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The corrosion of carbon steel in the presence of Monoethylene glycol (MEG) - assessing the influence of an iron carbonate scale

机译:单乙二醇(MEG)存在下碳钢的腐蚀-评估碳酸铁垢的影响

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Carbon steel pipelines are employed in the transportation of wet natural gas from source to process plant. Corrosion and formation of hydrates is an important threat to the integrity of the pipeline if not properly controlled. In order to protect pipelines from hydrate formation, Monoethylene glycol (MEG) is often used. The continuous use of pH stabilizers in natural gas pipelines can lead to the formation of desirable and undesirable scale formation. If the use of pH stabilizers gives negative effects due to the formation of unwanted scale, the increase in the pH of the system is no longer effective and corrosion rates may increase. Alternatively measures may be introduced to maintain the integrity of pipelines such as the use of corrosion inhibitor. This paper investigates conditions where there is a significant formation of corrosion scale in the form of iron carbonate in wet gas systems. The continuous use of high pH at certain points of the pipeline is reconsidered with a focus on the formation of scale. The effect that lowering the pH of the solution has on the corrosion rate and existing protective corrosion product is evaluated. Synergistic and antagonistic effects of MEG with iron carbonate scale are determined with particular considerations of the use of alternative corrosion protective methods at reduced pH.
机译:碳钢管道用于将湿天然气从源头输送到加工厂。如果控制不当,水合物的腐蚀和形成是对管道完整性的重要威胁。为了防止管道形成水合物,经常使用单甘醇(MEG)。在天然气管道中连续使用pH稳定剂会导致形成合意的和不合需要的水垢。如果由于形成不需要的水垢而使用pH稳定剂产生负面影响,则系统pH的增加将不再有效,腐蚀速率可能会增加。可替代地,可以引入措施来维持管道的完整性,例如使用腐蚀抑制剂。本文研究了在湿气系统中以碳酸铁形式显着形成腐蚀垢的条件。重新考虑在管道的某些位置连续使用高pH值,重点是结垢的形成。评估降低溶液的pH对腐蚀速率和现有保护性腐蚀产物的影响。确定MEG与碳酸铁垢的协同作用和拮抗作用,要特别考虑在降低的pH值下使用替代腐蚀防护方法。

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