A Model for the Estimation of Surface Tension of Pure Hydrocarbon Liquids
Surface tension is an important property and its accurate prediction is required in most chemical engineering calculations. An equation for the surface tension of liquid hydrocarbons as a function of temperature is developed considering intermolecular attractions in liquid phase are reflected by its...
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2015
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my.utp.eprints.307172022-03-25T07:15:48Z A Model for the Estimation of Surface Tension of Pure Hydrocarbon Liquids Aleem, W. Mellon, N. Sufian, S. Mutalib, M.I.A. Subbarao, D. Surface tension is an important property and its accurate prediction is required in most chemical engineering calculations. An equation for the surface tension of liquid hydrocarbons as a function of temperature is developed considering intermolecular attractions in liquid phase are reflected by its enthalpy. The model equation is validated with National Institute of Standards and Technology data on liquid hydrocarbon alkanes (C1 to C10 and C12) accounting for molecular shape through sphericity factor. The molecular sphericity factor correlated well with molecular weight of the hydrocarbons. The accuracy of the proposed model equation is compared with the two empirical equations, and results showed that the proposed model equation predicts the surface tension of pure hydrocarbon liquids more accurately. Copyright © 2015 Taylor & Francis Group, LLC. Taylor and Francis Inc. 2015 Article NonPeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-84951853362&doi=10.1080%2f10916466.2015.1110593&partnerID=40&md5=54841f631d7d6420041ea34fbb54ef03 Aleem, W. and Mellon, N. and Sufian, S. and Mutalib, M.I.A. and Subbarao, D. (2015) A Model for the Estimation of Surface Tension of Pure Hydrocarbon Liquids. Petroleum Science and Technology, 33 (23-24). pp. 1908-1915. http://eprints.utp.edu.my/30717/ |
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Surface tension is an important property and its accurate prediction is required in most chemical engineering calculations. An equation for the surface tension of liquid hydrocarbons as a function of temperature is developed considering intermolecular attractions in liquid phase are reflected by its enthalpy. The model equation is validated with National Institute of Standards and Technology data on liquid hydrocarbon alkanes (C1 to C10 and C12) accounting for molecular shape through sphericity factor. The molecular sphericity factor correlated well with molecular weight of the hydrocarbons. The accuracy of the proposed model equation is compared with the two empirical equations, and results showed that the proposed model equation predicts the surface tension of pure hydrocarbon liquids more accurately. Copyright © 2015 Taylor & Francis Group, LLC. |
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Article |
author |
Aleem, W. Mellon, N. Sufian, S. Mutalib, M.I.A. Subbarao, D. |
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Aleem, W. Mellon, N. Sufian, S. Mutalib, M.I.A. Subbarao, D. A Model for the Estimation of Surface Tension of Pure Hydrocarbon Liquids |
author_facet |
Aleem, W. Mellon, N. Sufian, S. Mutalib, M.I.A. Subbarao, D. |
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Aleem, W. |
title |
A Model for the Estimation of Surface Tension of Pure Hydrocarbon Liquids |
title_short |
A Model for the Estimation of Surface Tension of Pure Hydrocarbon Liquids |
title_full |
A Model for the Estimation of Surface Tension of Pure Hydrocarbon Liquids |
title_fullStr |
A Model for the Estimation of Surface Tension of Pure Hydrocarbon Liquids |
title_full_unstemmed |
A Model for the Estimation of Surface Tension of Pure Hydrocarbon Liquids |
title_sort |
model for the estimation of surface tension of pure hydrocarbon liquids |
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Taylor and Francis Inc. |
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2015 |
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https://www.scopus.com/inward/record.uri?eid=2-s2.0-84951853362&doi=10.1080%2f10916466.2015.1110593&partnerID=40&md5=54841f631d7d6420041ea34fbb54ef03 http://eprints.utp.edu.my/30717/ |
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