Esterification of glycerol from biodiesel production to glycerol carbonate in non‑catalytic supercritical dimethyl carbonate
Conversion of glycerol from biodiesel production to glycerol carbonate was studied by esterification with dimethyl carbonate in a non-catalytic supercritical condition. It was found that in a non-catalytic supercritical condition, glycerol at higher purity gave higher yield of glycerol carbonate at...
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my.um.eprints.167192021-03-30T02:17:09Z http://eprints.um.edu.my/16719/ Esterification of glycerol from biodiesel production to glycerol carbonate in non‑catalytic supercritical dimethyl carbonate Ilham, Zul GE Environmental Sciences QD Chemistry TP Chemical technology Conversion of glycerol from biodiesel production to glycerol carbonate was studied by esterification with dimethyl carbonate in a non-catalytic supercritical condition. It was found that in a non-catalytic supercritical condition, glycerol at higher purity gave higher yield of glycerol carbonate at 98 wt% after reaction at 300 °C/20–40 MPa/15 min. The yield of glycerol carbonate was observed to increase with molar ratio, temperature, pressure and time until a certain equilibrium limit. The existence of impurities such as water and remnants of alkaline catalyst in crude glycerol will direct the reaction to produce glycidol. Although impurities might not be desirable, the non-catalytic supercritical dimethyl carbonate could be an alternative method for conversion of glycerol from biodiesel production to value-added glycerol carbonate. Springer Open 2016 Article PeerReviewed application/pdf en http://eprints.um.edu.my/16719/1/IlhamSaka_2016_SpringerPlus.pdf Ilham, Zul (2016) Esterification of glycerol from biodiesel production to glycerol carbonate in non‑catalytic supercritical dimethyl carbonate. SpringerPlus, 5 (923). pp. 1-6. ISSN 2193-1801 https://springerplus.springeropen.com/articles/10.1186/s40064-016-2643-1 |
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GE Environmental Sciences QD Chemistry TP Chemical technology Ilham, Zul Esterification of glycerol from biodiesel production to glycerol carbonate in non‑catalytic supercritical dimethyl carbonate |
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Conversion of glycerol from biodiesel production to glycerol carbonate was studied by esterification with dimethyl carbonate in a non-catalytic supercritical condition. It was found that in a non-catalytic supercritical condition, glycerol at higher purity gave higher yield of glycerol carbonate at 98 wt% after reaction at 300 °C/20–40 MPa/15 min. The yield of glycerol carbonate was observed to increase with molar ratio, temperature, pressure and time until a certain equilibrium limit. The existence of impurities such as water and remnants of alkaline catalyst in crude glycerol will direct the reaction to produce glycidol. Although impurities might not be desirable, the non-catalytic supercritical dimethyl carbonate could be an alternative method for conversion of glycerol from biodiesel production to value-added glycerol carbonate. |
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Article |
author |
Ilham, Zul |
author_facet |
Ilham, Zul |
author_sort |
Ilham, Zul |
title |
Esterification of glycerol from biodiesel production to glycerol carbonate in non‑catalytic supercritical dimethyl carbonate |
title_short |
Esterification of glycerol from biodiesel production to glycerol carbonate in non‑catalytic supercritical dimethyl carbonate |
title_full |
Esterification of glycerol from biodiesel production to glycerol carbonate in non‑catalytic supercritical dimethyl carbonate |
title_fullStr |
Esterification of glycerol from biodiesel production to glycerol carbonate in non‑catalytic supercritical dimethyl carbonate |
title_full_unstemmed |
Esterification of glycerol from biodiesel production to glycerol carbonate in non‑catalytic supercritical dimethyl carbonate |
title_sort |
esterification of glycerol from biodiesel production to glycerol carbonate in non‑catalytic supercritical dimethyl carbonate |
publisher |
Springer Open |
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2016 |
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http://eprints.um.edu.my/16719/1/IlhamSaka_2016_SpringerPlus.pdf http://eprints.um.edu.my/16719/ https://springerplus.springeropen.com/articles/10.1186/s40064-016-2643-1 |
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