The incorporation of silica nanoparticle and alpha olefin sulphonate in aqueous CO2 foam: investigation of foaming behavior and synergistic effect
Foam behavior and synergistic effect of aqueous CO2 by three different sizes of hydrophobic silica nanoparticles with varying concentrations in presence of single anionic surfactant alpha olefin sulphonate with constant concentration of 1000 ppm were investigated in detail. The role of each size of...
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2014
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my.utm.629592017-10-03T06:39:52Z http://eprints.utm.my/id/eprint/62959/ The incorporation of silica nanoparticle and alpha olefin sulphonate in aqueous CO2 foam: investigation of foaming behavior and synergistic effect Attarhamed, F. Zoveidavianpoor, Mansoor Jalilavi, M. TN Mining engineering. Metallurgy Foam behavior and synergistic effect of aqueous CO2 by three different sizes of hydrophobic silica nanoparticles with varying concentrations in presence of single anionic surfactant alpha olefin sulphonate with constant concentration of 1000 ppm were investigated in detail. The role of each size of silica nanoparticle was analyzed in view of the foamability, foam stability, and synergistic effect after equilibrium of aqueous CO2 foam. Result reveals that the bigger size of silica nanoparticle has better effect in low concentration and generally smaller size of silica nanoparticle has better influence on CO2 foam stability at higher concentrations. Taylor and Francis Inc. 2014 Article PeerReviewed Attarhamed, F. and Zoveidavianpoor, Mansoor and Jalilavi, M. (2014) The incorporation of silica nanoparticle and alpha olefin sulphonate in aqueous CO2 foam: investigation of foaming behavior and synergistic effect. Petroleum Science and Technology, 32 (21). pp. 2549-2558. ISSN 1091-6466 http://dx.doi.org/10.1080/10916466.2013.845575 DOI:10.1080/10916466.2013.845575 |
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TN Mining engineering. Metallurgy Attarhamed, F. Zoveidavianpoor, Mansoor Jalilavi, M. The incorporation of silica nanoparticle and alpha olefin sulphonate in aqueous CO2 foam: investigation of foaming behavior and synergistic effect |
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Foam behavior and synergistic effect of aqueous CO2 by three different sizes of hydrophobic silica nanoparticles with varying concentrations in presence of single anionic surfactant alpha olefin sulphonate with constant concentration of 1000 ppm were investigated in detail. The role of each size of silica nanoparticle was analyzed in view of the foamability, foam stability, and synergistic effect after equilibrium of aqueous CO2 foam. Result reveals that the bigger size of silica nanoparticle has better effect in low concentration and generally smaller size of silica nanoparticle has better influence on CO2 foam stability at higher concentrations. |
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Article |
author |
Attarhamed, F. Zoveidavianpoor, Mansoor Jalilavi, M. |
author_facet |
Attarhamed, F. Zoveidavianpoor, Mansoor Jalilavi, M. |
author_sort |
Attarhamed, F. |
title |
The incorporation of silica nanoparticle and alpha olefin sulphonate in aqueous CO2 foam: investigation of foaming behavior and synergistic effect |
title_short |
The incorporation of silica nanoparticle and alpha olefin sulphonate in aqueous CO2 foam: investigation of foaming behavior and synergistic effect |
title_full |
The incorporation of silica nanoparticle and alpha olefin sulphonate in aqueous CO2 foam: investigation of foaming behavior and synergistic effect |
title_fullStr |
The incorporation of silica nanoparticle and alpha olefin sulphonate in aqueous CO2 foam: investigation of foaming behavior and synergistic effect |
title_full_unstemmed |
The incorporation of silica nanoparticle and alpha olefin sulphonate in aqueous CO2 foam: investigation of foaming behavior and synergistic effect |
title_sort |
incorporation of silica nanoparticle and alpha olefin sulphonate in aqueous co2 foam: investigation of foaming behavior and synergistic effect |
publisher |
Taylor and Francis Inc. |
publishDate |
2014 |
url |
http://eprints.utm.my/id/eprint/62959/ http://dx.doi.org/10.1080/10916466.2013.845575 |
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