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Electrochemical behavior of low carbon steel in slightly acidic brines

机译:低碳钢在弱酸性盐水中的电化学行为

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Low carbon steel exhibits active―passive transition in buffered slightly acidic (pH 4―6) brines at various temperatures. The pH, the temperature and the concentration of chloride ions have significant effects on the active-passive behavior and only mild effects on its anodic dissolution in the active region and on the free corrosion potential. An increase in the temperature or a decrease in the pH of the medium shifts the Flade potential by hundreds of millivolts in the noble direction and increases the passive current. The activation energy of the metal dissolution in the active region was estimated at 47.5 kJ mol~(―1). Electrochemical impedance measurements at potentials in the passive region reveal a significant increase in the polarization resistance and decrease in the double layer capacitance of the interface with increase of pH.
机译:低碳钢在各种温度的弱酸性(pH 4-6)缓冲盐水中表现出主动-被动过渡。 pH,温度和氯离子浓度对活性-被动行为有显着影响,而对其在活性区中的阳极溶解和自由腐蚀电位仅具有轻微的影响。介质温度的升高或pH值的降低都会使Flade电位在正常方向上移动数百毫伏,并增加无源电流。活性区域中金属溶解的活化能估计为47.5 kJ mol〜(-1)。在无源区中的电势下的电化学阻抗测量结果显示,随着pH值的增加,极化电阻显着增加,界面的双层电容减小。

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