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Kinetic aspects of ultrasound-accelerated lipase catalyzed acetylation and optimal synthesis of 4′-acetoxyresveratrol

机译:Kinetic aspects of ultrasound-accelerated lipase catalyzed acetylation and optimal synthesis of 4′-acetoxyresveratrol

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摘要

Ultrasonic assistance of lipase (Candida antarctica ; Novozym® 435) catalyzed synthesis of 4′-acetoxyresveratrol from resveratrol and vinyl acetate was investigated. Response surface methodology and a three-level-three-factor Box-Behnken design were adopted to evaluate the effects of synthesis variables, including reaction time (4–12 h), enzyme amount (2500–4500 PLU), and ultrasonic power (90–150 W) on the percentage molar conversion of 4′-acetoxyresveratrol. Based on ridge max analysis, the optimum conditions for synthesis were: reaction time 10.78 h, enzyme amount 5492 PLU, and ultrasonic power 147.8 W. With ultrasound assistance, not only the phenolic compound acetylation time decreased, but also a high yield (95.2%) was achieved. The reaction kinetic model agreed with Ping–Pong mechanism, and the apparent kinetic constant View the MathML source ratio related to enzyme performance was 2.4 times higher in the ultrasound-assisted reaction than in the mechanical-mixing reaction. The apparent kinetic constant K2 indicated that ultrasound enhanced the vinyl acetate affinity to the enzyme. The simplified Ping–Pong kinetic model was employed to simulate 4′-acetoxyresveratrol production in batch reaction. It was found that a good prediction existed between the fitting results and the experimental data.
机译:研究了脂肪酶的超声辅助作用(南极洲Candida; 435),由白藜芦醇和乙酸乙烯酯催化合成4'-乙酰氧基白藜芦醇。采用响应面方法和三级三因素Box-Behnken设计来评估合成变量的影响,包括反应时间(4-12 h),酶量(2500-4500 PLU)和超声功率(90 –150 W)的4'-乙酰氧基白藜芦醇摩尔转化率百分比。根据ridge max分析,合成的最佳条件为:反应时间10.78 h,酶量5492 PLU和超声功率147.8W。在超声辅助下,不仅酚类化合物的乙酰化时间缩短,而且收率高(95.2% ) 已实现。反应动力学模型与乒乓机制相符,与酶性能有关的表观动力学常数在超声辅助反应中比在机械混合反应中高2.4倍。表观动力学常数K2表明超声增强了乙酸乙烯酯对酶的亲和力。简化的Ping-Pong动力学模型用于模拟间歇反应中4'-乙酰氧基白藜芦醇的产生。发现拟合结果与实验数据之间存在良好的预测。

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