4.4 Article

Electrochemical Study and Modeling of H2S Corrosion of Mild Steel

期刊

CORROSION
卷 70, 期 4, 页码 351-365

出版社

NATL ASSOC CORROSION ENG
DOI: 10.5006/0937

关键词

carbon steel; corrosion rate; hydrogen sulfide; modeling; uniform corrosion

资金

  1. BG Group
  2. BP
  3. Champion Technologies
  4. Chevron
  5. Clariant Oil Services
  6. ConocoPhillips
  7. Encana
  8. EM S.P.A.
  9. EloconMobil
  10. WGIM
  11. NALCO Energy Services
  12. Occidental Oil Company
  13. Petrobras
  14. PETRONAS
  15. PIT
  16. Saudi Aramco
  17. INPEX Corporation
  18. Total
  19. TransCanada

向作者/读者索取更多资源

The internal corrosion of mild steel in the presence of hydrogen sulfide (H2S) represents a significant challenge in oil production and natural gas treatment facilities, but the underlying mechanisms involved in H2S corrosion are still not fully understood. This lack of knowledge makes the prediction, prevention, and/or control of aqueous H2S corrosion of mild steel much more difficult. In the present study, H2S corrosion mechanisms were experimentally investigated in short-term corrosion tests (lasting 1 h to 2 hi, conducted in a 1 wt% sodium chloride (NaCl) solution at different pH (pH 2 to pH 5), at different temperatures (30 degrees C to 80 degrees C), under various H2S/ N-2 gaseous concentration ratios (0 to 10%[v]) and flow rates, using a X65 mild steel rotating cylinder electrode. Corrosion rates were measured by linear polarization resistance apa Corrosion mechanisms were investigated by using potentiodynamic sweeps and by comparison with electrochemical modeling. LPR results showed that corrosion rates increased with increasing temperature, partial pressure of H,S, flow rate, and decreasing pH. Results of potentiodynamic sweeps show the presence of H2S could affect both cathodic reactions and the anodic reaction. An electrochemical model was developed and can be used to predict the effect of temperature, pH, pH(2)S, and flow on corrosion mechanisms of mild steel in aqueous solutions containing H2S in the absence of protective iron sulfide layers.

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