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Corrosion Behavior of Deep Water Oil Production Tubing Material under Supercritical CO2 Environment: Part II. Effect of Crude Oil and Flow

机译:超临界CO2环境下深水油生产管材料的腐蚀行为:第二部分。原油和流动的影响

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Deep water oil production tubing materials are exposed to high CO2 pressure and temperature conditions that can affect the corrosion performance of such materials. The present study aimed to evaluate the corrosion behavior of carbon steel exposed to supercritical CO2/oil/brine mixtures at different water cuts (0, 30, 50, 70, and 100%), CO2 partial pressures (8 and 12 MPa) and temperatures (65 and 90°C) in a flowing 25 wt.% NaCl solution. Corrosion behavior of carbon steel was evaluated by using electrical resistance (ER) measurements, weight loss measurements and surface analytical techniques (SEM and EDS). The corrosion rates of carbon steel increased with increasing water cut. There was no indication of corrosion attack with 0% water cut. At lower water cuts (30 and 50%), the steel surface was covered by iron carbonate (FeCO3), while iron carbide (Fe3C) was present on the steel surface at higher water cuts (70 and 100%) with very high corrosion rates. In addition, the presence of flow prevented the formation of protective FeCO3 at high water cut conditions.
机译:深水油生产管材材料暴露于高二氧化碳压力和温度条件,这会影响这些材料的腐蚀性。本研究旨在评估暴露于超临界CO2 /油/盐水混合物的碳钢(0,30,50,70和100%),二氧化碳部分压力(8和12MPa)和温度的碳钢的腐蚀行为(65和90°C)在流动的25重量%中。%NaCl溶液。通过使用电阻(ER)测量,减肥测量和表面分析技术(SEM和ED)来评估碳钢的腐蚀行为。随着水切割的增加,碳钢的腐蚀速率增加。没有腐蚀攻击的迹象表明0%的污水。在较低的水切口(30和50%)下,钢表面被铁碳酸铁(FeCO3)覆盖,而碳化铁(Fe3C)存在于较高的水切口(70和100%)的钢表面上,具有非常高的腐蚀速率。此外,流动的存在阻止在高水切割条件下形成保护性FECO3。

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