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Production of High-Purity Allyl Alcohol by the Salting-Out Method from Formic Acid-Mediated Deoxydehydration of Glycerol

作者:Ruilong Jia, Binbin Zhao, Wenjie Xue, Lei Liu, Jinxiang Dong · 发表于:Journal of Chemical & Engineering Data · 年份:2018 · DOI:10.1021/acs.jced.8b00516 · 被引用次数:7 · 研究领域:Catalysis for Biomass Conversion、Microbial Metabolic Engineering and Bioproduction、Enzyme Catalysis and Immobilization

Formic acid-mediated deoxydehydration of glycerol has emerged as an attractive approach to produce allyl alcohol; however, separation of allyl alcohol by distillation is not a straightforward task from the mixture of allyl alcohol, formic acid, and water because of their very close boiling point. A new route to separate allyl alcohol with high purity has been developed by the precipitation, distillation, and salting-out process. Among 11 salts, NaCl, K 2 HPO 4, and K 2 CO 3 could easily induce the liquid–liquid phase splitting. K 2 CO 3 exhibits the best salting-out effect in a single salt system. Meanwhile, the solubility of allyl alcohol in the organic phase could be predicted by the mass fraction of salt. The allyl alcohol purity of >99.9% could be achieved by using 35% K 2 CO 3 + 25% K 2 HPO 4 . The results also provide valuable references to obtain high-purity allyl alcohol for all the glycerol to allyl alcohol routes, because it is indispensable to separate allyl alcohol from its aqueous solution.