Dugstad, 1998 - Google Patents
Mechanism of protective film formation during CO2 corrosion of carbon steelDugstad, 1998
- Document ID
- 6296068321137182959
- Author
- Dugstad A
- Publication year
- Publication venue
- CORROSION 1998
External Links
Snippet
The corrosion rate of carbon steel in CO 2 containing environments depends very much on the formation of protective corrosion product films. The parameters affecting film formation have been studied in a large number of flow loop experiments performed in the temperature …
- 238000005260 corrosion 0 title abstract description 71
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Dugstad | Mechanism of protective film formation during CO2 corrosion of carbon steel | |
Dugstad | The importance of FeCO3 supersaturation on the CO2 corrosion of carbon steels | |
Dugstad et al. | Parametric study of CO2 corrosion of carbon steel | |
Van Hunnik et al. | The formation of protective FeCO3 corrosion product layers in CO2 corrosion | |
Johnson et al. | Ferrous carbonate precipitation kinetics and its impact CO2 corrosion | |
Palacios et al. | Characteristics of corrosion scales on steels in a CO2-saturated NaCl brine | |
Berntsen et al. | Effect of FeCO3 supersaturation and carbide exposure on the CO2 corrosion rate of carbon steel | |
De Waard et al. | Influence of liquid flow velocity on CO2 corrosion: a semi-empirical model | |
Sutcliffe et al. | Stress corrosion cracking of carbon steel in carbonate solutions | |
Olsen et al. | Corrosion under dewing conditions | |
Nešić et al. | A mechanistic model for carbon dioxide corrosion of mild steel in the presence of protective iron carbonate films—part 2: a numerical experiment | |
Schmitt et al. | Fracture mechanical properties of CO2 corrosion product scales and their relation to localized corrosion | |
Sun et al. | The effect of Cl-and acetic acid on localized CO2 corrosion in wet gas flow | |
Dunlop et al. | Fundamental considerations in sweet gas well corrosion | |
Manly | Fundamentals of liquid metal corrosion | |
Ning et al. | Construction and verification of pourbaix diagrams for hydrogen sulfide corrosion of mild steel | |
Ikeda et al. | Prevention of CO2 corrosion of line pipe and oil country tubular goods | |
Zhang et al. | Effects of temperature and partial pressure on H2S/CO2 corrosion of pipeline steel in sour conditions | |
Nešić et al. | A new updated model of CO2/H2S corrosion in multiphase flow | |
Munoz et al. | Mechanism of FeCO3 formation on API X70 pipeline steel in brine solutions containing CO2 | |
Pugh et al. | Top-of-line corrosion mechanism for sour wet gas pipelines | |
Ramachandran et al. | The interactions and properties of corrosion inhibitors with byproduct layers | |
Choi et al. | Corrosion inhibition of pipeline steels under supercritical CO2 environment | |
Rajappa et al. | Modeling the diffusion effects through the iron carbonate layer in the carbon dioxide corrosion of carbon steel | |
John et al. | SweetCor: An information system for the analysis of corrosion of steels by water and carbon dioxide |