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Optimization of lipase-catalyzed synthesis of octyl hydroxyphenylpropionate by response surface methodology

机译:响应面法优化脂肪酶催化羟苯丙酸辛酯的合成

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摘要

The ability of immobilized lipase Candida antarctica (Novozyme 435) to catalyze the direct esterification of hydroxyphenylpropionic acid and octanol in a solvent-free system was investigated in this study. Response surface methodology (RSM) and five-level-four-factor central composite rotatable design (CCRD) were employed to evaluate the effects of synthesis parameters, such as reaction time, temperature, enzyme amount, and pH memory, on percentage molar conversion of phenolic acid esters. Reaction time, temperature, and enzyme amount were the most important variables. On the basis of canonical analysis and ridge max analysis, the optimum synthesis conditions with 95.9% molar conversion were reaction time of 58.2 h, temperature of 52.9 degreesC, enzyme amount of 37.8% (w/w), and pH memory of pH 7.
机译:本研究研究了固定化脂肪酶南极假丝酵母(Novozyme 435)在无溶剂体系中催化羟苯基丙酸和辛醇直接酯化的能力。采用响应面分析法(RSM)和五级四因子中心复合材料可旋转设计(CCRD)来评估合成参数(如反应时间,温度,酶量和pH值记忆)对甲基丙烯酸盐摩尔转化率的影响。酚酸酯。反应时间,温度和酶量是最重要的变量。在典型分析和最大峰均分析的基础上,摩尔转化率为95.9%的最佳合成条件为反应时间为58.2小时,温度为52.9摄氏度,酶量为37.8%(w / w)和pH值为7。

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