Instituto de Tecnología Química (UPV-CSIC), Universitat Politècnica de València, Valencia, Spain.
ChemSusChem. 2013 Jul;6(7):1224-34. doi: 10.1002/cssc.201300146. Epub 2013 Jun 10.
Glycerol carbonate esters (GCEs), which are valuable biomass-derivative compounds, have been prepared through the direct esterification of glycerol carbonate and long organic acids with different chain lengths, in the absence of solvent, and with heterogeneous catalysts, including acidic-organic resins, zeolites, and hybrid organic-inorganic acids. The best results, in terms of activity and selectivity towards GCEs, were obtained using a Nafion-silica composite. A full reaction scheme has been established, and it has been demonstrated that an undesired competing reaction results in the generation of glycerol and esters derived from a secondary hydrolysis of the endocyclic ester group, which is attributed to water formed during the esterification reaction. The influence of temperature, substrate ratio, catalyst-to-substrate ratio, and the use of solvent has been studied and, under optimized reaction conditions and with the adequate catalyst, it was possible to achieve 95% selectivity for the desired product at 98% conversion. It was demonstrated that the reaction rate decreased as the number of carbon atoms in the linear alkyl chain of the carboxylic acid increased for both p-toluenesulfonic acid and Nafion-silica nanocomposite (Nafion SAC-13) catalysts. After fitting the experimental data to a mechanistically based kinetic model, the reaction kinetic parameters for Nafion SAC-13 catalysis were determined and compared for reactions involving different carboxylic acids. A kinetic study showed that the reduced reactivity of carboxylic acids with increasing chain lengths could be explained by inductive as well as steric effects.
甘油碳酸酯酯(GCEs)是有价值的生物质衍生化合物,可通过甘油碳酸酯和具有不同链长的长链有机酸在无溶剂条件下并使用非均相催化剂(包括酸性有机树脂、沸石和杂化有机-无机酸)直接酯化来制备。在活性和对 GCEs 的选择性方面,使用 Nafion-二氧化硅复合材料可获得最佳结果。已经建立了完整的反应方案,并证明了一种不期望的竞争反应会导致甘油和环内酯基的二次水解产生的酯的生成,这归因于酯化反应过程中形成的水。研究了温度、底物比、催化剂与底物比以及溶剂的使用对反应的影响,在优化的反应条件下并使用适当的催化剂,在 98%的转化率下可以达到 95%的目标产物选择性。结果表明,对于对甲苯磺酸和 Nafion-二氧化硅纳米复合材料(Nafion SAC-13)催化剂,反应速率随羧酸线性烷基链中的碳原子数增加而降低。通过将实验数据拟合到基于机理的动力学模型中,确定了 Nafion SAC-13 催化反应的动力学参数,并对涉及不同羧酸的反应进行了比较。动力学研究表明,随着链长的增加羧酸反应性的降低可以通过诱导和空间效应来解释。