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Optimization Of Citric Acid Production By Aspergillus Niger Nrrl 567 Grownin A Column Bioreactor

机译:黑曲霉Nrrl 567 Grownin A柱生物反应器生产柠檬酸的优化

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摘要

Citric acid production using Aspergillus niger NRRL 567 grown on peat moss has been optimized in a column bioreactor using a statistically based method. A 2~3 full factorial design with eight fermentation conditions was applied to evaluate significance on citric acid production and their interactions between variables, where the three independent variables evaluated were aeration rate, bed depth and temperature. Aeration rate and fermentation temperature were identified to be significant variables. Citric acid production markedly increases with aeration rate and fermentation temperature; however, the bed depth of solid substrate showed an insignificant effect on citric acid production. The optimum fermentation condition for citric acid production in a column bioreactor consisted of aeration rate of 0.84 wm, bed depth of 22 cm and fermentation temperature of 32 ℃. Under a given condition, a maximum citric acid production of 120.6 g/l was predicted and matched well with the experimental value of 123.9 g/kg.
机译:使用基于统计的方法,已经在柱生物反应器中优化了使用在泥炭藓上生长的黑曲霉NRRL 567的柠檬酸生产。采用2〜3个全因子设计,在8个发酵条件下,评估柠檬酸生产的重要性及其在变量之间的相互作用,其中三个独立变量是曝气速率,床深度和温度。曝气速率和发酵温度被确定为重要变量。柠檬酸的产生随着曝气速率和发酵温度的增加而明显增加;然而,固体基质的床深度对柠檬酸生产没有显着影响。柱式生物反应器中柠檬酸生产的最佳发酵条件为曝气速率为0.84 wm,床层深度为22 cm,发酵温度为32℃。在给定条件下,最大柠檬酸产量预计为120.6 g / l,与实验值123.9 g / kg很好地匹配。

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