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首页> 外文期刊>Journal of the American Oil Chemists' Society >Enzymatic glyceride synthesis in a foam reactor
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Enzymatic glyceride synthesis in a foam reactor

机译:泡沫反应器中酶促甘油酯的合成

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We report the results of our study on Rhizomucor miehei lipase-catalyzed lauric acid-glycerol esterification in a foam reactor. A satisfactory yield of glyceride synthesis can be achieved with an unusually high initial water content (50% w/w). We found that product formation could be regulated by controlling foaming. Foaming was a function of the air flow rate, reaction temperature, pH value, ionic strength, and substrate molar ratio. Monolaurin and dilaurin, which constituted nearly 80% of the total yield, were the two dominant products in this reaction; trilaurin was also formed at the initial stages of the reaction. A study of pH and ionic strength effects on an independent basis revealed that they affect the interfacial mechanism in different manners. On varying the ratio of lauric acid and glycerol, only a slight change in the degree of conversion was detected and the consumption rate of fatty acid was approximately the same. [References: 40]
机译:我们报告了我们的研究结果,在泡沫反应器中,Rhizomucor miehei脂肪酶催化的月桂酸-甘油酯化。异常高的初始水含量(50%w / w)可以实现令人满意的甘油酯合成收率。我们发现可以通过控制发泡来调节产品的形成。发泡是空气流速,反应温度,pH值,离子强度和底物摩尔比的函数。占总收率近80%的一月桂酸酯和二月桂酸酯是该反应的两个主要产物。在反应的初始阶段也形成了三月桂酸酯。对pH和离子强度影响的独立研究表明,它们以不同的方式影响界面机理。在改变月桂酸和甘油的比例时,仅检测到转化度的微小变化,并且脂肪酸的消耗速率大致相同。 [参考:40]

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