[article]
Titre : |
CO2 bubble absorption enhancement in methanol-based nanofluids |
Titre original : |
Amélioration de l'absorption des bulles de CO2 dans les nanofluides à base de méthanol |
Type de document : |
texte imprimé |
Auteurs : |
Jae Won Lee, Auteur ; Jung-Yeul Jung, Auteur ; Soon-Geul Lee, Auteur |
Année de publication : |
2012 |
Article en page(s) : |
pp. 1727–1733 |
Note générale : |
Génie mécanique |
Langues : |
Anglais (eng) |
Mots-clés : |
Absorption Enhancement Bubble Carbon dioxide Methanol Particle |
Résumé : |
In this study, the nanoparticles (i.e. SiO2 and Al2O3 nanoparticles) and methanol are combined into SiO2/methanol and Al2O3/methanol nanofluids to enhance the CO2 absorption rate of the base fluid (methanol). The absorption experiments are performed in the bubble type absorber system equipped with mass flow controller (MFC), mass flow meter (MFM) and silica gel (which can remove the methanol vapor existing in the outlet gases). The parametric analysis on the effects of the particle species and concentrations on CO2 bubble absorption rate is carried out. The particle concentration ranges from 0.005 to 0.5 vol%. It is found that the CO2 absorption rate is enhanced up to 4.5% at 0.01 vol% of Al2O3/methanol nanofluids at 20 °C, and 5.6% at 0.01 vol% of SiO2/methanol nanofluids at −20 °C, respectively. |
ISSN : |
0140-7007 |
En ligne : |
http://www.sciencedirect.com/science/article/pii/S0140700711001915 |
in International journal of refrigeration > Vol. 34 N° 8 (Décembre 2011) . - pp. 1727–1733
[article] CO2 bubble absorption enhancement in methanol-based nanofluids = Amélioration de l'absorption des bulles de CO2 dans les nanofluides à base de méthanol [texte imprimé] / Jae Won Lee, Auteur ; Jung-Yeul Jung, Auteur ; Soon-Geul Lee, Auteur . - 2012 . - pp. 1727–1733. Génie mécanique Langues : Anglais ( eng) in International journal of refrigeration > Vol. 34 N° 8 (Décembre 2011) . - pp. 1727–1733
Mots-clés : |
Absorption Enhancement Bubble Carbon dioxide Methanol Particle |
Résumé : |
In this study, the nanoparticles (i.e. SiO2 and Al2O3 nanoparticles) and methanol are combined into SiO2/methanol and Al2O3/methanol nanofluids to enhance the CO2 absorption rate of the base fluid (methanol). The absorption experiments are performed in the bubble type absorber system equipped with mass flow controller (MFC), mass flow meter (MFM) and silica gel (which can remove the methanol vapor existing in the outlet gases). The parametric analysis on the effects of the particle species and concentrations on CO2 bubble absorption rate is carried out. The particle concentration ranges from 0.005 to 0.5 vol%. It is found that the CO2 absorption rate is enhanced up to 4.5% at 0.01 vol% of Al2O3/methanol nanofluids at 20 °C, and 5.6% at 0.01 vol% of SiO2/methanol nanofluids at −20 °C, respectively. |
ISSN : |
0140-7007 |
En ligne : |
http://www.sciencedirect.com/science/article/pii/S0140700711001915 |
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