Investigation of convection and diffusion during biodiesel production in packed membrane reactor using 3D simulation
The 3D simulation of convection and diffusion phenomena within a ceramic membrane during transesterification reaction was the aim of this study. The ceramic membrane was a tubular micro porous TiO2/Al2O3 packed with the heterogeneous catalyst. The Navier–Stokes, Brinkman and Stephan–Maxwell equation...
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my.um.eprints.95102019-11-19T06:45:20Z http://eprints.um.edu.my/9510/ Investigation of convection and diffusion during biodiesel production in packed membrane reactor using 3D simulation Sajjadi, Baharak Abdul Raman, Abdul Aziz Baroutian, Saeid Ibrahim, Shaliza TA Engineering (General). Civil engineering (General) TP Chemical technology The 3D simulation of convection and diffusion phenomena within a ceramic membrane during transesterification reaction was the aim of this study. The ceramic membrane was a tubular micro porous TiO2/Al2O3 packed with the heterogeneous catalyst. The Navier–Stokes, Brinkman and Stephan–Maxwell equations were applied for investigation of fluid flow reaction and mass transfer within the system. The value of the convection was generally between 104 and 107 times higher than diffusion. It depends on concentration component, the diffusion coefficient and components velocity. A good agreement was found with the maximum deviation of 8% from experimental data. Elsevier 2014-07 Article PeerReviewed text en http://eprints.um.edu.my/9510/1/00003241_101253.pdf text en http://eprints.um.edu.my/9510/4/Baharak%20Sajjadi.pdf Sajjadi, Baharak and Abdul Raman, Abdul Aziz and Baroutian, Saeid and Ibrahim, Shaliza (2014) Investigation of convection and diffusion during biodiesel production in packed membrane reactor using 3D simulation. Journal of Industrial and Engineering Chemistry, 20 (4). pp. 1493-1504. ISSN 1226-086X https://doi.org/10.1016/j.jiec.2013.07.038 doi:10.1016/j.jiec.2013.07.038 |
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TA Engineering (General). Civil engineering (General) TP Chemical technology Sajjadi, Baharak Abdul Raman, Abdul Aziz Baroutian, Saeid Ibrahim, Shaliza Investigation of convection and diffusion during biodiesel production in packed membrane reactor using 3D simulation |
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The 3D simulation of convection and diffusion phenomena within a ceramic membrane during transesterification reaction was the aim of this study. The ceramic membrane was a tubular micro porous TiO2/Al2O3 packed with the heterogeneous catalyst. The Navier–Stokes, Brinkman and Stephan–Maxwell equations were applied for investigation of fluid flow reaction and mass transfer within the system. The value of the convection was generally between 104 and 107 times higher than diffusion. It depends on concentration component, the diffusion coefficient and components velocity. A good agreement was found with the maximum deviation of 8% from experimental data. |
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Article |
author |
Sajjadi, Baharak Abdul Raman, Abdul Aziz Baroutian, Saeid Ibrahim, Shaliza |
author_facet |
Sajjadi, Baharak Abdul Raman, Abdul Aziz Baroutian, Saeid Ibrahim, Shaliza |
author_sort |
Sajjadi, Baharak |
title |
Investigation of convection and diffusion during biodiesel production in packed membrane reactor using 3D simulation |
title_short |
Investigation of convection and diffusion during biodiesel production in packed membrane reactor using 3D simulation |
title_full |
Investigation of convection and diffusion during biodiesel production in packed membrane reactor using 3D simulation |
title_fullStr |
Investigation of convection and diffusion during biodiesel production in packed membrane reactor using 3D simulation |
title_full_unstemmed |
Investigation of convection and diffusion during biodiesel production in packed membrane reactor using 3D simulation |
title_sort |
investigation of convection and diffusion during biodiesel production in packed membrane reactor using 3d simulation |
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Elsevier |
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2014 |
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http://eprints.um.edu.my/9510/1/00003241_101253.pdf http://eprints.um.edu.my/9510/4/Baharak%20Sajjadi.pdf http://eprints.um.edu.my/9510/ https://doi.org/10.1016/j.jiec.2013.07.038 |
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