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首页> 外文期刊>International Journal of Electrochemical Science >Electrochemical Analysis of the Corrosion Behavior of Drill Pipe Steel under Oil/Water Emulsion Condition
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Electrochemical Analysis of the Corrosion Behavior of Drill Pipe Steel under Oil/Water Emulsion Condition

机译:油/水乳化条件下钻杆钢腐蚀行为的电化学分析

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This work proposed a rotating disk electrode strategy to study the electrochemical corrosion performance of API-X100 pipeline steel immersed in a simulated oil/water emulsion under controlled electrochemical and hydrodynamic conditions. The mass-transfer of oxygen was found to be crucial to the cathodic process of steel in solution both before and after the addition of oil. Electrode rotation sped up the cathodic reduction by accelerating oxygen diffusion. In the solution, after the addition of oil, there was an increment in the limiting diffusive current density (LDCD), which resulted from the enhanced solubility of oxygen in the oil/water emulsion. The anodic current density decrease caused by the electrode rotating speed (ERS) increment resulted from the accelerated oxygen diffusion and reduction along with the enhancement in the oxidation of the steel. With the addition of oil, the anodic dissolution of steel decreased. This phenomenon was ascribed to the fact that a layer of an oily phase formed on the surface of the steel and the reaction activation energy increased. Upon the addition of oil, a variation of the corrosion reaction mechanism was observed, indicating the activation-controlled feature of the interfacial reaction instead of the mass-transfer controlled property. .
机译:这项工作提出了一种旋转盘电极策略,以研究在受控的电化学和流体动力学条件下,将API-X100管线钢浸入模拟油/水乳液中的电化学腐蚀性能。发现氧气的传质对于添加油之前和之后的钢在溶液中的阴极过​​程至关重要。电极旋转通过加速氧气扩散加快了阴极还原速度。在溶液中,添加油后,极限扩散电流密度(LDCD)有所增加,这是由于氧气在油/水乳液中的溶解度提高所致。由电极旋转速度(ERS)的增加引起的阳极电流密度的降低是由于氧气扩散和还原的加速以及钢的氧化作用的增强而引起的。随着油的添加,钢的阳极溶解降低。这种现象归因于在钢表面上形成油相层并且反应活化能增加的事实。加入油后,观察到腐蚀反应机理的变化,表明界面反应的活化控制特征而不是传质控制性质。 。

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