甲酸
腐蚀
氯化物
点蚀
醋酸
化学
扫描电子显微镜
阴极保护
冶金
无机化学
金属
材料科学
有机酸
核化学
化学工程
作者
Davood Nakhaie,Edouard Asselin
出处
期刊:Corrosion
[NACE International]
日期:2025-12-04
卷期号:82 (2): 160-169
被引量:1
摘要
The influence of acetic acid (HAc) and formic acid (HFr) on the pitting corrosion behavior of X65 pipeline steel in CO2-saturated 1 wt% NaCl solution was investigated using potentiodynamic polarization, long-term immersion, and pit morphology analysis. To mechanistically evaluate the role of organic acids on pit chemistry, a pure-iron lead-in pencil electrode technique was used, allowing controlled, one-dimensional pit growth and quantification of key chemical parameters inside the pit environment. Both HAc and HFr shifted the corrosion potential to more noble values and enhanced cathodic kinetics by buffering local pH, thereby accelerating overall corrosion rates. Immersion testing and scanning electron microscopy revealed that the presence of organic acids resulted in fewer but deeper and more aggressive pits than those formed in acid-free chloride solutions. Mechanistic analysis revealed that HAc and HFr exert a dual effect, increasing the pit propagation rate while also altering the local chemistry to delay the termination of pit growth by raising the required concentration of metal cations. These findings indicate that although acetic and formic acids do not increase the number of corrosion pits, they substantially increase pit severity, representing a critical risk factor for pipeline integrity in CO2-rich, chloride-containing environments common to oil and gas operations.
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