Reactors, Kinetics, and Catalysis
NETmix®, a new type of static mixer: Experimental characterization and model validation
Article first published online: 28 MAY 2010
DOI: 10.1002/aic.12316
Copyright © 2010 American Institute of Chemical Engineers (AIChE)
Additional Information
How to Cite
Laranjeira, P. E., Martins, A. A., Nunes, M. I., Lopes, J. C. B. and Dias, M. M. (2011), NETmix®, a new type of static mixer: Experimental characterization and model validation. AIChE J., 57: 1020–1032. doi: 10.1002/aic.12316
Publication History
- Issue published online: 10 MAR 2011
- Article first published online: 28 MAY 2010
- Manuscript Revised: 24 MAY 2010
- Manuscript Received: 16 NOV 2009
Funded by
- National Research. Grant Number: FCT/POCTI/EQU/34151/99
- FCT. Grant Numbers: PRAXIS XXI/BD/21490/99, PRAXIS XXI/BD/2631/93, PRAXIS XXI/BD/9296/96
- Abstract
- Article
- References
- Cited By
Keywords:
- novel reactor;
- static mixing;
- network model;
- mixing
Abstract
In a previous article (Laranjeira et al.), a network model was developed to describe and predict the behavior and performance of NETmix®, a new type of static mixer consisting of a network of interconnected chambers and channels. This work reports experimental results on a transparent prototype NETmix® unit constructed to enable the characterization of the mixing mechanisms at the local scale. Tracer flow visualization experiments show that the mixing characteristics in the NETmix® unit depend on the Reynolds number both for macromixing and micromixing. A critical Reynolds number for the onset of mixing was obtained where oscillating flow in the chambers is observed. Chemical reaction experiments were done using test reactions systems that exhibit mixing effects in the final product distribution and selectivity. Reaction selectivity was shown to depend on the reactants injection scheme. Theoretical predictions obtained with the network model were in agreement with experimental data for high Reynolds numbers. © 2010 American Institute of Chemical Engineers AIChE J, 2011

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