Process Systems Engineering
Development of a new technique to generate microcapsules from the breakup of non-Newtonian highly viscous fluid jets
Article first published online: 8 MAR 2011
DOI: 10.1002/aic.12549
Copyright © 2011 American Institute of Chemical Engineers (AIChE)
Additional Information
How to Cite
Rodríguez-Rivero, C., Del Valle, E. M. M. and Galán, M. A. (2011), Development of a new technique to generate microcapsules from the breakup of non-Newtonian highly viscous fluid jets. AIChE J., 57: 3436–3447. doi: 10.1002/aic.12549
Publication History
- Issue published online: 4 NOV 2011
- Article first published online: 8 MAR 2011
- Accepted manuscript online: 20 JAN 2011 09:53AM EST
- Manuscript Revised: 3 JAN 2011
- Manuscript Received: 15 OCT 2010
Funded by
- Ministerio de Ciencia e Innovación (Spain). Grant Number: CTQ2009-08222 (PPQ subprogram)
- Ministerio de Ciencia y Innovación (Spain)
- Abstract
- Article
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- Cited By
Keywords:
- jets;
- Rayleigh-type breakup;
- viscosity;
- laminar flow;
- vibrating nozzle
Abstract
A new method to produce microcapsules ranging from 300 to 700 μm based on the droplets formation from non-newtonian high viscous liquids has been developed, characterized, and modeled. The technique involves the generation of a continuous high viscous solution jet, which is destabilized by means of a controlled vibration, breaking into droplets that undergo stabilization through a gelling process. Finally, the application of the wave-mechanisms-based theory to obtain a set of equations for the fitting of experimental data is assessed, as a first approximation for a better knowledge of the process. To find the fitting equations, the influence on the microcapsules size is studied through two-dimensionless groups, the Ohnesorge and the Weber numbers, involving the liquid viscosity and flow, respectively, and determining their exponential dependences. Further coefficients are obtained by least-squares fit of the experimental data. © 2011 American Institute of Chemical Engineers AIChE J, 2011

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