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Combined effects of ultrasound and immobilization protocol on butyl acetate synthesis catalyzed by CALB

机译:超声和固定化方案对CALB催化乙酸丁酯合成的综合影响

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摘要

It is well established that the performance of lipase B from Candida antarctica (CALB) as catalyst for esterification reactions may be improved by the use of ultrasound technology or by its immobilization on styrene-divinylbenzene beads (MCI-CALB). The present research evaluated the synthesis of butyl acetate using MCI-CALB under ultrasonic energy, comparing the results against those obtained using the commercial preparation, Novozym 435. The optimal conditions were determined using response surface methodology (RSM) evaluating the following parameters: reaction temperature, substrate molar ratio, amount of biocatalyst, and added water. The optimal conditions for butyl acetate synthesis catalyzed by MCI-CALB were: Temperature, 48.8 °C; substrate molar ratio, 3.46:1 alcohol: Acid; amount of biocatalyst, 7.5%; and added water 0.28%, both as substrate mass. Under these conditions, 90% of conversion was reached in 1.5 h. In terms of operational stability, MCI-CALB was reused in seven cycles while keeping 70% of its initial activity under ultrasonic energy. The support pore size and resistance are key points for the enzyme activity and stability under mechanical stirring. The use of ultrasound improved both activity and stability because of better homogeneity and reduced mechanical stress to the immobilized system.
机译:众所周知,可以通过使用超声技术或将其固定在苯乙烯-二乙烯基苯珠(MCI-CALB)上来改善南极假丝酵母(CALB)的脂肪酶B作为酯化反应催化剂的性能。本研究评估了在超声波能量下使用MCI-CALB合成乙酸丁酯的效果,并将其结果与使用商业化制备的Novozym 435所得到的结果进行了比较。最佳条件是使用响应面方法(RSM)评估以下参数确定的:反应温度,底物摩尔比,生物催化剂的量和添加的水。 MCI-CALB催化合成乙酸丁酯的最佳条件为:温度48.8°C;底物摩尔比,酒精:酸3.46:1;生物催化剂的量为7.5%;并添加0.28%的水,均作为基材质量。在这些条件下,1.5小时内达到90%的转化率。在操作稳定性方面,MCI-CALB在七个周期内被重复使用,同时在超声波能量下保持其初始活性的70%。载体的孔径和抗性是机械搅拌下酶活性和稳定性的关键点。超声波的使用提高了活性和稳定性,因为它具有更好的均质性和减少了对固定系统的机械应力。

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