Abstract
The role of pit corrosion needs to be considered to guarantee reliability and safety during the injection of compressed emission gasses-mainly containing CO2-into deep geological layers (CCS-technology, Carbon Capture and Storage). Therefore, laboratory experiments were carried out under the distinct synthetic aquifer environment saturated with technical CO2 at a flow rate of 2 l/h found at the CCS-site at Ketzin, Germany. To determine the local corrosion behaviour, different pipe steels with 1% Cr 0.42% C (42CrMo4) and 13% Cr 0.46% C (X46Cr13) were compared. The samples were heat treated for up to 2 years and the reaction kinetics were determined. Pits were formed exclusively on the high chromium bearing steels. Pit heights and diameters were measured and a precipitation model was derived from the phases found within the complicated multilayer corrosion phases, such as siderite FeCO3 and goethite α-FeOOH. Manganese and chromium carbides were found to be possible initial causes for the ongoing pit corrosion. © 2010 WIT Press.
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Pfennig, A., & Kranzmann, A. (2010). The role of pit corrosion in engineering the carbon storage site at Ketzin, Germany. WIT Transactions on Ecology and the Environment, 136, 109–119. https://doi.org/10.2495/AIR100101
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