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A water-dependent kinetics guide for complex lipase-mediated synthesis of biolubricants in a water activity control reactor

机译:水脂肪酶介导的水活性控制反应器中生物润滑剂合成的水依赖性动力学指南

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摘要

A water-dependent kinetic model for a lipase-mediated reaction with multiple substrates and products in a water activity control reactor was developed. Solvent-free esterification of trimethylolpropane (TMP), the products of which can be used as biolubricants, was investigated using a lipase from Candida sp. 99-125 as catalyst under variable water activities in a 5 L batch stirred tank reactor. Water activity control was accomplished at the set point by introduction of dry air through the reaction medium at a digital feedback-controlled flow rate. For the cases of esterification of TMP, long-term (>72 h) control of water activity resulted in a considerable improvement of yield. By introducing progressive water removal and combining principles with an intrinsic kinetic model of the Ping-Pong Bi-Bi mechanism, the integrated model can predict both the forward and reverse rates for TMP reactions. Kinetic parameters depending on the water activity were estimated by nonlinear regression fitting of experimental data. The proposed approach not only enables optimization of the reaction under defined conditions, but also provides a solution for industrial upscaling of similar environmentally friendly biocatalytic processes.
机译:开发了用于水活性控制反应器中脂肪酶介导的反应的水依赖性动力学模型。三甲基丙烷(TMP)的无溶剂酯化,其产物可用作生物润滑剂,使用念珠菌SP的脂肪酶进行了研究。 99-125作为在5 L批次搅拌罐反应器中可变的水活动下作为催化剂。通过以数字反馈控制的流速,通过反应介质引入干空气来在设定点完成水活性控制。对于TMP酯化的病例,长期(> 72 h)对水活动的控制导致产量的大幅提高。通过引入渐进的水去除和将原理与乒乓球机制的内在动力学模型相结合,综合模型可以预测TMP反应的正向和反向速率。通过非线性回归拟合实验数据来估计动力学参数。所提出的方法不仅可以在定义条件下优化反应,而且还提供了一种解决方案,用于对类似环保的生物催化过程进行工业升级。

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