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Optimization of fermentation conditions for 1,3-propanediol production by marine Klebsiella pneumonia HSL4 using response surface methodology

机译:Optimization of fermentation conditions for 1,3-propanediol production by marine Klebsiella pneumonia HsL4 using response surface methodology

摘要

The industrially important organic compound 1,3-propanediol (1,3-PDO) is mainly used as a building block for the production of various polymers. In the present study, response surface methodology protocol was followed to determine and optimize fermentation conditions for the maximum production of 1,3-PDO using marine-derived Klebsiella pneumoniae HSL4. Four nutritional supplements together with three independent culture conditions were optimized as follows: 29.3 g/L glycerol, 8.0 g/L K-2 HPO4, 7.6 g/L (NH4)(2) SO4, 3.0 g/L KH2 PO4, pH 7.1, cultivation at 35A degrees C for 12 h. Under the optimal conditions, a maximum 1,3-PDO concentration of 14.5 g/L, a productivity of 1.21 g/(L center dot h) and a conversion of glycerol of 0.49 g/g were obtained. In comparison with the control conditions, fermentation under the optimized conditions achieved an increase of 38.8% in 1,3-PDO concentration, 39.0% in productivity and 25.7% in glycerol conversion in flask. This enhancement trend was further confirmed when the fermentation was conducted in a 5-L fermentor. The optimized fermentation conditions could be an important basis for developing lowcost, large-scale methods for industrial production of 1,3-PDO in the future.
机译:工业上重要的有机化合物1,3-丙二醇(1,3-PDO)主要用作生产各种聚合物的基础。在本研究中,遵循了响应表面方法协议,使用海洋衍生的肺炎克雷伯菌肺炎克雷伯菌HSL4来确定和优化发酵条件,以最大程度地生产1,3-PDO。对四种营养补品以及三种独立的培养条件进行了如下优化:29.3 g / L甘油,8.0 g / L K-2 HPO4、7.6 g / L(NH4)(2)SO4、3.0 g / L KH2 PO4,pH 7.1 ,在35A摄氏度下培养12小时。在最佳条件下,最大1,3-PDO浓度为14.5 g / L,生产率为1.21 g /(L中心点h),甘油转化率为0.49 g / g。与对照条件相比,优化条件下的发酵在烧瓶中的1,3-PDO浓度提高了38.8%,生产率提高了39.0%,甘油转化率提高了25.7%。当在5-L发酵罐中进行发酵时,进一步证实了这种增强趋势。优化的发酵条件可能是将来开发低成本,大规模工业生产1,3-PDO的重要基础。

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