Transfert de l'oxygène dans l'eau à température et pression élevées étude cinétique en réacteur agité par la méthode au sulfite
- 1 August 1984
- journal article
- research article
- Published by Wiley in The Canadian Journal of Chemical Engineering
- Vol. 62 (4) , 513-520
- https://doi.org/10.1002/cjce.5450620410
Abstract
This paper examines the rate of absorption of molecular oxygen in an aqueous solution of sodium sulphite as a function of temperature over the range of 20–240°C. First, we determined the effect of the various parameters (oxygen partial pressure, sulphite and catalyst concentration, agitation) on the enhancement factor,E.It was observed that an Arrhenius' type relationship could describe the dependence of the physical absorption rate on temperature. According to the degree of agitation, two values for the activation energy: 22.8 and 12.7 kJ · mol−1are obtained. Our results validate the various models formerly proposed only for the range 10–40°C, but show that they cannot be extrapolated above 50°C. The results also show that a simple test at ambient temperature can be used to predict the oxygen transfer capability of a reactor at temperatures up to 240°C.Keywords
This publication has 10 references indexed in Scilit:
- Absorption of oxygen by aqueous sodium sulphite solutionsThe Canadian Journal of Chemical Engineering, 1979
- Wet air oxidation of soluble components in waste waterThe Canadian Journal of Chemical Engineering, 1976
- Oxidation of propionic acid solutionsThe Canadian Journal of Chemical Engineering, 1973
- Effect of temperature on oxygen transfer in waterWater Research, 1970
- The influence of diffusivity on liquid phase mass transfer to the free interface in a stirred vesselAIChE Journal, 1966
- Solubilities of Inert Gases in Water. 0° C. to Near the Critical Point of Water.Journal of Chemical & Engineering Data, 1960
- Correlation of diffusion coefficients in dilute solutionsAIChE Journal, 1955
- The Solubility of Oxygen in WaterTransactions of the American Society of Mechanical Engineers, 1954
- Solubility of Hydrogen, Oxygen, Nitrogen, and Helium in Water at Elevated TemperaturesIndustrial & Engineering Chemistry, 1952
- Performance of Agitated Gas-Liquid ContactorsIndustrial & Engineering Chemistry, 1944