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EFFECT OF WATER ON CORROSION BEHAVIOR OF STAINLESS STEEL UNDER HIGH-TEMPERATURE AND HIGH-PRESSURE METHANOL SOLUTION CONTAINING CHLORIDE IONS

机译:水对含氯离子高压甲醇溶液下不锈钢腐蚀行为的影响

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摘要

The effect of water in a methanol solution containing 0.42 wt% LiCI on the corrosion behavior of type 316L stainless steel was evaluated by anodic polarization and electrochemical impedance spectroscopy (EIS) at 423K and 473K. The addition of water to the methanol solution increased the anodic dissolution potential (E_a) at both temperatures. At 423K, an increase in the corrosion potential (E_(corr)) was observed and the passive region was reduced by the addition of even small amounts of water. The specimen surface structure after anodic polarization measurements changed from a localized tarnish to pitting with an increase in the amount of added water. A random plot of electrochemical impedance spectroscopy (EIS) results showed typical pitting corrosion at an initial stage caused by an autocatalytic process. The water impurity increased the risk of chloride attack at 423K. Corrosion was activated as the added water volume increased. At 473K, no corrosion occurred, regardless of the water concentration.
机译:通过423k和473k的阳极偏振和电化学阻抗光谱(EIS)评估含有0.42wt%Lici的甲醇溶液中含有0.42wt%Licits的甲醇溶液的影响。向甲醇溶液中加入水在两个温度下增加阳极溶解电位(E_A)。在423k时,观察到腐蚀电位(E_(ecr))的增加,并且通过添加甚至少量水来减少被动区域。阳极偏振测量后的样品表面结构从局部玷污到点蚀,随着添加的水量的增加。电化学阻抗光谱(EIS)的随机曲线图显示了由自催化过程引起的初始阶段的典型点蚀腐蚀。水杂质增加了423K的氯化物侵蚀的风险。随着添加的水量增加,腐蚀被激活。在473K时,不存在腐蚀,无论水浓度如何。

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