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Corrosion experience of 13Cr steel tubing and laboratory evaluation of Super 13Cr steel in sweet environments containing acetic acid and trace amounts of H2S

机译:含有醋酸和痕量H2S的甜食中13%Cr钢管和超级13Cr钢实验室评价的腐蚀体验

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13%Cr steel tubing corroded at shallow depths in deep,hot Minami-Nagaoka Gas- condensate wells onshore Japan. The produced gas contains 6% CO2 and 2~3ppm H2S,and the produced water contains 400 ppm acetate. The localized corrosion apparently initiated from mechanical damages produced by wire line operations. The corrosion damage was more severe in wells with longer shut in periods. These observations are contradictory to the traditional understanding that the corrosion performance of 13%Cr steel deteriorates at high temperatures in wet CO2 environments. And abovementioned observations suggest that the corrosion initiated during well's shut in period at shallow depths due to pH lowering by higher CO2 solubility at low temperatures and the existence of acetic acid. Based on this understanding,corrosion performance of Super 13Cr steel containing Ni and Mo was evaluated as a potential countermeasure in comparison with 13% Cr and 22Cr steels at a low temperature in addition to at high temperatures using flow loop and rotating cage. The effect of Cl- concentration and the influence of trace amounts of H2S on the corrosion performance of Super 13Cr steel was elucidated.
机译:13%Cr钢管在深度浅深度深处腐蚀,热门米纳甘岛气凝水井陆上日本。所生产的气体含有6%CO 2和2〜3ppm H 2 S,产水含有400ppm乙酸盐。局部腐蚀显然是由线线操作产生的机械损伤引发的。腐蚀损坏在井中更严重,随着期间的时间更长。这些观察结果与传统理解相矛盾,即13%Cr钢的腐蚀性在湿共二氧化碳环境中的高温下劣化。并且上述观察表明,由于在低温下通过更高的CO 2溶解度和乙酸的存在,由于pH降低,在浅深度期间在浅层深度期间发起的腐蚀。基于这种理解,含有Ni和Mo的超级13CR钢的腐蚀性是在使用流量环和旋转笼的高温下除了低温下的13%Cr和22Cr钢的潜在对策。 Cl-浓度和痕量H2S对超级13CR钢的腐蚀性能的影响。

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