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首页> 外文期刊>International journal of hydrogen energy >Electrochemical study of two microalloyed pipeline steels in H_2S environments
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Electrochemical study of two microalloyed pipeline steels in H_2S environments

机译:H_2S环境中两种微合金管线钢的电化学研究

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The electrochemical behavior of microalloyed steel under H_2S environment at room temperature and at 55 °C suggests that the superficial degradation in this steel is due to the combination of several mechanisms in which uniform corrosion plays a less relevant role, while localized corrosion and diffusion control (where diffusion of species such as H2S, HS~- is possible) are key mechanisms for the corrosion process of this steel. It also was found that the limiting current (i_1) increases proportionally with increase in temperature, leaving clear evidence for the existence of diffusion control. The estimation of corrosion rates by means of the Rp technique, taking into account the diffusion control shows that, at room temperature, steel 2 presents the lowest corrosion rate with respect to steel 1. This behavior is reversed at 55 ℃, steel 2 being more susceptible to corrosion.
机译:微合金钢在室温和55°C的H_2S环境下的电化学行为表明,这种钢的表面降解是由于多种机理的结合,其中均匀腐蚀的作用较小,而局部腐蚀和扩散控制(可能扩散诸如H2S,HS〜-等物质)是该钢腐蚀过程的关键机制。还发现极限电流(i_1)随着温度的升高成比例地增加,为扩散控制的存在留下了明确的证据。考虑到扩散控制,通过Rp技术估算腐蚀速率表明,在室温下,钢2的腐蚀速率相对于钢1最低。这种行为在55℃时是相反的,钢2的腐蚀速率更大。容易腐蚀。

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