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    H2S含量对油气环境中3Cr钢腐蚀行为的影响

    Effect of H2S Content on the Corrosion Behavior of 3Cr Steel in Oil and Gas Environments

    • 摘要: 为了研究3Cr钢在含不同量H2S溶液中的腐蚀行为及腐蚀产物的演变过程,在含不同量H2S的模拟油田采出水中对3Cr钢进行了不同时间(6,12,24,72 h)浸泡试验,并测试了腐蚀速率。采用SEM、EDS和XPS对3Cr钢的腐蚀产物表面形貌、元素组成及腐蚀产物成分进行分析。结果表明:随着H2S含量的增加,3Cr钢的腐蚀速率呈现先增加后减小的趋势;腐蚀速率的增加源于溶解的H2S解离产生H+,增加了溶液的腐蚀性。而当H2S质量浓度超过6.8 mg/L时,表面腐蚀产物增多,抑制了3Cr钢的进一步腐蚀。另一方面,随着腐蚀温度由60 ℃升高至120 ℃,3Cr钢的腐蚀速率增加,腐蚀产物由FeS转变为FeCO3;其主要原因是增加温度使得FeCO3的溶解度减小。此外温度的升高显著增加了Fe2+的含量,促进了FeCO3晶体析出。

       

      Abstract: In order to study the corrosion behavior and evolution process of corrosion products of 3Cr steel in solutions containing different amounts of H2S, immersion tests were conducted on 3Cr steel in simulated oilfield produced water containing different amounts of H2S for different times (6, 12, 24, 72 h), and the corrosion rates were tested. SEM, EDS, and XPS were used to analyze the surface morphology, elemental composition, and corrosion product composition of 3Cr steel. The results indicate that with the increase of H2S content, the corrosion rate of 3Cr steel showed a trend of first increasing and then decreasing. Among them, the increase in corrosion rate was due to the dissociation of dissolved H2S to produce H+, which increased the corrosiveness of the solution. When the mass concentration of H2S exceeded 6.8 mg/L, there was an increase in surface corrosion products, which inhibited further corrosion of 3Cr steel. On the other hand, as the corrosion temperature increased from 60 ℃ to 120 ℃, the corrosion rate of 3Cr steel increased, and the corrosion products transformed from FeS to FeCO3. The main reason was that increasing the temperature reduced the solubility of FeCO3. In addition, the increase of temperature significantly increased the content of Fe2+ and promoted the precipitation of FeCO3 crystals.

       

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