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Optimized pH and Its Control Strategy Lead to Enhanced Itaconic Acid Fermentation by Aspergillus terreus on Glucose Substrate

机译:优化的pH值及其控制策略可提高葡萄糖底物上曲霉曲霉对衣康酸的发酵能力

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Biological itaconic acid production can by catalyzed by Aspergillus terreus (a filamentous fungi) where the fermentation medium pH is of prominent importance. Therefore, in this work, we investigated what benefits the different pH regulation options might offer in enhancing the process. The batch itaconic acid fermentation data underwent a kinetic analysis and the pH control alternatives were ranked subsequently. It would appear that the pH-shift strategy (initial adjustment of pH to 3 and its maintenance at 2.5 after 48 h) resulted in the most attractive fermentation pattern and could hence be recommended to achieve itaconic acid production with an improved performance using A. terreus from carbohydrate, such as glucose. Under this condition, the itaconic acid titer potential, the maximal itaconic acid (titer) production rate, the length of lag-phase and itaconic acid yield were 87.32 g/L, 0.22 g/L/h, 56.04 h and 0.35 g/g glucose, respectively.
机译:衣康曲霉(一种丝状真菌)可催化生物衣康酸的产生,其中发酵培养基的pH值非常重要。因此,在这项工作中,我们研究了不同的pH调节选项可能会在增强工艺方面带来哪些好处。批量衣康酸发酵数据进行了动力学分析,随后对pH控制替代品进行了排名。似乎pH转移策略(将pH初始调整为3,并在48小时后维持在2.5的条件下)导致了最具吸引力的发酵模式,因此可以建议使用土曲霉获得具有改进性能的衣康酸生产来自碳水化合物,例如葡萄糖。在此条件下,衣康酸滴度电势,最大衣康酸(滴定度)产生率,滞后相长度和衣康酸产量分别为87.32 g / L,0.22 g / L / h,56.04 h和0.35 g / g葡萄糖。

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