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- W2051210515 abstract "• Corrosion data show high corrosion rates when carbon steel is exposed to SCCO 2 . • Corrosion rates were reduced when a protection strategy is applied. • A layer consisting mainly of FeCO 3 can reduce corrosion rates significantly. • Corrosion inhibitors showed high efficiencies in CO 2 tests at low pressure. • Stainless steels showed reduced corrosion rates in CO 2 -saturated conditions. The transport of carbon dioxide (CO 2 ) from its source to a storage site is a key component of the carbon capture and storage (CCS) process. CO 2 transportation by steel pipelines presents a durability risk in the form of internal corrosion damage from supercritical or liquid CO 2 transmission. This risk is due to the formation of carbonic acid as a result of any H 2 O presence, and in situ speciation of acids such as sulphurous (H 2 SO 3 ), sulfuric (H 2 SO 4 ), hydrochloric (HCl), and nitric acids (HNO 3 ) due to the presence of impurities. This review paper aims to present three key potential protection strategies to mitigate or reduce the threat of corrosion damage for reliable and potentially cost-effective transport of CO 2 . This includes review of (a) relevant corrosion inhibitors, (b) corrosion resistant alloys (CRAs) for CO 2 transport pipeline, and (c) the role and physical properties of a protective iron carbonate layer (FeCO 3 )." @default.
- W2051210515 created "2016-06-24" @default.
- W2051210515 creator A5014908842 @default.
- W2051210515 creator A5056099986 @default.
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- W2051210515 creator A5074823524 @default.
- W2051210515 date "2014-10-01" @default.
- W2051210515 modified "2023-10-05" @default.
- W2051210515 title "A review of the protection strategies against internal corrosion for the safe transport of supercritical CO 2 via steel pipelines for CCS purposes" @default.
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- W2051210515 doi "https://doi.org/10.1016/j.ijggc.2014.08.010" @default.
- W2051210515 hasPublicationYear "2014" @default.
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