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杂多阴离子基离子液体中碳水化合物到 5-羟甲基糠醛酯的催化转化。

Catalytic Conversion of Carbohydrates to Levulinate Ester over Heteropolyanion-Based Ionic Liquids.

机构信息

School of Chemistry and Chemical Engineering, Pulp & Paper Engineering State Key Laboratory of China, South China University of Technology, Guangzhou, 510640, China.

出版信息

ChemSusChem. 2016 Dec 8;9(23):3307-3316. doi: 10.1002/cssc.201601080. Epub 2016 Nov 15.

Abstract

An efficient one-pot approach for the production of levulinate ester from renewable carbohydrates is demonstrated over heteropolyanion-based ionic liquid (IL-POM) catalysts with alcohols as the promoters and solvents. The relationships between the structure, acidic strength, and solubility of the IL-POM in methanol and the catalytic performance were studied intensively. A cellulose conversion of 100 % could be achieved with a 71.4 % yield of methyl levulinate over the catalyst [PyPS] PW O [PyPS=1-(3-sulfopropyl)pyridinium] at 150 °C for 5 h. This high efficiency is ascribed to the reasonably high activity of the ionic liquid (IL) catalyst and reaction coupling with rapid in situ esterification of the generated levulinic acid with the alcohol promoter, which allows the insolubility of cellulose encountered in biomass conversion to be overcome. Furthermore, the present process exhibits high feedstock adaptability for typical carbohydrates and handy catalyst recovery by a simple self-separation procedure through temperature control.

摘要

本文展示了一种高效的一锅法,使用基于杂多阴离子的离子液体(IL-POM)催化剂,通过醇作为促进剂和溶剂,将可再生碳水化合物转化为戊酸酯。深入研究了 IL-POM 在甲醇中的结构、酸性强度和溶解度与催化性能之间的关系。在 150°C 下反应 5 小时,以 [PyPS]PW O [PyPS=1-(3-磺丙基)吡啶]为催化剂,纤维素转化率为 100%时,可得到 71.4%的甲基戊酸酯收率。这种高效率归因于离子液体(IL)催化剂的高活性和反应的快速偶联,以及与醇促进剂原位酯化生成的戊酸,从而克服了生物质转化中纤维素的不溶性。此外,该过程对典型碳水化合物具有很高的原料适应性,并且通过简单的控温自分离程序可以方便地回收催化剂。

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