Graduate School of Biotechnology and Bioengineering, Yuan Ze University, Chung-Li, Taoyuan, 320, Taiwan.
Department of Chemical Engineering, National Cheng Kung University, Tainan City, 701, Taiwan.
Appl Biochem Biotechnol. 2020 May;191(1):346-359. doi: 10.1007/s12010-019-03208-6. Epub 2019 Dec 20.
1,3-Propanediol (1,3-PDO) has numerous industrial applications in the synthesis of the monomer of the widely used fiber polytrimethylene terephthalate. In this work, the production of 1,3-PDO by Klebsiella pneumoniae is increased by dual-substrate cultivation and fed-batch fermentation. Experimental results indicate that the production of 1,3-PDO can be elevated to 16.09 g/L using a dual substrate ratio (of glucose to crude glycerol) of 1/30 and to 20.73 g/L using an optimized dual-substrate ratio of 1/20. Ultimately, the optimal dual-substrate feeding for a 5 L scale fed-batch fermenter that maximizes 1,3-PDO production (29.69 g/L) is determined. This production yield is better than that reported in most related studies. Eventually, the molecular weight and chemical structure of 1,3-PDO were obtained by FAB-MS, H-NMR, and C-NMR. Also, in demonstrating the effectiveness of the fermentation strategy in increasing the production and production yield of 1,3-PDO, experimental results indicate that the fermentation of 1,3-PDO is highly promising for commercialization.
1,3-丙二醇(1,3-PDO)在广泛使用的纤维聚对苯二甲酸丙二醇酯的单体合成中具有众多工业应用。在这项工作中,通过双底物培养和分批补料发酵来提高肺炎克雷伯氏菌生产 1,3-PDO 的能力。实验结果表明,使用葡萄糖与粗甘油的双底物比(1/30),可以将 1,3-PDO 的产量提高到 16.09 g/L,使用优化的双底物比(1/20),可以将产量提高到 20.73 g/L。最终,确定了最佳的双底物进料方式,用于最大化 1,3-PDO 产量(29.69 g/L)的 5 L 规模分批补料发酵罐。该产量优于大多数相关研究中的报道。最终,通过 FAB-MS、H-NMR 和 C-NMR 获得了 1,3-PDO 的分子量和化学结构。此外,实验结果表明,分批补料发酵策略在提高 1,3-PDO 的产量和生产效率方面非常有效,1,3-PDO 的发酵具有很高的商业化前景。