A procedure involving high speed tine photography and novel optical probes has been used to study droplet interaction phenomena in liquid-liquid dispersions. Coalescence and breakup events were observed and the rate of coalescence was measured at various positions in a stirred tank for dispersions o
A coalescence redispersion model for drop-size distributions in an agitated vessel
โ Scribed by R.K. Bajpai; D. Ramkrishna; A. Prokop
- Publisher
- Elsevier Science
- Year
- 1976
- Tongue
- English
- Weight
- 608 KB
- Volume
- 31
- Category
- Article
- ISSN
- 0009-2509
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โฆ Synopsis
Ahstrac-A population balance model has been developed accounting for coalescence and redispersion of drops in an agitated liquid-liquid dispersion. It is assumed that drop coalescence is followed by immediate redispersion into two drops whose sizes are distributed according to a uniform distribution in the ratio of the daughter drop-volume to the parent drop-volume. If it is assumed that the coalescence frequency is independent of drop-size, the resulting non-linear integral equation admits an exponential solution for the equilibrium dropvolume distribution in a batch vessel. On comparing experimental data obtained from several sources with the prediction of this model, it is found that for M-blade turbine agitated systems, the agreement is very good; in fact, the sign test ranks the model as better fitting than empirical expressions for dropsixes proposed by other workers. For circulation stirring systems, e.g. those having Waldhof agitator, the model predictions are substantially improved by assuming that the coalescence frequency is proportional to the diameters of the interacting drops.
๐ SIMILAR VOLUMES
Coalescence of oil-in-water emulsion droplets in a simple shear flow produced by a Couette device is considered. A phase Doppler anemometer was used to measure the droplet size distribution as a function of time for shear rates ranging from 55 to 213 s-1 and for sodium chloride salt concentrations f