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Impact of Water Content on Corrosion Behavior of CO_2 Transportation Pipeline

机译:水分含量对CO_2运输管道腐蚀行为的影响

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CO_2 could be transported by pipelines in gaseous, liquid or supercritical phase according to the operating temperature and pressure. Safety concerns might arise from supercritical CO_2 transportation pipeline, especially crossing the densely populated areas. Short-distance gaseous CO_2 pipeline was designed and constructed for an energy company. Water content is critical to understand the corrosion mechanism of CO_2 pipeline. Corrosion behavior of API 5L X65 mild steel exposed to CO_2 stream with different relative humidities (RH), temperatures and pressures was investigated by weight-loss method to determine maximum allowable water content in CO_2 pipeline. The surface morphology of the coupons was examined by scanning electron microscopy (SEM). The results showed that general corrosion rate was stable with increased RH before a separate water phase was observed, and significantly increased when free water was formed for all the test conditions. Localized corrosion or serious general corrosion was observed when the relative humidity was beyond 60%. The upper limit of water content for CO_2 stream should be set at 60% RH for the safety concern of API 5L X65 pipeline on the basis of corrosion study.
机译:CO_2可以根据工作温度和压力通过气态,液体或超临界相的管道运输。安全问题可能来自超临界CO_2运输管道,尤其是穿过浓密人口稠密的区域。短距离气体CO_2管道是为能源公司设计和构建的。含水量对于了解CO_2管道的腐蚀机制至关重要。通过减肥方法研究了具有不同相对湿度(RH),温度和压力的CO_2流暴露于CO_2流的API 5L X65温和钢的腐蚀行为,以确定CO_2管道中的最大允许水含量。通过扫描电子显微镜(SEM)检查试样的表面形态。结果表明,在观察到单独的水相之前,一般腐蚀速率随着RH增加的RH稳定,并且在所有测试条件下形成游离水时显着增加。当相对湿度超过60%时,观察到局部腐蚀或严重的一般腐蚀。 CO_2流的水含量的上限应在腐蚀研究的基础上为API 5L X65管道的安全问题设定为60%RH。

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