Gas/liquid interfacial area per unit volume and volumetric mass transfer coefficient in stirred slurry reactors
โ Scribed by Dr.-Ing. Michael Schmitz; Dr.-Ing. Artur Steiff; Prof. Dr.-Ing. Paul-Michael Weinspach
- Publisher
- John Wiley and Sons
- Year
- 1987
- Tongue
- English
- Weight
- 899 KB
- Volume
- 10
- Category
- Article
- ISSN
- 0930-7516
No coin nor oath required. For personal study only.
โฆ Synopsis
In three-phase systems, where the liquid constitutes the continuous phase, solid is the catalyst and gas represents the dispersed phase, there are decisive criteria which have to be observed in reactor design. These are e.g. the interfacial area per unit volume between gas and liquid, the volumetric mass transfer coefficient and the mass transfer coefficient. The basic aim of the present work was therefore the investigation of these parameters in relation to the main influencing parameters. Process parameters stirrer speed and superficial gas velocity were varied as well as the physical properties such as liquid viscosity, solids concentration, particle diameter and a geometrical parameter, i.e. reactor diameter. The sulphite method was employed for the determination of these values. The test results confirmed the known relationships of power consumption and superficial gas velocity. An increase in the liquid viscosity leads to a decrease in all the tested values. In most cases, suspended solid particles lead to a lowering of the test values. The influence of the tank diameter on the plots of the test values against specific power consumption turned out to be invariant so that a scale-up of geometrically similar systems can be carried out at constant power consumption, superficial gas velocity and liquid viscosity.
๐ SIMILAR VOLUMES
## Abstract The gasโliquid interfacial area and mass transfer coefficient for absorption of oxygen from air into water, aqueous glycerol solutions up to 1.5% (w/w) and fermentation medium containing glucose up to a 3% concentration were determined in a coโcurrent down flow contacting column (CDCC;