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Review of Studies on Corrosion of Steel by CO2, Focussed on the Behaviour of API Steel in Geological CO2 Storage Environment

机译:二氧化碳钢腐蚀研究回顾,侧重于地质二氧化碳储存环境中API钢的行为

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The world energy demand has become higher with the growing population, which has translated into an increase in emission of greenhouse gases into the atmosphere. For this reason, CO_(2) capture and storage has been undertaken to purify the atmosphere. For storing this CO_(2,) it is necessary to have wells to inject it (deeper than 800 m); moreover, these wells need to have stability over time, and one of the stability aspects is the protection of steel against corrosion. Considering this aspect, the most common steels (focussed on American Petroleum Institute [API] steels) that can be used in an injector well were studied. The best performance was obtained using a high alloy content of Cr and Ni. Furthermore, the most important parameter analysed when corrosion is studied is the test time, which was modelled to stabilise the corrosion rates. The experiments were undertaken after a general review of different studies that investigated the corrosion of steel when in contact with CO_(2) in the vapour phase and under supercritical conditions.
机译:由于人口不断增长,世界能源需求变得更高,这已转化为在大气中排放温室气体的增加。因此,已经进行了CO_(2)捕获和储存以净化气氛。用于存储该CO_(2,)必须井中注射它(比800米更深);此外,这些井需要随时间具有稳定性,并且其中一个稳定性方面是保护钢免受腐蚀。考虑到这方面,研究了可以在喷射器中使用的最常见的钢(专注于美国石油研究所[API]钢)。使用Cr和Ni的高合金含量获得最佳性能。此外,研究了腐蚀时分析的最重要参数是测试时间,被建模以稳定腐蚀速率。在对不同研究的一般性审查之后进行实验,该研究在与蒸汽相中和超临界条件下与CO_(2)接触时研究了钢的腐蚀。

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