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Electrochemical Corrosion of Ultra-high Strength Carbon Steel in Alkaline Brines Containing Hydrogen Sulfide

机译:超高强度碳素钢在含硫化氢的碱性盐水中的电化学腐蚀

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Electrochemical corrosion of ultra-high strength carbon steel UD-165 was investigated using in-situ electrochemical techniques in H2S-containing alkaline brines (5 wt% NaCl; pH 7.9, 10.7, and 12.4) with four H2S partial pressures (p(H2S)) from 0 to 69 kPa at 85 degrees C. The effects of pH and p(H2S) were studied in terms of corrosion rate (CR), reaction mechanism, and corrosion products considering the Fe dissolution reactions with HCO3 (aq), OH (aq), and HS (aq). While CR generally decreased at higher pH and increased at higher p(H2S), both accelerating and inhibiting effects of H2S on CR were observed. High CR at pH 10.7 correlated with a high ratio of HS (aq) to the total concentration of reactive anions. The corrosion products changed from iron carbonate and sulfides to iron oxides as the pH increased. Sulfur was detected mostly in the inner layer of corrosion products at pH 7.9. (C) 2016 Elsevier Ltd. All rights reserved.
机译:使用原位电化学技术在具有四个H2S分压(p(H2S)的含H2S的碱性盐水(5 wt%NaCl; pH 7.9、10.7和12.4)中研究了超高强度碳钢UD-165的电化学腐蚀)在85摄氏度下从0到69 kPa。研究了pH和p(H2S)在腐蚀速率(CR),反应机理和腐蚀产物方面的影响,考虑了铁与HCO3(aq),OH( aq)和HS(aq)。虽然CR通常在较高的pH值下会降低,而在较高的p(H2S)下会增加,但观察到H2S对CR的促进和抑制作用。 pH为10.7时的高CR与高比例的HS(水溶液)与反应性阴离子的总浓度相关。随着pH值的升高,腐蚀产物从碳酸铁和硫化铁变为氧化铁。在pH 7.9的腐蚀产物内层中大部分检测到硫。 (C)2016 Elsevier Ltd.保留所有权利。

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