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Improved operating policy utilizing aerobic operation for fermentation process to produce bio-ethanol

机译:利用好氧操作进行发酵以生产生物乙醇的改进操作策略

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摘要

To enhance the productivity of the alcohol fermentation process, combined aerobic and anaerobic fed-batch operation could improve the growth of microbes and also achieve better alcohol production because of well-utilizing the characteristics of the microbial metabolism. Using a realistic model fitted from experimental data, result shows that the highest productivity can be achieved using a proposed fed-batch operation with high glucose concentration. The proposed operating policy combines an initial aerobic operation to increase the biomass formation in the early phase of the fed-batch operation and then followed by the anaerobic operation to accelerate the alcohol production in the later phase. The glucose feeding policy for this optimal fed-batch operation should try to maintain a lower optimal glucose concentration in the fermenter during initial aerobic phase and then to maintain another higher optimal glucose concentration during the next anaerobic phase. Toward the ending of the fed-batch, the glucose concentration in the fermenter should be increased further in order to speed up the productivity of ethanol after the feeding stopped.
机译:为了提高酒精发酵过程的生产率,好氧和厌氧联合分批操作可以改善微生物的生长,并且由于充分利用了微生物代谢的特性,因此可以实现更好的酒精生产。使用根据实验数据拟合的现实模型,结果表明,使用建议的高葡萄糖浓度补料分批操作可以实现最高的生产率。拟议的操作策略结合了初始的有氧操作,以在补料分批操作的早期增加生物质的形成,然后进行厌氧操作,以加快后期的酒精生产。用于这种最佳补料分批操作的葡萄糖补料策略应尝试在初始有氧阶段中维持发酵罐中较低的最佳葡萄糖浓度,然后在下一个厌氧阶段中维持另一个较高的最佳葡萄糖浓度。在分批补料即将结束时,应进一步提高发酵罐中的葡萄糖浓度,以加快停止补料后乙醇的生产率。

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