4.7 Article

Box-Behnken optimization of glycerol transesterification reaction to glycerol carbonate over calcined oil palm fuel ash derived catalyst

期刊

RENEWABLE ENERGY
卷 146, 期 -, 页码 2676-2687

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.renene.2019.08.072

关键词

Glycerol; Glycerol carbonate; Box-behnken optimization; Mass transfer; Reaction mechanism

资金

  1. Shenyang University of Technology
  2. Key Laboratory for Catalyst Synthesis Technology of Polymer of Liaoning Province, China [2010-36]
  3. Engineering Laboratory for Advanced Polymer Material of Liaoning Province, China [2012-1139-15]
  4. Natural Science Foundation of China [51573179]

向作者/读者索取更多资源

This study aimed to optimize the synthesis of valuable glycerol carbonate (GC) over calcined oil pam fuel ash derived catalyst. A surface response methodology optimization study was conducted using the Box-Behnken optimization tool to minimize the reaction parameters and optimize GC yield and glycerol conversion. Also, the effect of intraparticle and external mass transfer resistance was conducted and the intrinsic kinetic model of the transesterification reaction was established. Overall, the transesterification temperature had significant effects on the variables of GC yield and glycerol conversion, while the catalyst loading and reaction time trivially affected the response parameters. Under optimized parameters of 80 degrees C reaction temperature, dimethyl carbonate (DMC)/glycerol molar ratio of 5, 5 wt% catalyst loading and 112 min reaction time, GC reached 95% with a desirability of 1. Theoretical elucidation indicates that transesterification reaction over the catalyst was unaffected by external mass transfer resistance and intraparticle diffusion above 125 mu m particle size. The catalyst is heterogeneous and can be reused for five times while sustaining about 81.3% of GC yield. (C) 2019 Elsevier Ltd. All rights reserved.

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