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Investigations of the Electrochemical Response of Artificially Formed Corrosion Products on API 5L X80 Pipeline Steel in Alkaline and Acidic Media

机译:碱性和酸性介质中API 5L X80管线钢人工腐蚀产物的电化学响应研究

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Background: Pipeline steels such as the API 5L X80 grade can be subjected to corrosion in contact with either acidic or alkaline sour brines. The surfaces oxides formed in each case can have a protective or non-protective character against corrosion. This behavior is not understood and gives rise to conflicting reports in the literature. The aim of the present work was to investigate the electrochemical response of anodic films formed by cyclic voltammetry on the surface of the API 5L X80 pipeline steel. Methods: The anodic films were formed by cyclic voltammetry under different pH conditions and switching potentials. The corrosion behavior was assessed using potentiodynamic polarization (PDP), electrochemical impedance spectroscopy (EIS) and Mott-Schottky analysis. Results: Mott-Schottky analysis revealed that the doping densities were higher for the films formed in the acidic solution whereas those formed in the alkaline solution were less defective. SEM micrographs suggest the formation of a defective and porous surface as the switching potential becomes more positive. Conclusion: The poorest protective properties are associated with films formed under high switching potentials and low pH.
机译:背景:API 5L X80 牌号等管道钢在与酸性或碱性酸性盐水接触时会受到腐蚀。在每种情况下形成的表面氧化物可以具有防止腐蚀的保护性或非保护性。这种行为不被理解,并在文献中引起相互矛盾的报道。本研究旨在研究循环伏安法形成的阳极膜在API 5L X80管线钢表面的电化学响应。方法:采用循环伏安法在不同pH条件和开关电位下形成阳极膜。使用电位动力学极化(PDP)、电化学阻抗谱(EIS)和Mott-Schottky分析评估腐蚀行为。结果:Mott-Schottky分析表明,在酸性溶液中形成的薄膜的掺杂密度较高,而在碱性溶液中形成的薄膜的掺杂密度较小。SEM显微照片表明,随着开关电位变得更加正,会形成有缺陷的多孔表面。结论:在高开关电位和低pH值下形成的薄膜具有最差的保护性能。

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