Application of Green Catalysts for the Esterification of Benzoic Acid with Different Alcohols

E. Sert, F. S. Atalay
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引用次数: 7

Abstract

In this study, three different catalysts were applied as catalysts for esterification of benzoic acid with ethanol, butanol and hexanol. These catalysts are ionic liquid, deep eutectic solvent, ion exchange resin. Amberlyst 15, ion exchange resin, was used as control catalyst to observe the catalytic activity of new generation solvent, deep eutectic solvent. Deep eutectic solvents show the similar properties with ionic liquids and have great attraction due to ease of preparation, low cost and environmentally friendly nature. They have many advantages such as reusability, stability, catalytically activity and removal of the reaction mixture. Deep eutectic solvents (DES) are composed hydrogen bond donor (HBD) and hydrogen bond acceptor (HBA). It has lower freezing point than that of individual constituents. In this study, p -toluene sulfonic acid (p-TSA) was used as HBD, benzyl tri-ethyl ammonium chloride (BTEAC) was used as HBA. DES formed by p-TSA and BTEAC was used as dual solvent-catalyst for esterification of benzoic acid with different alcohols. DES gave high catalytic activity among three different catalysts, 88.3, 87.8 and 67.5% conversion of benzoic acid for ethanol, butanol and hexanol, respectively. The effects of time, temperature, alcohol type and catalyst type were investigated in a batch reactor at specified conditions. It was found that DES provided the simple, efficient and environmentally friendly method for the synthesis of benzoic acid ester.
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绿色催化剂在苯甲酸与不同醇酯化反应中的应用
采用三种不同的催化剂催化苯甲酸与乙醇、丁醇和己醇的酯化反应。这些催化剂有离子液体、深共晶溶剂、离子交换树脂。以离子交换树脂Amberlyst 15为对照催化剂,观察新一代溶剂深共晶溶剂的催化活性。深共晶溶剂具有与离子液体相似的性质,制备简单、成本低、环境友好等优点,具有很大的吸引力。它们具有可重复使用、稳定性好、催化活性强、可去除反应混合物等优点。深共晶溶剂(DES)由氢键给体(HBD)和氢键受体(HBA)组成。它的凝固点比单个成分的凝固点低。本研究以对甲苯磺酸(p- tsa)为HBD,以苄基三乙基氯化铵(BTEAC)为HBA。用对tsa和BTEAC合成的DES作为双溶剂催化剂,催化苯甲酸与不同醇的酯化反应。在三种不同的催化剂中,DES的催化活性较高,苯甲酸对乙醇、丁醇和己醇的转化率分别为88.3、87.8和67.5%。在间歇式反应器中,在一定条件下考察了时间、温度、醇类和催化剂类型对反应的影响。结果表明,DES为苯甲酸酯的合成提供了一种简单、高效、环保的方法。
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