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首页> 外文期刊>Bioprocess and Biosystems Engineering >Synthesis of propyl benzoate by solvent-free immobilized lipase-catalyzed transesterification: Optimization and kinetic modeling
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Synthesis of propyl benzoate by solvent-free immobilized lipase-catalyzed transesterification: Optimization and kinetic modeling

机译:通过无溶剂固定的脂肪酶催化酯交换合成苯甲酸丙酯:优化和动力学建模

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摘要

The present study aimed to analyze reaction kinetics and mechanism for the synthesis of propyl benzoate in solvent-free conditions. Lipase was immobilized on Hydroxypropyl methylcellulose (HPMC) and polyvinyl alcohol (PVA) polymer blend by entrapment method. Among different lipases immobilized on a support,Candida cylindracea(CCL) showed excellent activity. Systematic studies were done to optimize the reaction conditions. The activation energy was found to be 16.2 kcal/mol for immobilized CCL. Kinetic parameters were calculated, which depicted that propyl benzoate synthesized using immobilized CCL followed the ternary complex model in which propanol inhibits lipase activity at higher concentrations. Recyclability of the catalyst was checked up to four catalytic cycles and 40% retention of activity was observed up to the fourth cycle. Finally, the applicability of developed protocol to synthesize various alkyl benzoates was explored.
机译:本研究旨在分析反应动力学和合成苯甲酸丙酯在无溶剂条件下的机制。通过夹带方法将脂肪酶固定在羟丙基甲基纤维素(HPMC)和聚乙烯醇(PVA)聚合物中。在固定在载体上的不同脂肪酶中,Candida Cylindrocea(CCL)显示出优异的活性。进行系统研究以优化反应条件。发现活化能量为5.2kcal / mol,用于固定化CCl。计算动力学参数,其描绘了使用固定化CCl合成的苯甲酸丙酯,然后是三元复合模型,其中丙醇在较高浓度下抑制脂肪酶活性。将催化剂的再循环性检查过四至四个催化循环,并观察到40%的活性保留至第四个循环。最后,探讨了开发方案合成各种烷基苯甲酸盐的适用性。

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