| Literature DB >> 26611678 |
Meilin Tao1, Xiaohu Yi1,2, Irina Delidovich2, Regina Palkovits3, Junyou Shi4, Xiaohong Wang5.
Abstract
Lactic acid (LA) is a versatile platform molecule owing to the opportunity to transform this compound into useful chemicals and materials. Therefore, efficient production of LA based on inexpensive renewable feedstocks is of utmost importance for insuring its market availability. Herein, we report the efficient conversion of glycerol into LA catalyzed by heteropolyacids (HPAs) under mild base-free conditions. The catalytic performance of molecular HPAs appears to correlate with their redox potential and Brønsted acidity. Namely, H3 PMo(12)O(40) (HPMo) exhibits the best selectivity towards LA (90 %) with 88 % conversion of glycerol. Loading of HPMo onto a carbon support (HPMo/C) further improves LA productivity resulting in 94 % selectivity at 98 % conversion under optimized reaction conditions. The reaction takes place through the formation of dihydroxyacetone/glyceraldehyde and pyruvaldehyde as intermediates. No leaching of HPMo was observed under the applied reaction conditions and HPMo/C could be recycled 5 times without significant loss of activity.Entities:
Keywords: base-free; glycerol oxidation; heterogeneous catalysis; heteropolyacids; lactic acid
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Year: 2015 PMID: 26611678 DOI: 10.1002/cssc.201501200
Source DB: PubMed Journal: ChemSusChem ISSN: 1864-5631 Impact factor: 8.928