Kinetic study of glucose conversion to levulinic acid over Fe/HY zeolite catalyst
The glucose conversion using Fe/HY zeolite catalyst in a batch reactor has been investigated. The main products within the temperature range between 120 and 200°C were 5-hydroxymethylfurfural (5-HMF) and levulinic acid (LA). The highest LA yield of 66% was obtained from 100% glucose conversion at 18...
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my.utm.744532017-11-29T23:58:42Z http://eprints.utm.my/id/eprint/74453/ Kinetic study of glucose conversion to levulinic acid over Fe/HY zeolite catalyst Ramli, N. A. S. Amin, N. A. S. TP Chemical technology The glucose conversion using Fe/HY zeolite catalyst in a batch reactor has been investigated. The main products within the temperature range between 120 and 200°C were 5-hydroxymethylfurfural (5-HMF) and levulinic acid (LA). The highest LA yield of 66% was obtained from 100% glucose conversion at 180°C. After eliminating the influence of internal and external diffusions, a kinetic model was developed based on the pseudo homogeneous model. The kinetic model consisted of four key steps: (1) glucose dehydration to form 5-HMF; (2) glucose degradation to produce humins; (3) 5-HMF rehydration to form LA; and (4) 5-HMF degradation to form humins. The first-order model and the experimental data fitted-well. The reactions rates increased with temperature, and the activation energies of glucose conversion to 5-HMF and 5-HMF conversion to LA were 64 and 61kJmol-1, respectively, comparatively lower than previously reported values. Elsevier 2016 Article PeerReviewed Ramli, N. A. S. and Amin, N. A. S. (2016) Kinetic study of glucose conversion to levulinic acid over Fe/HY zeolite catalyst. Chemical Engineering Journal, 283 . pp. 150-159. ISSN 1385-8947 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84938390804&doi=10.1016%2fj.cej.2015.07.044&partnerID=40&md5=53fca35242568d6284347c9e6f13a7cd |
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The glucose conversion using Fe/HY zeolite catalyst in a batch reactor has been investigated. The main products within the temperature range between 120 and 200°C were 5-hydroxymethylfurfural (5-HMF) and levulinic acid (LA). The highest LA yield of 66% was obtained from 100% glucose conversion at 180°C. After eliminating the influence of internal and external diffusions, a kinetic model was developed based on the pseudo homogeneous model. The kinetic model consisted of four key steps: (1) glucose dehydration to form 5-HMF; (2) glucose degradation to produce humins; (3) 5-HMF rehydration to form LA; and (4) 5-HMF degradation to form humins. The first-order model and the experimental data fitted-well. The reactions rates increased with temperature, and the activation energies of glucose conversion to 5-HMF and 5-HMF conversion to LA were 64 and 61kJmol-1, respectively, comparatively lower than previously reported values. |
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Article |
author |
Ramli, N. A. S. Amin, N. A. S. |
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Ramli, N. A. S. Amin, N. A. S. |
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Ramli, N. A. S. |
title |
Kinetic study of glucose conversion to levulinic acid over Fe/HY zeolite catalyst |
title_short |
Kinetic study of glucose conversion to levulinic acid over Fe/HY zeolite catalyst |
title_full |
Kinetic study of glucose conversion to levulinic acid over Fe/HY zeolite catalyst |
title_fullStr |
Kinetic study of glucose conversion to levulinic acid over Fe/HY zeolite catalyst |
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Kinetic study of glucose conversion to levulinic acid over Fe/HY zeolite catalyst |
title_sort |
kinetic study of glucose conversion to levulinic acid over fe/hy zeolite catalyst |
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Elsevier |
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2016 |
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http://eprints.utm.my/id/eprint/74453/ https://www.scopus.com/inward/record.uri?eid=2-s2.0-84938390804&doi=10.1016%2fj.cej.2015.07.044&partnerID=40&md5=53fca35242568d6284347c9e6f13a7cd |
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13.18916 |