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The Effect of Elevated H2S on Corrosion Behaviour of API 5L X65 Carbon Steel in High Partial Pressure CO2 Environments

机译:H2S升高对高分压力CO2环境API 5L X65碳钢腐蚀行为的影响

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The corrosion behaviour of API 5L X65 carbon steel was investigated under high pressure carbon dioxide environments, containing elevated hydrogen sulfide, to simulate the condition of high carbon dioxide- containing natural gas subsea pipelines. It was systematically studied under high pressure carbon dioxide (120 bars) with a variation in other key parameters (hydrogen sulfide concentration and temperature). The corrosion rates were tested using High Pressure and High Temperature (HPHT) autoclave and measured using the techniques such as linear polarisation resistance (LPR), potentiodynamic sweep measurements, iron count, weight loss (WL) and electrochemical impedance spectroscopy (EIS). The surface morphology and the composition of the corrosion product layers were analysed using Infinite Focus Microscope (IFM), X-ray diffraction (XRD), Scanning Electron Microscopy (SEM) and Energy Dispersive X-ray Spectroscopy (EDS). The results showed that in the CO2- saturated water phase, the addition of 2000 ppm hydrogen sulfide (H2S) instantaneously decreased the corrosion rate of carbon steel API 5L X65 at both 25°C and 80°C. The surface morphology and the composition of the corrosion product layers reveal the formation of mackinawite. The inhibitive effect of hydrogen sulfide at elevated concentration was observed and contributed to the significant reduction in corrosion. The effect on corrosion was despite the fact that water chemistry equilibrium was unchanged with the presence of elevated hydrogen sulfide.
机译:在高压二氧化碳环境下研究了API 5L X65碳钢的腐蚀行为,含有升高的硫化氢,以模拟含有高二氧化碳天然气海底管道的条件。在高压二氧化碳(120巴)下系统地研究了其他关键参数(硫化氢浓度和温度)的变化。使用高压和高温(HPHT)高压釜测试腐蚀速率,并使用该技术测量,例如线性偏振电阻(LPR),电位动力扫描测量,铁计数,减肥(WL)和电化学阻抗光谱(EIS)。使用无限聚焦显微镜(IFM),X射线衍射(XRD),扫描电子显微镜(SEM)和能量分散X射线光谱(EDS)分析表面形态和腐蚀产物层的组成。结果表明,在CO 2饱和水相中,加入2000ppm硫化氢(H2S)瞬间降低了25℃和80℃的碳钢API 5L X65的腐蚀速率。表面形态和腐蚀产物层的组成揭示了MackInawite的形成。观察到硫化氢在升高浓度下的抑制作用,并导致腐蚀的显着降低。尽管水化学平衡存在于硫化氢升高的情况下,但水化学平衡的影响是事实。

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