Comparison of mixing performances of T, Y and arrow-shaped micromixers using Villermaux-Dushman protocol at low Reynolds number

Mixing performance is commonly assessed using the Villermaux– –Dushman protocol. Mixing in passive mixers may need to be at very low Reynolds number (Re). This study is aimed at comparing the mixing performances of T, Y and arrow-shaped micromixers using the Villermaux–Dushman protocol at Re < 10...

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Main Authors: Okwundu Onyeka S., Fuseini Mohammed, El-Shazly Ahmed H., Elkady Marwa F.
Format: Article
Language:English
Published: Serbian Chemical Society 2020-01-01
Series:Journal of the Serbian Chemical Society
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0352-5139/2020/0352-51391900095O.pdf
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spelling doaj-59ce09b027954938b38c8bbe2c5c1a3a2020-11-25T02:49:28ZengSerbian Chemical Society Journal of the Serbian Chemical Society0352-51391820-74212020-01-0185338139410.2298/JSC190328095O0352-51391900095OComparison of mixing performances of T, Y and arrow-shaped micromixers using Villermaux-Dushman protocol at low Reynolds numberOkwundu Onyeka S.0Fuseini Mohammed1El-Shazly Ahmed H.2Elkady Marwa F.3Department of Chemical and Petrochemical Engineering, Egypt-Japan University of Science and Technology (E-JUST), Egypt + Department of Chemical Engineering, University of Benin, NigeriaDepartment of Chemical and Petrochemical Engineering, Egypt-Japan University of Science and Technology (E-JUST), EgyptDepartment of Chemical and Petrochemical Engineering, Egypt-Japan University of Science and Technology (E-JUST), Egypt + Chemical Engineering Department, Alexandria University, Alexandria, EgyptnemaMixing performance is commonly assessed using the Villermaux– –Dushman protocol. Mixing in passive mixers may need to be at very low Reynolds number (Re). This study is aimed at comparing the mixing performances of T, Y and arrow-shaped micromixers using the Villermaux–Dushman protocol at Re < 100. The mixing performance test was run at flow rates of 500 to 1 mL h-1 with the pressure drop measurement. Based on UV absorbance values and experimental mixing times of mixed fluids from the three micromixers, the order of mixing performance at Re > 26.5 was Y < T < arrow-shaped micromixers. At lower Re values, the order of performance based on the absorbance and the experimental mixing times, became inconsistent. However, the comparison of mixing performance based on predicted mixing time gave consistent order of performance at all Re values. The instability in UV absorbance of mixed reagents in Villermaux–Dushman protocol was noted as the major cause of the reported inconsistency at very low Re. The inadequacy of Villermaux– –Dushman protocol at low Re was verified via facile solvent extraction test. A more reliable technique should be used to assess the mixing performance of micromixers at very low Re and on-line UV measurement should be adopted for the Villermaux–Dushman experiment.http://www.doiserbia.nb.rs/img/doi/0352-5139/2020/0352-51391900095O.pdfefficiency of mixersiodide/iodate test experimentpassive mixersmicro-channellaminar flow regimeconfluence shapeconfluence shape
collection DOAJ
language English
format Article
sources DOAJ
author Okwundu Onyeka S.
Fuseini Mohammed
El-Shazly Ahmed H.
Elkady Marwa F.
spellingShingle Okwundu Onyeka S.
Fuseini Mohammed
El-Shazly Ahmed H.
Elkady Marwa F.
Comparison of mixing performances of T, Y and arrow-shaped micromixers using Villermaux-Dushman protocol at low Reynolds number
Journal of the Serbian Chemical Society
efficiency of mixers
iodide/iodate test experiment
passive mixers
micro-channel
laminar flow regime
confluence shape
confluence shape
author_facet Okwundu Onyeka S.
Fuseini Mohammed
El-Shazly Ahmed H.
Elkady Marwa F.
author_sort Okwundu Onyeka S.
title Comparison of mixing performances of T, Y and arrow-shaped micromixers using Villermaux-Dushman protocol at low Reynolds number
title_short Comparison of mixing performances of T, Y and arrow-shaped micromixers using Villermaux-Dushman protocol at low Reynolds number
title_full Comparison of mixing performances of T, Y and arrow-shaped micromixers using Villermaux-Dushman protocol at low Reynolds number
title_fullStr Comparison of mixing performances of T, Y and arrow-shaped micromixers using Villermaux-Dushman protocol at low Reynolds number
title_full_unstemmed Comparison of mixing performances of T, Y and arrow-shaped micromixers using Villermaux-Dushman protocol at low Reynolds number
title_sort comparison of mixing performances of t, y and arrow-shaped micromixers using villermaux-dushman protocol at low reynolds number
publisher Serbian Chemical Society
series Journal of the Serbian Chemical Society
issn 0352-5139
1820-7421
publishDate 2020-01-01
description Mixing performance is commonly assessed using the Villermaux– –Dushman protocol. Mixing in passive mixers may need to be at very low Reynolds number (Re). This study is aimed at comparing the mixing performances of T, Y and arrow-shaped micromixers using the Villermaux–Dushman protocol at Re < 100. The mixing performance test was run at flow rates of 500 to 1 mL h-1 with the pressure drop measurement. Based on UV absorbance values and experimental mixing times of mixed fluids from the three micromixers, the order of mixing performance at Re > 26.5 was Y < T < arrow-shaped micromixers. At lower Re values, the order of performance based on the absorbance and the experimental mixing times, became inconsistent. However, the comparison of mixing performance based on predicted mixing time gave consistent order of performance at all Re values. The instability in UV absorbance of mixed reagents in Villermaux–Dushman protocol was noted as the major cause of the reported inconsistency at very low Re. The inadequacy of Villermaux– –Dushman protocol at low Re was verified via facile solvent extraction test. A more reliable technique should be used to assess the mixing performance of micromixers at very low Re and on-line UV measurement should be adopted for the Villermaux–Dushman experiment.
topic efficiency of mixers
iodide/iodate test experiment
passive mixers
micro-channel
laminar flow regime
confluence shape
confluence shape
url http://www.doiserbia.nb.rs/img/doi/0352-5139/2020/0352-51391900095O.pdf
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