Direct Conversion of Cellulose into Ethyl Lactate in Supercritical Ethanol-Water Solutions

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Abstract

Biomass-derived ethyl lactate is a green solvent with a growing market as the replacement for petroleum-derived toxic organic solvents. Here we report, for the first time, the production of ethyl lactate directly from cellulose with the mesoporous Zr-SBA-15 silicate catalyst in a supercritical mixture of ethanol and water. The relatively strong Lewis and weak Brønsted acid sites on the catalyst, as well as the surface hydrophobicity, were beneficial to the reaction and led to synergy during consecutive reactions, such as depolymerization, retro-aldol condensation, and esterification. Under the optimum reaction conditions, μ33 % yield of ethyl lactate was produced from cellulose with the Zr-SBA-15 catalyst at 260 C in supercritical 95:5 (w/w) ethanol/water.

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Yang, L., Yang, X., Tian, E., & Lin, H. (2016). Direct Conversion of Cellulose into Ethyl Lactate in Supercritical Ethanol-Water Solutions. ChemSusChem, 9(1), 36–41. https://doi.org/10.1002/cssc.201500855

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