The Oxidation and Carburisation of a 20/25/Nb Steel in Carbon Dioxide, in Carbon Monoxide and in Carbon Dioxide-Carbon Monoxide Mixtures
W. B. Jepson, J.E. Antill, J.B. Warburton
Abstract
W. B. Jepson, J.E. Antill, J.B. Warburton
Abstract
AbstractThe oxidation and carburisation of a 20% Cr/25% Ni/Nb austenitic steel has been investigated between 600° and 850° in carbon dioxide, carbon monoxide and their mixtures at pressures within the range 0·04–760 cm.Under all conditions the oxide formed markedly inhibits the attack of the steel. In carbon dioxide, the major reaction is M + CO2 = MO + CO with the reaction 2M + CO2 = 2MO + C contributing less than 7% to the total weight gain. All the carbon deposition appears to take place within the first few hours of the oxidation. Detailed studies show that the deposited carbon diffuses into the steel.In carbon monoxide, the reaction is essentially M + CO = MO + C, the carbon passing through the oxide film into the steel. Carbon is also deposited in varying amounts on the surface of the oxide by the reaction 2CO = C + CO2. This carbon is present as a filamentary growth and diffuses only slowly into the steel.In carbon dioxide-carbon monoxide mixtures containing up to 75 vol.-% carbon monoxide, the ste...
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AbstractThe oxidation and carburisation of a 20% Cr/25% Ni/Nb austenitic steel has been investigated between 600° and 850° in carbon dioxide, carbon monoxide and their mixtures at pressures within the range 0·04–760 cm.Under all conditions the oxide formed markedly inhibits the attack of the steel. In carbon dioxide, the major reaction is M + CO2 = MO + CO with the reaction 2M + CO2 = 2MO + C contributing less than 7% to the total weight gain. All the carbon deposition appears to take place within the first few hours of the oxidation. Detailed studies show that the deposited carbon diffuses into the steel.In carbon monoxide, the reaction is essentially M + CO = MO + C, the carbon passing through the oxide film into the steel. Carbon is also deposited in varying amounts on the surface of the oxide by the reaction 2CO = C + CO2. This carbon is present as a filamentary growth and diffuses only slowly into the steel.In carbon dioxide-carbon monoxide mixtures containing up to 75 vol.-% carbon monoxide, the ste...
Key concepts: Carbon monoxide, Carbon dioxide, Electrochemical reduction of carbon dioxide, Methanizer, Compounds of carbon, Corrosion, Materials science, Inorganic chemistry