Internal Corrosion Considerations for Hydrogen Embrittlement Inhibitors

S. P. Kotu, Christopher Kagarise, C. Taylor, S. Finneran
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Abstract

Converting natural gas pipelines to transport pure hydrogen or blends with natural is currently being implemented as part of the energy transition strategy to achieve net zero emissions. Addition of hydrogen to existing natural gas pipelines increases the risk of hydrogen embrittlement and poses potential integrity issues such as cracking to the pipelines. Prior work has demonstrated that the use of inhibitors such as oxygen, carbon monoxide, and others can inhibit a material’s adsorption of atomic hydrogen and have been proposed to reduce the risk of hydrogen embrittlement. While these inhibitors may potentially reduce the risk of hydrogen embrittlement, there may be unintended consequences if the impact of these inhibitors on internal corrosion is not carefully evaluated. For example, the use of oxygen in the inhibitors can increase the potential for oxygen corrosion. This paper covers the methodology to evaluate the impact of internal corrosion on pipelines for any inhibitors used to prevent hydrogen embrittlement before they are applied. The recommendations for internal corrosion control when using oxygen-based inhibitors are discussed. Additionally, a comprehensive review of the proposed inhibitors for hydrogen embrittlement along with a discussion on their mode of action to prevent or mitigate hydrogen embrittlement is presented.
氢脆缓蚀剂的内腐蚀考虑
将天然气管道转换为运输纯氢或与自然的混合物,目前正在作为实现净零排放的能源转型战略的一部分实施。向现有天然气管道中添加氢气会增加氢气脆化的风险,并带来潜在的完整性问题,例如管道开裂。先前的研究表明,使用氧、一氧化碳等抑制剂可以抑制材料对氢原子的吸附,并提出降低氢脆的风险。虽然这些抑制剂可能会降低氢脆的风险,但如果不仔细评估这些抑制剂对内部腐蚀的影响,可能会产生意想不到的后果。例如,在抑制剂中使用氧气会增加氧气腐蚀的可能性。本文涵盖了在应用之前评估用于防止氢脆的任何抑制剂对管道内部腐蚀影响的方法。讨论了氧基缓蚀剂内部腐蚀控制的建议。此外,对提出的氢脆抑制剂进行了全面的回顾,并讨论了它们防止或减轻氢脆的作用方式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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