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  4. A novel microreactor with 3D rotating flow to boost fluid reaction and mixing of viscous fluids
 
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A novel microreactor with 3D rotating flow to boost fluid reaction and mixing of viscous fluids

Journal
Sensors and Actuators, B: Chemical
Journal Volume
140
Journal Issue
2
Pages
629-642
Date Issued
2009
Author(s)
Fang, W.-F.
JING-TANG YANG  
DOI
10.1016/j.snb.2009.05.007
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/447662
URL
https://www.scopus.com/inward/record.uri?eid=2-s2.0-67649361333&doi=10.1016%2fj.snb.2009.05.007&partnerID=40&md5=7b915c52372689f2554ce565fec11160
Abstract
Based on a concept encompassing splitting and recombination (SAR) and chaotic advection, an efficient microreactor, called a SAR μ-reactor, has been designed to mix fluids at Reynolds numbers from 0.01 to 100 and to be suitable for mixing fluids with viscosity over a wide range (μ = 0.000855-0.186 kg m-1 s-1). This SAR μ-reactor was compared, numerically and experimentally, with a slanted-groove micromixer (SGM) for reaction or mixing of fluids. Results of simulations characterized the designed structure with inducing a 3D rotating flow involving a strong lateral component to stretch intensely the contact interface in the SAR μ-reactor. Chemical colorimetry of two kinds - involving reactions of phenolphthalein with sodium hydroxide and of ascorbic acid with diiodine - revealed that the SAR μ-reactor provided a smaller mixing length, reaction length and period than the SGM; the mixing performance of the SAR μ-reactor was much better than that of the SGM. We assessed the mixing behavior of fluorescent proteins (C-phycocyanin and R-phycoerythrin) in viscous fluids with a confocal microscope. Experimental results and simulations showed that the effect of fluid viscosity on the mixing efficiency of the SAR μ-reactor is less than for the SGM; the SAR mechanism effectively augmented the contact interface even though the intrinsic diffusivity of fluids was diminished. © 2009 Elsevier B.V. All rights reserved.
SDGs

[SDGs]SDG6

Type
journal article

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