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Comparison of corrosion behaviour of low-alloy pipeline steel exposed to H2S/CO2-saturated brine and vapour-saturated H2S/CO2 environments

机译:低合金管道钢暴露于H2S / CO2饱和盐水和蒸汽饱和H2S / CO2环境的腐蚀行为

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This work used immersion experiments to elucidate the corrosion behaviour of low-alloy pipeline steel in vapour-saturated H2S/CO2 environment and H2S/CO2-saturated brine environment, typical corrosion environments of carbon capture and storage (CCS) sites. The corrosion behaviour was studied in terms of corrosion kinetics, corrosion products, surface morphology, cross-sectional morphology and elemental distribution. The experimental results demonstrated that the corrosion rate of vapour-saturated H2S/CO2 environment was lower than the corrosion rate of H2S/CO2-saturated brine environment. The difference in the corrosion environments is the underlying reason for the formation of different corrosion products. Compared to the H2S/CO2-saturated brine environment, the vapour-saturated H2S/CO2 environment was beneficial for the formation of fine crystals on a nano-scale because of the difference in the kinetics of crystal formation in corrosion environments. The corrosion products of vapour-saturated H2S/CO2 environment were formed as a cluster, while in the H2S/CO2-saturated brine environment, the corrosion products were precipitated uniformly, which was ascribed to the difference in the corrosion electrolyte structure. Chromium and molybdenum accumulated in the inner layer of corrosion products in the two corrosion environments. The corrosion process of low-alloy pipeline steel exposed to the H2S/CO2 environment is discussed. (C) 2017 Published by Elsevier Ltd.
机译:该工作用法浸渍实验阐明了蒸汽饱和H2S / CO2环境和H2S / CO2饱和盐水环境中低合金管钢的腐蚀行为,碳捕获和储存(CCS)位点的典型腐蚀环境。在腐蚀动力学,腐蚀产物,表面形态,横截面形态和元素分布方面研究了腐蚀行为。实验结果表明,蒸汽饱和H 2 S / CO2环境的腐蚀速率低于H2S / CO2饱和盐水环境的腐蚀速率。腐蚀环境的差异是形成不同腐蚀产品的潜在原因。与H 2 S / CO 2饱和盐水环境相比,蒸汽饱和的H 2 S / CO 2环境有利于在纳米级上形成细晶体,因为腐蚀环境中晶体形成动力学的差异。蒸汽饱和H 2 S / CO 2环境的腐蚀产物形成为簇,而在H 2 S / CO2饱和盐水环境中,腐蚀产物均匀地沉淀,其归因于腐蚀电解质结构的差异。铬和钼在两种腐蚀环境中积累在腐蚀产物的内层。讨论了暴露于H2S / CO2环境的低合金管道钢的腐蚀过程。 (c)2017年由elestvier有限公司出版

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