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Diameter of Bubbles in Bubble Column Reactors Operating with Organic Liquids
In order to determine physically justified relations between bubble characteristics and the physicochemical properties of liquid employed, bubble size distributions and average bubble diameters were calculated using theoretically justified model of gas bubbling through the liquid layer. The model of...
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Published in: | Chemical engineering research & design 2005-07, Vol.83 (7), p.827-832 |
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Main Authors: | , , , |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | In order to determine physically justified relations between bubble characteristics and the physicochemical properties of liquid employed, bubble size distributions and average bubble diameters were calculated using theoretically justified model of gas bubbling through the liquid layer. The model of the gas bubbling enabling the calculations of the bubbles diameter has been based on the original approach by Prince and Blanch. It assumes an equilibrium between the coalescence and dispersion processes, and uses a simplified method of solution of the population balance equations. This model has been verified experimentally for different organic liquids (acetaldehyde, acetone, cyclohexane, isopropanol, methanol, n-heptane, toluene) and columns of different scale: glass laboratory column 9 cm diameter and 200 cm high, operated at atmospheric pressure and low temperature; stainless steel pilot plant column 30.4 cm diameter and 400 cm high, operated at elevated pressure (up to 1.1 MPa) and temperature (up to 160°C). The model has been subsequently used to establish a theoretically based correlation for the bubble diameter by means of a numerical experiment using ‘virtual liquids’. |
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ISSN: | 0263-8762 |
DOI: | 10.1205/cherd.04340 |