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Effects of oxygen transfer coefficient on dihydroxyacetone production from crude glycerol

机译:氧传递系数对粗甘油生产二羟基丙酮的影响

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摘要

The principal objective of this study was to evaluate the kinetics of dihydroxyacetone production by Gluconobacter frateurii CGMCC 5397 under different oxygen volumetric mass transfer coefficient (kLa) conditions in submerged bioreactors using biodiesel-derived crude glycerol as the carbon source. kLa is a key fermentation parameter for the production of dihydroxyacetone. Cultivations were conducted in baffled- and unbaffled-flask cultures (the kLa values were 24.32 h−1 and 52.05 h−1, respectively) and fed-batch cultures (the kLa values were held at 18.21 h−1, 46.03 h−1, and 82.14 h−1) to achieve high dihydroxyacetone concentration and productivity. The results showed that a high kLa could dramatically increase dihydroxyacetone concentrations and productivities. The baffled-flask culture (with a kLa of 52.05 h−1) favored glycerol utilization and dihydroxyacetone production, and a dihydroxyacetone concentration as high as 131.16 g/L was achieved. When the kLa was set to 82.14 h−1 in the fed-batch culture, the dihydroxyacetone concentration, productivity and yield were 175.44 g/L, 7.96 g/L/h and 0.89 g/g, respectively, all of which were significantly higher than those in previous studies and will benefit dihydroxyacetone industrial production.
机译:这项研究的主要目的是评估使用生物柴油衍生的粗甘油作为碳源,在不同的氧气体积传质系数(kLa)条件下,在不同的氧气体积传质系数(kLa)条件下,费特氏杆菌GGMCC 5397产生二羟基丙酮的动力学。 kLa是生产二羟基丙酮的关键发酵参数。分别在无挡板烧瓶和无挡板烧瓶培养物中进行培养(kLa值分别为24.32h -1 和52.05h -1 )和分批补料培养(kLa值分别保持在18.21 h -1 ,46.03 h -1 和82.14 h -1 )以实现较高的二羟基丙酮浓度和生产率。结果表明,高kLa可以显着提高二羟基丙酮的浓度和生产率。挡板培养( k L a 为52.05 h -1 )有利于甘油利用和二羟基丙酮生产中,二羟基丙酮的浓度高达131.16 g / L。在分批补料培养中将 k L a 设置为82.14h -1 时,二羟基丙酮浓度,生产率和产量分别为175.44 g / L,7.96 g / L / h和0.89 g / g,所有这些都显着高于以前的研究,将对二羟基丙酮的工业生产有利。

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