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Etherification of Glycerol with Ethanol over Solid Acid Catalysts: Kinetic Study Using Cation Exchange Resin

机译:固体酸催化剂上甘油与乙醇的醚化反应:使用阳离子交换树脂的动力学研究

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摘要

The etherification of glycerol with ethanol is a novel process to utilise low-value by-product (glycerol) of the biodiesel industry to produce ethers of glycerol suitable for use as fuel additive or solvent. The etherification of glycerol with ethanol was investigated under the liquid phase in a high pressure batch reactor using two different types of commercial solid acid catalyst (zeolites and strongly acidic cation exchange resin (CER)). The CER showed superior catalytic activity over H-beta zeolite. The diethyl ether was observed as major product at high ethanol-to-glycerol mole ratio. The product selectivity diverted towards ethers of glycerol with decreasing ethanol-to-glycerol mole ratio. Among ethers of glycerol, glycerol monoethyl ether was the major product of the reaction. The reaction mechanism for etherification of glycerol with ethanol was delineated based on experimental observations. The reaction rate increased with increasing catalyst loading and temperature without affecting selectivity to the products significantly. The apparent activation energy of glycerol and ethanol was 25.1 and 26.6 kcal/mol, respectively. An empirical kinetic model was developed to correlate experimental data at different temperatures. The conversion of the reactants calculated from the kinetic model matched reasonably with experimental data.
机译:甘油与乙醇的醚化是利用生物柴油工业的低价值副产物(甘油)生产适合用作燃料添加剂或溶剂的甘油醚的新方法。在高压间歇反应器中,使用两种不同类型的市售固体酸催化剂(沸石和强酸性阳离子交换树脂(CER)),在液相下研究了甘油与乙醇的醚化反应。 CER显示出比H-β沸石优越的催化活性。在高的乙醇对甘油的摩尔比下,观察到乙醚是主要产物。随着乙醇与甘油摩尔比的降低,产物选择性转向甘油醚。在甘油的醚中,甘油单乙醚是反应的主要产物。根据实验观察,确定了甘油与乙醇醚化的反应机理。反应速率随着催化剂载量和温度的增加而增加,而不会显着影响产物的选择性。甘油和乙醇的表观活化能分别为25.1和26.6 kcal / mol。建立了经验动力学模型以关联不同温度下的实验数据。由动力学模型计算出的反应物转化率与实验数据合理匹配。

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