Effect of hydrocarbon volume ratio in sweet top-of-the-line corrosion under water-hydrocarbon co-condensation

D. G. Ramlan, Nor Aszreeyn Norizan, Nur Alin Zainab Zulfaisal, N. Othman, N. Yaakob
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Abstract

Wet gas pipelines transport unprocessed natural gas that contains water and carbon dioxide (CO2), which combination can lead to severe wall loss caused by CO2 or sweet corrosion in carbon steel. Under specific conditions, CO2 corrosion occurs at the top section of the pipeline, which is known as top-of-the-line corrosion (TLC). TLC tests were conducted in the water-hydrocarbon co-condensation environment using 10 vol% n-heptane and 25 vol% n-heptane to simulate the internal condition of a wet gas pipeline to study the effect of hydrocarbon volume ratio towards TLC. The presence of n-heptane showed minimal effect on the gas temperature profile; however, n-heptane suppressed the water condensation, resulting in a tremendous decrease in the water condensation rate (WCR). The TLC rates were found to be lower in the presence of n-heptane, which can be attributed to the reduced WCR and water-wetted areas. The presence of n-heptane had no significant effect on the pitting rates but showed an increasing pit ratio as the n-heptane volume increased. TLC tests were conducted at three durations: one day, two days and three days showing that n-heptane has no significant effect on corrosion kinetics.
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碳氢化合物体积比对水-碳氢化合物共缩合条件下甜水顶腐蚀的影响
湿气管道输送的是含有水和二氧化碳 (CO2) 的未加工天然气,这两种物质的结合会导致碳钢中的二氧化碳或甜腐蚀造成严重的管壁损失。在特定条件下,管道顶部会发生二氧化碳腐蚀,即所谓的管道顶部腐蚀(TLC)。为了研究碳氢化合物体积比对 TLC 的影响,我们在水-碳氢化合物共凝环境中使用 10 Vol% 的正庚烷和 25 Vol% 的正庚烷进行了 TLC 试验,以模拟湿气管道的内部条件。正庚烷的存在对气体温度曲线的影响微乎其微;然而,正庚烷抑制了水的凝结,导致水凝结率(WCR)大幅下降。在有正庚烷存在的情况下,TLC 的速率较低,这可以归因于 WCR 和水润湿面积的减少。正庚烷的存在对点蚀率没有明显影响,但随着正庚烷体积的增加,点蚀率也在增加。在一天、两天和三天三个时间段内进行的 TLC 测试表明,正庚烷对腐蚀动力学没有明显影响。
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