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Determination of interfacial area in a tapered bubble column

✍ Scribed by Amitava Bandyopadhyay; Manindra Nath Biswas


Publisher
Wiley (John Wiley & Sons)
Year
2011
Tongue
English
Weight
253 KB
Volume
86
Category
Article
ISSN
0268-2575

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✦ Synopsis


BACKGROUND: Investigations of hold up (Ξ΅ g ) and interfacial area (a) in cylindrical bubble columns have been reported extensively but reported similar investigations in tapered bubble columns are sparse in the existing literature. Thus the current article reports the experimental determination of Ξ΅ g and a using a tapered bubble column. RESULTS: The present system generated Ξ΅ g (0.556 to 0.641) in a CO 2 -NaOH system 20% higher than in an air-water system (0.466 to 0.534) and values were higher than in existing systems. Also, the values of Ξ΅ g in the air-water system were higher than reported for a column with shorter tapered angle. Values of Ξ΅ g fitted very well with the well-known Akita and Yoshida correlation. The observed values of a (235 and 700 m 2 m -3 ) were higher than values obtained (2 to 600 m 2 m -3 ) in existing systems. The energy dissipation was 203 to 335 W m -3 , which was lower than that (100 to 1200 W/m 3 ) in existing systems. A correlation developed to predict the pressure drop in terms of Euler number was statistically highly significant. CONCLUSION: The present research achieved higher values of hold up and interfacial area, and lower values of energy dissipation per unit volume of dispersion compared with existing systems. Findings of the present study coupled with previous studies indicate that the tapered bubble column developed could find potential application not only in air pollution control but also in gas-liquid mass transfer operations.


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Hydrodynamics of a Tapered Bubble Column
✍ A. Bandyopadhyay; M. N. Biswas πŸ“‚ Article πŸ“… 2011 πŸ› John Wiley and Sons 🌐 English βš– 269 KB

## Abstract The hydrodynamic behavior of a single‐stage tapered bubble column using an air‐water two‐phase system has been studied. The experimental results indicate that the holdup increases with increasing superficial gas velocity and bubble slip velocity, while it remains constant with increasin

Particulate-laden-SO2 scrubbing in a tap
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## Abstract The performance of a tapered bubble column that generates higher fractional gas hold up with least power consumption than existing systems under similar hydrodynamic conditions is reported in this article for particulate‐laden‐SO~2~ scrubbing. Firstly, quiescent batch studies were carri