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Analysis of corrosion perforation of a gas gathering carbon steel pipeline in a western oilfield in China

机译:中国西部油田气体收集碳钢管道腐蚀穿孔分析

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In the west of China, corrosion perforation and scaling of pipelines occur frequently in the ground gathering system in oil and gas field, and cause serious safety and environmental problems. In the present work, the corrosion perforation of a carbon steel pipeline with a grade of 20 in a western oil field in China was investigated. Optical metallographic microscopy, scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS), and X-ray diffraction were used to determine the most probable causes of the corrosion perforation. The results showed that the internal corrosion of the studied carbon steel pipe was ascribed to the corrosive CO_2 gas and the high content of formation water in the internal transporting medium The formation of loose and porous iron carbonate layer and the scaling layer with poor adhesion could not protect the carbon steel effectively, so that the high concentration of chloride ions in the formation water caused the initiation of localized corrosion possibly by changing the solubility of iron carbonate, and then the localized corrosion pit propagated and eventually caused the perforation.
机译:在中国西部,石油和天然气场地地区聚集系统中经常发生腐蚀穿孔和缩放,并造成严重的安全和环境问题。在目前的工作中,调查了中国西油田等级为20级碳钢管道的腐蚀穿孔。光学金相显微镜,扫描电子显微镜(SEM),能量分散光谱(EDS)和X射线衍射用于确定腐蚀穿孔的最可能原因。结果表明,研究的碳钢管的内部腐蚀归因于腐蚀性CO_2气体和内部输送介质中的形成水的高含量,形成松散且多孔铁的碳酸盐层和粘连性差的缩放层有效保护碳钢,使得形成水中的高浓度氯离子引起了通过改变碳酸铁的溶解度的局部腐蚀引发,然后局部腐蚀坑繁殖并最终引起穿孔。

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