Radioisotope tracer study in trickle bed reactors
β Scribed by Krishna Deo Prasad Nigam; Anil Kumar Saroha; Arunabha Kundu; Harish Jagat Pant
- Publisher
- John Wiley and Sons
- Year
- 2010
- Tongue
- English
- Weight
- 511 KB
- Volume
- 79
- Category
- Article
- ISSN
- 0008-4034
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β¦ Synopsis
Abstract
The residence time distribution (RTD) of liquid phase in trickle bed reactors has been measured for airβwater system using radioisotope tracer technique. Experiments were carried out in a glass column of internal diameter of 0.152 m packed with glass beads and actual catalyst particles of two different shapes. From the measured RTD curves, mean residence time of liquid was calculated and used to estimate liquid holdup. The axial dispersion model was used to simulate the experimental data and estimate mixing index, ie. Peclet number. The effect of liquid and gas flow rates on total liquid holdup and Peclet number has been investigated. Results of the study indicated that shape of the packing has significant effect on holdup and axial dispersion. Bodenstein number has been correlated to Reynolds number, Galileo number, shape and size of the packing.
π SIMILAR VOLUMES
## Abstract Local and average partial wetting efficiencies in trickleβbeds have been directly measured by image processing and PIV analysis. Two different setups have been implemented: a vertical monolayer of pellets where the wetting structure and stability and also local velocity gradient are cha