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51313-02264-Corrosion Performance of CRAs in Water Containing Cl Ions with Supercritical CO2

Product Number: 51313-02264-SG
ISBN: 02264 2013 CP
Author: Shuji Hashizume
Publication Date: 2013
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Recently CO2 has been highly pressurized in such environments as CO2 injection for stimulation and CO2 storage to reduce CO2 amount at surface. When CO2 is highly pressurized a supercritical phase of CO2 is created under conditions both over 31.1 degree C and 72.9 atm. It is well known that water under pressurized CO2 gas leads to severe CO2 corrosion with carbon steel. Thus CRAs are effective to prevent CO2 corrosion. In the supercritical phase of CO2 corrosion behavior of carbon steel was reported. The corrosion rate of carbon steel was lower than the predicted model. From the view point of phase difference of CO2 the effect of CO2 in supercritical phase on CRAs is not clear. In this paper the effect of CO2 in supercritical phase up to 300 bar on 13%Cr steels are examined.

Recently CO2 has been highly pressurized in such environments as CO2 injection for stimulation and CO2 storage to reduce CO2 amount at surface. When CO2 is highly pressurized a supercritical phase of CO2 is created under conditions both over 31.1 degree C and 72.9 atm. It is well known that water under pressurized CO2 gas leads to severe CO2 corrosion with carbon steel. Thus CRAs are effective to prevent CO2 corrosion. In the supercritical phase of CO2 corrosion behavior of carbon steel was reported. The corrosion rate of carbon steel was lower than the predicted model. From the view point of phase difference of CO2 the effect of CO2 in supercritical phase on CRAs is not clear. In this paper the effect of CO2 in supercritical phase up to 300 bar on 13%Cr steels are examined.

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