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首页> 外文期刊>Biochemical Engineering Journal >Modelling of immobilized Candida rugosa lipase catalysed esterification process in batch reactor equipped with temperature and water activity control system
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Modelling of immobilized Candida rugosa lipase catalysed esterification process in batch reactor equipped with temperature and water activity control system

机译:固定化念珠菌脂肪酶催化酯化工艺的固定化念珠菌催化作用,配备温度和水活性控制系统

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摘要

The present work reports on the first principle modeling for the esterification of citronellol and lauric acid using immobilized Candida rugosa lipase in a batch reactor equipped with a temperature and water activity control system. The first principle model for this process was constructed by deriving mass and energy balances equations. Experiments were conducted to determine the kinetic parameters for the esterification of citronellyl laurate and the results were validated using the experimental data. An ordered bi-bi kinetic model was developed by taking into account the inhibition effects of lauric acid as well as the effect of temperature. Moreover, an additional kinetic constant due to the presence of water as a by-product in the reaction system was also verified. Based on the first principle model developed, the parameters of the esterification reaction kinetics were determined using non-linear regression analysis in the MATLAB software. The kinetic model was validated by comparing the profiles between the simulated and the experimental studies in different operating conditions of the reaction. Subsequently, the validated kinetic model was implemented in the first principle model, and simulation studies were conducted using the MATLAB (R) software. Based on the profiles of acid conversion, reactor temperature and water activity, these models can capture the reaction behaviour with the R-2 values of 95.72 %, 84.75 % and 97.67 %, respectively.
机译:目前的工作报告了在配备有温度和水活性控制系统的批量反应器中使用固定化的CITRIVELOL和月桂酸酯化的第一个原理建模。通过推导质量和能量余额方程来构建该过程的第一个原理模型。进行实验以确定酯化酸盐丙酸盐的酯化的动力学参数,并使用实验数据验证结果。通过考虑月桂酸的抑制作用以及温度的影响,开发了一个有序的BI-BI动力学模型。此外,还验证了在反应体系中作为副产物存在的额外动力常数。基于开发的第一原理模型,在MATLAB软件中使用非线性回归分析确定酯化反应动力学的参数。通过将模拟和实验研究之间的谱进行比较在反应的不同操作条件下,通过对动力学模型进行验证。随后,在第一个原理模型中实施了验证的动力学模型,并使用MATLAB(R)软件进行了仿真研究。基于酸转化,反应器温度和水活性的谱,这些模型可以分别捕获95.72%,84.75%和97.67%的R-2值的反应行为。

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