Departament de Microbiologia i Parasitologia Sanitàries. Facultat de Farmàcia, Universitat de Barcelona, Av. Joan XXIII s/n, 08028, Barcelona, Spain,
Appl Microbiol Biotechnol. 2014 Dec;98(23):9609-21. doi: 10.1007/s00253-014-5996-9. Epub 2014 Sep 6.
We modelled the production of hydroxy fatty acids from oleic acid by Pseudomonas aeruginosa 42A2 in a bioreactor with a non-dispersive aeration system. First, we designed an adapted wetted-wall gas-absorption column, offering a k La value of 39.9 h(-1), to enhance oxygen absorption in the culture media and prevent foam formation. Then, we analysed different kinetic models to simulate the yield coefficients and the kinetic constants in this bacterial transformation. Monod model fitting (μ max1 = 0.51 h(-1), K S1 = 1.60 C-mol l(-1), μ max2 = 0.12 h(-1), K S2 = 0.035 C-mol l(-1), and k 2 = 0.033 h(-1)) showed a good accuracy with the experimental data sets and was chosen for its simplicity. Lastly, mass balances were carried out to establish the stoichiometry of this biotransformation with the following yield coefficients, Υ X/OA, Υ X/(10S)-HPOME and Υ (10S)-HPOME/(7S10S)-HPOME of 0.172, 0.347 and 2.388 C-mol C-mol(-1), respectively.
我们使用非分散式曝气系统在生物反应器中模拟铜绿假单胞菌 42A2 从油酸生产羟基脂肪酸。首先,我们设计了一个适应的湿壁气体吸收柱,提供 39.9 h(-1)的 k La 值,以增强培养介质中的氧气吸收并防止泡沫形成。然后,我们分析了不同的动力学模型来模拟这种细菌转化中的产率系数和动力学常数。Monod 模型拟合(μ max1 = 0.51 h(-1),KS1 = 1.60 C-mol l(-1),μ max2 = 0.12 h(-1),KS2 = 0.035 C-mol l(-1),k2 = 0.033 h(-1))与实验数据集具有很好的拟合精度,因其简单性而被选择。最后,进行质量平衡以确定该生物转化的化学计量,得到以下产率系数,Υ X/OA、Υ X/(10S)-HPOME 和 Υ(10S)-HPOME/(7S10S)-HPOME 分别为 0.172、0.347 和 2.388 C-mol C-mol(-1)。