/05/01 · crossref created 2010/02/22 · crossref deposited 2025/03/18 · openalex created_date 2025/10/10 · crossref indexed 2026/07/29 · openalex updated_date 2026/07/29

Abstract

A mechanistic model of uniform hydrogen sulfide (H2S) and hydrogen sulfide/carbon dioxide (H2S/CO2) corrosion of mild steel is presented that is able to predict the rate of corrosion with time. In the model, the corrosion rate of mild steel is primarily affected by H2S concentration, temperature, velocity, and the protectiveness of the mackinawite surface layer. The amount of mackinawite retained on the steel surface changes with time and depends on the layer formation rate as well as the layer damage rate. The layer formation may occur by corrosion and/or precipitation, while the layer damage can be by mechanical or chemical means. The model predictions were compared with a very broad set of experimental results and good agreement was found. The current version of the model does not yet include iron sulfide precipitation effects, nor hydrodynamic effects on film damage, which will be addressed in future work.

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