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通过酸多相催化将缩水甘油转化为单烷基甘油醚的首次尝试:合成与简化的可持续性评估

First Attempt of Glycidol-to-Monoalkyl Glyceryl Ethers Conversion by Acid Heterogeneous Catalysis: Synthesis and Simplified Sustainability Assessment.

作者信息

Ricciardi Maria, Passarini Fabrizio, Capacchione Carmine, Proto Antonio, Barrault Joel, Cucciniello Raffaele, Cespi Daniele

机构信息

Department of Chemistry and Biology "Adolfo Zambelli", University of Salerno, Via Giovanni Paolo II 132, 84084, Fisciano (SA), Italy.

Department of Industrial Chemistry "Toso Montanari'', University of Bologna, Viale del Risorgimento 4, 40135, Bologna, Italy.

出版信息

ChemSusChem. 2018 Jun 11;11(11):1829-1837. doi: 10.1002/cssc.201800530. Epub 2018 May 9.

Abstract

The selective preparation of monoalkylglyceryl ethers (MAGEs) is a task for researchers owing to their broad range of applications. In this work, green feedstocks such as glycidol and alcohols were used to prepare MAGEs under mild reaction conditions (80 °C, 3 h, 0.5 mol % catalyst) in the presence of acid heterogeneous catalysts. Nafion shows the best performances in terms of conversion and selectivity to MAGES and also high stability. A comparison of the environmental performances with the most consolidated pathway from glycerol has shown that the usage of glycidol (recovered as a value-added product from Epicerol process) and Nafion leads to a lower impact on ecosystems. In addition, results achieved from a simplified socio-economic analysis show that the innovative route here proposed has potential (at the laboratory scale) of enhancing potential gains and of reducing the social implications resulting from externalities associated with environmental impacts (e.g., CO equivalents).

摘要

由于单烷基甘油醚(MAGEs)具有广泛的应用,其选择性制备一直是研究人员面临的一项任务。在这项工作中,使用缩水甘油和醇类等绿色原料,在温和的反应条件下(80 °C,3小时,0.5摩尔%催化剂),在酸性非均相催化剂存在下制备MAGEs。就MAGEs的转化率和选择性而言,Nafion表现出最佳性能,并且具有高稳定性。与甘油最成熟的制备途径的环境性能比较表明,使用缩水甘油(作为来自Epicerol工艺的增值产品回收)和Nafion对生态系统的影响较小。此外,简化的社会经济分析结果表明,这里提出的创新路线(在实验室规模)具有提高潜在收益和减少与环境影响相关的外部性(如CO当量)所带来的社会影响的潜力。

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