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Dynamics of inhibition patterns during fermentation processes-Zea Mays and Sorghum Bicolor case study

机译:发酵过程中抑制模式的动态 - Zea Mays和高粱双色案例研究

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Recently ethanol production involved the processing and fermentation of sorghum and maize extracts. Sorghum and maize are cheaper, locally available and a substitute to imported barley malt. Large scale ethanol fermentation systems are usually hampered by instability, in the form of oscillations resulting from ethanol inhibition and the lag response of yeast cells to this inhibition. There is limited information regarding the mathematical nature of such inhibitions in the fermentation of sorghum and maize extracts. In the present work, mathematical models are developed to determine the nature of ethanol inhibition during the fermentation of sorghum and maize extracts. The models were sets of coupled ordinary differential equations based on a Monod type cell growth kinetic model that accounts for product inhibition. The Inhibition patterns considered were; Linear, Sudden Growth Stop and Exponential. The results obtained showed that there is product inhibition during ethanol fermentation using sorghum extracts, with inhibition patterns being Linear and Exponential. However, the results obtained from ethanol fermentation of maize extract also showed that there is product inhibition during ethanol fermentation using maize extracts, with inhibition patterns being Linear and Sudden Growth Stop. The obtained models described with high accuracy, 99% Confidence Interval the dynamics of substrate utilization, product formation and cell growth. These inhibitions which affect the high ethanol yields can be minimized by setting up an optimal control problem using the developed models and solved to determine the control variables that minimize the effect of such inhibitions during the fermentation of sorghum and maize extracts.
机译:最近乙醇生产涉及高粱和玉米提取物的加工和发酵。高粱和玉米更便宜,当地可用,替代进口大麦麦芽。大规模的乙醇发酵系统通常由不稳定性受到阻碍,以乙醇抑制导致酵母细胞对该抑制的滞后响应产生的振荡形式。有关高粱和玉米提取物发酵中这种抑制的数学性质的信息有限。在本作本作中,开发了数学模型以确定高粱和玉米提取物中乙醇抑制性质的性质。该模型是基于Monod型细胞生长动力学模型的耦合常微分方程的组,该模型考虑了产品抑制。考虑的抑制模式是;线性,突然生长停止和指数。得到的结果表明,使用高粱提取物在乙醇发酵过程中存在产品抑制,抑制图案是线性和指数的。然而,从玉米提取物的乙醇发酵获得的结果也表明,使用玉米提取物在乙醇发酵过程中存在产物抑制,抑制图案是线性和突然生长的止动。所获得的模型以高精度描述,置信区间隔99%的置信区间利用,产品形成和细胞生长。通过使用开发的模型建立最佳控制问题并解决以确定最小化高粱和玉米提取物在发酵期间的控制变量,可以最小化影响高乙醇产率的抑制。

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