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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Mathematical modeling of continuous ethanol fermentation in a membrane bioreactor by pervaporation compared to conventional system: Genetic algorithm
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Mathematical modeling of continuous ethanol fermentation in a membrane bioreactor by pervaporation compared to conventional system: Genetic algorithm

机译:与常规系统相比,渗透蒸发法在膜生物反应器中连续乙醇发酵的数学模型:遗传算法

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In this paper, genetic algorithm was used to investigate mathematical modeling of ethanol fermentation in a continuous conventional bioreactor (CCBR) and a continuous membrane bioreactor (CMBR) by ethanol permselective polydimethylsiloxane (PDMS) membrane. A lab scale CMBR with medium glucose concentration of 100 g L (1) and Saccharomyces cerevisiae microorganism was designed and fabricated. At dilution rate of 0.14 h (1), maximum specific cell growth rate and productivity of 0.27 h (1) and 6.49 g L (1) h (1) were respectively found in CMBR. However, at very high dilution rate, the performance of CMBR was quite similar to conventional fermentation on account of insufficient incubation time. In both systems, genetic algorithm modeling of cell growth, ethanol production and glucose concentration were conducted based on Monod and Moser kinetic models during each retention time at unsteady condition. The results showed that Moser kinetic model was more satisfactory and desirable than Monod model. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在本文中,遗传算法被用于研究乙醇选择性渗透聚二甲基硅氧烷(PDMS)膜在连续常规生物反应器(CCBR)和连续膜生物反应器(CMBR)中乙醇发酵的数学模型。设计并制备了中等规模的葡萄糖浓度为100 g L的实验室规模CMBR(1)和酿酒酵母微生物。在0.14 h(1)的稀释速率下,在CMBR中分别发现最大比细胞生长速率和0.27 h(1)和6.49 g L(1)h(1)的生产率。然而,由于孵育时间不足,在极高的稀释率下,CMBR的性能与常规发酵非常相似。在这两个系统中,在非稳态条件下的每个保留时间内,均基于Monod和Moser动力学模型对细胞生长,乙醇产量和葡萄糖浓度进行了遗传算法建模。结果表明,Moser动力学模型比Monod模型更令人满意和令人满意。 (C)2016 Elsevier Ltd.保留所有权利。

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