Effect of solution height on carbon dioxide absorption using high frequency ultrasonic irradiation

Technology for capturing CO2 is gaining attention due to their potential in reducing the amount of CO2 in the atmosphere and opportunities to reuse or transform the captured CO2 into other valuable resources. This technology is commonly used during the welling for natural gas where the gas reservoir...

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Main Authors: Tay, W.H., Barashaid, A.A.B., Lau, K.K., Shariff, A.M.
Format: Article
Published: Italian Association of Chemical Engineering - AIDIC 2017
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85019412284&doi=10.3303%2fCET1756205&partnerID=40&md5=1070d9152aed3db97dac3b401b07095a
http://eprints.utp.edu.my/19663/
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spelling my.utp.eprints.196632018-04-20T07:27:40Z Effect of solution height on carbon dioxide absorption using high frequency ultrasonic irradiation Tay, W.H. Barashaid, A.A.B. Lau, K.K. Shariff, A.M. Technology for capturing CO2 is gaining attention due to their potential in reducing the amount of CO2 in the atmosphere and opportunities to reuse or transform the captured CO2 into other valuable resources. This technology is commonly used during the welling for natural gas where the gas reservoir contains high concentration of CO2. High frequency ultrasonic assisted absorption can be used to generate ultrasonic fountain that provides abundant fine droplets for CO2 absorption. The height of the solution will affect the ultrasonic streaming velocity, which will then affect the amount of the generated droplet. In this paper, the high frequency ultrasonic assisted absorption was studied using different height of monoethanolamine (MEA) solution at varied ultrasonic power. The experiment was conducted using a pressurised batch process. The absorption rate was determined from the pressure drop profile. Based on the experiment results, the height of the solution has significantly affected the performance of the ultrasonic assisted absorption. The CO2 absorption coefficient has been increased from 0.0388 to 0.0470 kmol.m-3.h-1.kPa-1 by decreasing the height of solution from 50 mm to 25 mm under the ultrasonic power of 13.2 W. The thresholds of the ultrasonic fountain have been decreased from approximate 3 W to 1 W by decreasing the height of solution from 50 mm to 25 mm. Overall, the height of the solution in the ultrasonic reactor is one of the important factors to be considered for the ultrasonic assisted absorption process for CO2. Copyright © 2017, AIDIC Servizi S.r.l.. Italian Association of Chemical Engineering - AIDIC 2017 Article PeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-85019412284&doi=10.3303%2fCET1756205&partnerID=40&md5=1070d9152aed3db97dac3b401b07095a Tay, W.H. and Barashaid, A.A.B. and Lau, K.K. and Shariff, A.M. (2017) Effect of solution height on carbon dioxide absorption using high frequency ultrasonic irradiation. Chemical Engineering Transactions, 56 . pp. 1225-1230. http://eprints.utp.edu.my/19663/
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
description Technology for capturing CO2 is gaining attention due to their potential in reducing the amount of CO2 in the atmosphere and opportunities to reuse or transform the captured CO2 into other valuable resources. This technology is commonly used during the welling for natural gas where the gas reservoir contains high concentration of CO2. High frequency ultrasonic assisted absorption can be used to generate ultrasonic fountain that provides abundant fine droplets for CO2 absorption. The height of the solution will affect the ultrasonic streaming velocity, which will then affect the amount of the generated droplet. In this paper, the high frequency ultrasonic assisted absorption was studied using different height of monoethanolamine (MEA) solution at varied ultrasonic power. The experiment was conducted using a pressurised batch process. The absorption rate was determined from the pressure drop profile. Based on the experiment results, the height of the solution has significantly affected the performance of the ultrasonic assisted absorption. The CO2 absorption coefficient has been increased from 0.0388 to 0.0470 kmol.m-3.h-1.kPa-1 by decreasing the height of solution from 50 mm to 25 mm under the ultrasonic power of 13.2 W. The thresholds of the ultrasonic fountain have been decreased from approximate 3 W to 1 W by decreasing the height of solution from 50 mm to 25 mm. Overall, the height of the solution in the ultrasonic reactor is one of the important factors to be considered for the ultrasonic assisted absorption process for CO2. Copyright © 2017, AIDIC Servizi S.r.l..
format Article
author Tay, W.H.
Barashaid, A.A.B.
Lau, K.K.
Shariff, A.M.
spellingShingle Tay, W.H.
Barashaid, A.A.B.
Lau, K.K.
Shariff, A.M.
Effect of solution height on carbon dioxide absorption using high frequency ultrasonic irradiation
author_facet Tay, W.H.
Barashaid, A.A.B.
Lau, K.K.
Shariff, A.M.
author_sort Tay, W.H.
title Effect of solution height on carbon dioxide absorption using high frequency ultrasonic irradiation
title_short Effect of solution height on carbon dioxide absorption using high frequency ultrasonic irradiation
title_full Effect of solution height on carbon dioxide absorption using high frequency ultrasonic irradiation
title_fullStr Effect of solution height on carbon dioxide absorption using high frequency ultrasonic irradiation
title_full_unstemmed Effect of solution height on carbon dioxide absorption using high frequency ultrasonic irradiation
title_sort effect of solution height on carbon dioxide absorption using high frequency ultrasonic irradiation
publisher Italian Association of Chemical Engineering - AIDIC
publishDate 2017
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85019412284&doi=10.3303%2fCET1756205&partnerID=40&md5=1070d9152aed3db97dac3b401b07095a
http://eprints.utp.edu.my/19663/
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score 13.211869