化学
脂肪酶
单酰甘油脂肪酶
催化作用
甘油
二酰甘油激酶
色谱法
肺表面活性物质
甘油酯
有机化学
动力学
甘油二酯
单甘酯
酶
脂肪酸
生物化学
量子力学
物理
受体
蛋白激酶C
内大麻素系统
作者
George F. Finco,Karina G. Fiametti,Viviane da Silva Lobo,Edson Antônio da Silva,Fernando Palú,João H. C. Wancura,Maria Luiza Fernandes Rodrigues,Alexsandra Valério,J. Vladimir Oliveira
摘要
Abstract Monoacylglycerol (MAG) and diacylglycerol (DAG) are two natural components found in most edible oils and fats. Conventional synthesis of MAG and DAG is usually conducted by glycerolysis of triacylglycerol (TAG) at high temperatures (above 200°C) in the presence of an alkaline catalyst. In this work, the synthesis of MAG and DAG using enzymatic glycerolysis of olive oil was investigated using Tween 80 as surfactant, n ‐butanol as co‐surfactant and the novel lipase in free/liquid formulation Lipozyme TL 100L as catalyst. Experimental design was used to evaluate the effect of enzyme load and reaction temperature on the feedstock conversion. Enzyme load and system temperature were significant variables in the statistical design and the best condition was found at 35°C, 7.5 vol% of Lipozyme TL 100L and glycerol to oil volumetric ratio of 2:1 with conversion of TAG at approximately 98% after 2 h of process. A mathematical model based on the Ping‐Pong Bi‐Bi mechanism was used to describe the reaction kinetics. The model adequately described the behavior of the system and can be a useful tool for the design of reactors in larger scales.
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