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首页> 外文期刊>Journal of natural gas science and engineering >Assessment and influence of temperature, NaCl and H2S on CO2 corrosion behavior of different microstructures of API 5L X52 carbon steel in aqueous environments
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Assessment and influence of temperature, NaCl and H2S on CO2 corrosion behavior of different microstructures of API 5L X52 carbon steel in aqueous environments

机译:温度,NaCl和H2S对水环境中API 5L X52碳钢不同微观结构CO2腐蚀行为的评价及影响

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摘要

In this study the effect of four types of microstructures, including annealed, normalized, normalized-tempered and quench-tempered on CO2 corrosion behavior of API 5L X52 steel were investigated. The CO2 corrosion behavior of these microstructures in different temperatures, NaCl salt concentration and H2S gas concentration were studied by employing electrochemical impedance spectroscopy and polarization techniques. The chemical composition of corrosion product and surface morphology were analyzed by the use of scanning electron microscopy equipped with energy dispersive spectroscopy. It was concluded that the CO2 corrosion behavior of the investigated material is dependent on its microstructure. It was observed that at low temperatures of 40 and 60 degrees C where the kinetics of formation of corrosion product is limited, the effect of micro galvanic cell between pre-eutectoid ferrite and cementite in pearlite phase is dominant thus normalized-tempered and quench-tempered microstructures which have more pearlite phase shows enhanced corrosion resistance. The influence of NaCl salt concentration on corrosion behavior of different microstructures was not significant. Furthermore, the presence of 100 ppm H2S concentration resulted in formation of FeS as corrosion product which inhibited the corrosion rate. The normalized-tempered and quench-tempered microstructures showed superior corrosion resistance in this state. However, at 200 ppm H2S concentration an increase of corrosion rate was observed due to occurrence of defects in corrosion product.
机译:在该研究中,研究了四种微观结构的效果,包括退火,标准化,归一化的回火和淬火对API 5L X52钢的CO 2腐蚀行为的淬火行为。通过采用电化学阻抗光谱和偏振技术,研究了这些微观结构在不同温度下,NaCl盐浓度和H2S气体浓度的CO 2腐蚀行为。通过使用配备有能量分散光谱的扫描电子显微镜分析腐蚀产物和表面形态的化学成分。得出结论是,研究的材料的CO2腐蚀行为取决于其微观结构。观察到在40和60℃的低温下,其中腐蚀产物的形成动力学是有限的,在珠光体相之间的预切晶铁素体和渗碳物之间的微电池在珠光体相之间的效果是显着的,如归一化的回火和淬火淬火具有更多珠光体相的微观结构显示出增强的耐腐蚀性。 NaCl盐浓度对不同微结构的腐蚀行为的影响并不重要。此外,100ppm H 2 S浓度的存在导致FES作为腐蚀产物的形成,抑制腐蚀速率。归一化的回火和淬火淬火的微观结构在这种状态下显示出优异的耐腐蚀性。然而,在200ppm H 2 S浓度下,由于腐蚀产品中的缺陷发生,观察到腐蚀速率的增加。

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