Investigation of physical properties and carbon dioxide solubility in tetramethylammonium bromide and tetraethylammonium bromide ionic liquids solutions
Carbon dioxide is a major greenhouse gas that is responsible for global warming and renders harmful effects on the atmosphere. The unconstrained release of CO2 into the atmosphere should be prevented and various techniques have been developed in this regard to capture CO2 using different solvents an...
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2023
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oai:scholars.utp.edu.my:373392023-10-04T08:42:00Z http://scholars.utp.edu.my/id/eprint/37339/ Investigation of physical properties and carbon dioxide solubility in tetramethylammonium bromide and tetraethylammonium bromide ionic liquids solutions Rather, S.-U. Sulaimon, A.A. Shariff, A.M. Qasim, A. Bamufleh, H.S. Alhumade, H.A. Saeed, U. Al-Alayah, W. Carbon dioxide is a major greenhouse gas that is responsible for global warming and renders harmful effects on the atmosphere. The unconstrained release of CO2 into the atmosphere should be prevented and various techniques have been developed in this regard to capture CO2 using different solvents and other compounds. Ionic liquids are a suitable candidate to capture CO2 due to their better solubility behaviour. In this work, two ionic liquids namely tetramethylammonium bromide (TMAB) and tetraethylammonium bromide (TEAB) are employed experimentally to capture CO2 and investigate their solubility behaviour. The study is performed at the temperature values of 303 K, 313 K, and 323 K and the pressure values of 5, 10, 15, and 20 bar equivalent to 0.5, 1.0, 1.5, and 2.0 MPa respectively. The concentrations of both ionic liquid solutions are 2.5 wt, 5.0 wt, and 10.0 wt. The solubility results are considered in terms of mol fraction which is the ratio of moles of CO2 captured per moles of ionic liquid. The density and viscosity values are also determined for both compounds at respective conditions. COSMO-RS is used to generate the sigma profile, sigma surface, and Henry's constant of the ions involved in the study. CO2 is found to be soluble in both ionic liquids, but TEAB showed better solubility behaviour as compared to TMAB. The solubility of CO2 is found to be increasing with the increase in pressure while it decreases with the increase in temperature. © 2023 Elsevier Ltd Elsevier Ltd 2023 Article NonPeerReviewed Rather, S.-U. and Sulaimon, A.A. and Shariff, A.M. and Qasim, A. and Bamufleh, H.S. and Alhumade, H.A. and Saeed, U. and Al-Alayah, W. (2023) Investigation of physical properties and carbon dioxide solubility in tetramethylammonium bromide and tetraethylammonium bromide ionic liquids solutions. Chemosphere, 337. ISSN 00456535 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85163801048&doi=10.1016%2fj.chemosphere.2023.139290&partnerID=40&md5=75077fdd4e80c4400b5be98e50c46231 10.1016/j.chemosphere.2023.139290 10.1016/j.chemosphere.2023.139290 10.1016/j.chemosphere.2023.139290 |
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Carbon dioxide is a major greenhouse gas that is responsible for global warming and renders harmful effects on the atmosphere. The unconstrained release of CO2 into the atmosphere should be prevented and various techniques have been developed in this regard to capture CO2 using different solvents and other compounds. Ionic liquids are a suitable candidate to capture CO2 due to their better solubility behaviour. In this work, two ionic liquids namely tetramethylammonium bromide (TMAB) and tetraethylammonium bromide (TEAB) are employed experimentally to capture CO2 and investigate their solubility behaviour. The study is performed at the temperature values of 303 K, 313 K, and 323 K and the pressure values of 5, 10, 15, and 20 bar equivalent to 0.5, 1.0, 1.5, and 2.0 MPa respectively. The concentrations of both ionic liquid solutions are 2.5 wt, 5.0 wt, and 10.0 wt. The solubility results are considered in terms of mol fraction which is the ratio of moles of CO2 captured per moles of ionic liquid. The density and viscosity values are also determined for both compounds at respective conditions. COSMO-RS is used to generate the sigma profile, sigma surface, and Henry's constant of the ions involved in the study. CO2 is found to be soluble in both ionic liquids, but TEAB showed better solubility behaviour as compared to TMAB. The solubility of CO2 is found to be increasing with the increase in pressure while it decreases with the increase in temperature. © 2023 Elsevier Ltd |
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Article |
author |
Rather, S.-U. Sulaimon, A.A. Shariff, A.M. Qasim, A. Bamufleh, H.S. Alhumade, H.A. Saeed, U. Al-Alayah, W. |
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Rather, S.-U. Sulaimon, A.A. Shariff, A.M. Qasim, A. Bamufleh, H.S. Alhumade, H.A. Saeed, U. Al-Alayah, W. Investigation of physical properties and carbon dioxide solubility in tetramethylammonium bromide and tetraethylammonium bromide ionic liquids solutions |
author_facet |
Rather, S.-U. Sulaimon, A.A. Shariff, A.M. Qasim, A. Bamufleh, H.S. Alhumade, H.A. Saeed, U. Al-Alayah, W. |
author_sort |
Rather, S.-U. |
title |
Investigation of physical properties and carbon dioxide solubility in tetramethylammonium bromide and tetraethylammonium bromide ionic liquids solutions |
title_short |
Investigation of physical properties and carbon dioxide solubility in tetramethylammonium bromide and tetraethylammonium bromide ionic liquids solutions |
title_full |
Investigation of physical properties and carbon dioxide solubility in tetramethylammonium bromide and tetraethylammonium bromide ionic liquids solutions |
title_fullStr |
Investigation of physical properties and carbon dioxide solubility in tetramethylammonium bromide and tetraethylammonium bromide ionic liquids solutions |
title_full_unstemmed |
Investigation of physical properties and carbon dioxide solubility in tetramethylammonium bromide and tetraethylammonium bromide ionic liquids solutions |
title_sort |
investigation of physical properties and carbon dioxide solubility in tetramethylammonium bromide and tetraethylammonium bromide ionic liquids solutions |
publisher |
Elsevier Ltd |
publishDate |
2023 |
url |
http://scholars.utp.edu.my/id/eprint/37339/ https://www.scopus.com/inward/record.uri?eid=2-s2.0-85163801048&doi=10.1016%2fj.chemosphere.2023.139290&partnerID=40&md5=75077fdd4e80c4400b5be98e50c46231 |
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13.214268 |