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首页> 外文期刊>Folia microbiologica >Effect of caffeine concentration on biomass production, caffeine degradation, and morphology of Aspergillus tamarii.
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Effect of caffeine concentration on biomass production, caffeine degradation, and morphology of Aspergillus tamarii.

机译:咖啡因浓度对塔马里曲霉生物量产生,咖啡因降解和形态的影响。

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The aim of the present study was to evaluate the effect of the initial caffeine concentration (1-8 g/L) on growth and caffeine consumption by Aspergillus tamarii as well as pellet morphology, in submerged fermentation. Caffeine was used as sole nitrogen source. At 1 g/L of initial caffeine concentration, caffeine degradation was not affected, resulting in a production of 8.7 g/L of biomass. The highest biomass production (12.4-14.8 g/L) was observed within a range of 2 to 4 g/L of initial caffeine concentration. At these initial caffeine concentrations, after 96 h of fermentation, 41-51% of the initial caffeine was degraded. Using an initial caffeine concentration of 2-3 g/L, the highest specific growth rate was observed ( micro =0.069 1/h). Biomass production decreased at 8 g/L of initial caffeine concentration. A. tamarii formed mainly pellets at all concentrations tested. The size of the pellet decreased at a caffeine concentration of 8 g/L.
机译:本研究的目的是评估淹没式发酵过程中初始咖啡因浓度(1-8 g / L)对塔玛曲霉的生长和咖啡因消耗以及颗粒形态的影响。咖啡因被用作唯一的氮源。在初始咖啡因浓度为1 g / L时,咖啡因的降解不受影响,导致产生8.7 g / L的生物质。在初始咖啡因浓度的2至4 g / L范围内观察到最高的生物量生产(12.4-14.8 g / L)。在这些初始咖啡因浓度下,发酵96小时后,初始咖啡因的降解率为41-51%。使用2-3 g / L的初始咖啡因浓度,观察到最高的比生长速率(micro = 0.069 1 / h)。初始咖啡因浓度为8 g / L时,生物量产量下降。 tamarii形成的主要颗粒是在所有测试浓度下的颗粒。当咖啡因浓度为8 g / L时,沉淀物的尺寸减小。

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