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Corrosion behavior of N80 steel in CO2-saturated formation water

机译:CO2饱和形成水中N80钢的腐蚀行为

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Purpose This paper aims to explore the influence of CO2 partial pressure, flow rate and water cut on N80 steel corrosion behaviors in the displacement process of oil in glutenite reservoir by CO2 injection. Design/methodology/approach A self-made 3 L high-temperature and high-pressure autoclave was used to conduct corrosion simulation experiments of N80 steel in different CO2 partial pressures, flow rates and water cut (the independently developed oil and water mixing approach can ensure the uniform mixing of oil and water in experiments). Techniques like weight loss and surface analysis were used to analyze the corrosion behaviors of N80 steel under different conditions. Findings Results showed that the average corrosion rate of N80 steel accelerated at varying degrees with the increase of CO2 partial pressure, flow rate and water cut. Excluding that the samples showed uniform corrosion under the two conditions of 0.5MPa CO2 partial pressure and static corrosion, they displayed mesa attack corrosion under other conditions. Besides, with the increase of CO2 partial pressure, the pH value of solution dropped and the matrix corrosion speed rose, hence leading to the increased Fe2+ and CO32- concentration. Meanwhile, a lowered pH value improved the FeCO3 critical supersaturation, thereby leading to an increased nucleation rate/growth rate and ultimately causing the decrease of the dimension of FeCO3 crystallites formed on the surface of the samples. Originality/value The results can be helpful in targeted anti-corrosion measures for CO2/oil/water corrosive environment.
机译:目的本文旨在通过CO2注射探讨CO2部分压力,流速和水切割在谷蛋白储层中油排水过程中N80钢腐蚀行为的影响。设计/方法/方法自动制造的3L高温和高压高压灭菌器用于对不同二氧化碳部分压力,流速和水切割(独立开发的油和水混合方法)进行N80钢的腐蚀仿真实验。确保油和水在实验中的均匀混合)。类似于减肥和表面分析的技术用于分析不同条件下N80钢的腐蚀行为。结果表明,随着二氧化碳分压,流速和水的增加,N80钢的平均腐蚀速率在不同程度上加速。除了样品在0.5MPa二氧化碳部分压力和静态腐蚀的两个条件下显示出均匀的腐蚀,它们在其他条件下显示了MESA攻击腐蚀。此外,随着CO2分压的增加,溶液的pH值掉落,基质腐蚀速度升高,因此导致Fe2 +和CO32浓度增加。同时,降低的pH值改善了FECO3临界过饱和,从而导致成核速率/生长速率增加,并且最终导致在样品表面上形成的FECO3微晶的尺寸降低。原创性/价值结果可以有所帮助的CO2 /油/水腐蚀环境的有针对性的防腐蚀措施。

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