𝔖 Bobbio Scriptorium
✦   LIBER   ✦

Gas-liquid mass transfer in vessels stirred with multiple impellers—II. Modelling of gas-liquid mass transfer

✍ Scribed by V. Linek; T. Moucha; J. Sinkule


Publisher
Elsevier Science
Year
1996
Tongue
English
Weight
402 KB
Volume
51
Category
Article
ISSN
0009-2509

No coin nor oath required. For personal study only.

✦ Synopsis


In Part I of the article there were reported profound differences in behaviour between the bottom and the upper stages of a multiple-impeller vessel under gassed conditions: the volumetric mass transfer coefficient, kLa, for the bottom stage was by up to 50% lower than that for the upper stages. A procedure is presented that enables it to transfer kLa data from the basic single-impeller configuration to upper stages of the multiple-impeller vessel using correlations of power dissipated in individual stages of the reactor. The procedure is based on the idea of different amounts of aeration gas engaged in impeller regions of the bottom and upper stages. Further, an experimental way of modelling the upper stages by a single-impeller vessel with a spiral sparger placed on the bottom that distributes the gas uniformly through the whole tank cross-section is tested.


📜 SIMILAR VOLUMES


Gas-liquid mass transfer in vessels stir
✍ V. Linek; T. Moucha; J. Sinkule 📂 Article 📅 1996 🏛 Elsevier Science 🌐 English ⚖ 834 KB

Volumetric mass transfer coefficient, holdup and power consumption were measured in individual stages of the vessel stirred with 4 Rushton turbines on a common shaft. Water and a 0.5 M aqueous solution of Na2SO4 were used to simulate coalescing and noncoalescing batches. Volumetric mass transfer coe

Gas–liquid mass transfer in stirred tank
✍ Luis A. Arrua; B. J. McCoy; J. M. Smith 📂 Article 📅 1990 🏛 American Institute of Chemical Engineers 🌐 English ⚖ 331 KB 👁 2 views
Gas-liquid mass transfer in agitated ves
✍ Olle Stenberg; Bengt Andersson 📂 Article 📅 1988 🏛 Elsevier Science 🌐 English ⚖ 497 KB

method is described for evaluating the gas-liquid mass transfer coefficient k,a in agitated vessels from transient-response measurements. It involves cbncentration measurements at several places in the liquid phase and an axial dispersion model for the gas phase. Results are presented showing the di