In a carbon dioxide (CO₂) corrosive environment, when the product of the local concentrations of iron (Fe²⁺) and carbonate (CO₃²⁻) ions exceed the solubility limit, the precipitation of iron carbonate (FeCO₃) on the internal walls of carbon steel pipelines can significantly reduce the corrosion rate. In the following work, static glass cell corrosion experiments were conducted to understand the precipitation behavior in the early stages of FeCO₃ development and the factors favorable to protective film formation. The corrosion and precipitation rates were followed using a combination of mass gain, mass loss, electrochemistry and surface analysis techniques. At the conditions studied, the protectiveness and the rate of film formation was obse...
In CO2 corrosion, when the local concentrations of Fe2+ and CO32- ions exceed the solubility limit, ...
This thesis presents the outcome of a systematic study carried out to establish an understanding of ...
A theoretical carbon dioxide (CO2) corrosion model was used to conduct numerical experiments, which ...
In CO2 corrosion, when the local concentrations of Fe2+ and CO32- ions exceed the solubility limit, ...
Glass cell experiments were conducted to understand kinetics of iron carbonate scale formation in pu...
Glass cell experiments were conducted to understand kinetics of iron carbonate scale formation in pu...
A model of iron carbonate (FeCO3) film growth is proposed, which is an extension of the recent mecha...
A model of iron carbonate (FeCO3) film growth is proposed, which is an extension of the recent mecha...
A model of iron carbonate (FeCO3) film growth is proposed, which is an extension of the recent mecha...
In the oil and gas industry, internal corrosion of carbon steel pipelines is commonly encountered du...
Corrosion on the inside walls of steel pipelines and process equipment is mostly caused by CO2 which...
The growth of iron carbonate (FeCO₃) on the internal walls of carbon steel pipelines used for oil an...
Corrosion of carbon steel oil pipelines in the sweet environments has been a well- known problem in ...
Master's thesis in Environmental technologyCorrosion on the inside walls of steel pipelines and proc...
The influence of temperature (30-120degreesC) on the corrosion behavior of low carbon pipeline steel...
In CO2 corrosion, when the local concentrations of Fe2+ and CO32- ions exceed the solubility limit, ...
This thesis presents the outcome of a systematic study carried out to establish an understanding of ...
A theoretical carbon dioxide (CO2) corrosion model was used to conduct numerical experiments, which ...
In CO2 corrosion, when the local concentrations of Fe2+ and CO32- ions exceed the solubility limit, ...
Glass cell experiments were conducted to understand kinetics of iron carbonate scale formation in pu...
Glass cell experiments were conducted to understand kinetics of iron carbonate scale formation in pu...
A model of iron carbonate (FeCO3) film growth is proposed, which is an extension of the recent mecha...
A model of iron carbonate (FeCO3) film growth is proposed, which is an extension of the recent mecha...
A model of iron carbonate (FeCO3) film growth is proposed, which is an extension of the recent mecha...
In the oil and gas industry, internal corrosion of carbon steel pipelines is commonly encountered du...
Corrosion on the inside walls of steel pipelines and process equipment is mostly caused by CO2 which...
The growth of iron carbonate (FeCO₃) on the internal walls of carbon steel pipelines used for oil an...
Corrosion of carbon steel oil pipelines in the sweet environments has been a well- known problem in ...
Master's thesis in Environmental technologyCorrosion on the inside walls of steel pipelines and proc...
The influence of temperature (30-120degreesC) on the corrosion behavior of low carbon pipeline steel...
In CO2 corrosion, when the local concentrations of Fe2+ and CO32- ions exceed the solubility limit, ...
This thesis presents the outcome of a systematic study carried out to establish an understanding of ...
A theoretical carbon dioxide (CO2) corrosion model was used to conduct numerical experiments, which ...