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Optimization of fermentation condition favoring butanol production from glycerol by Clostridium pasteurianum DSM 525

机译:巴氏梭菌DSM 525优化了有利于甘油生产丁醇的发酵条件

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Butanol is a promising biofuel and valuable platform chemical that can be produced through fermentative conversion of glycerol. The initial fermentation conditions for butanol production from pure glycerol by Clostridium pasteurianum DSM 525 were optimized via a central composite design. The effect of inoculum age, initial cell density, initial pH of medium and temperature were quantified and a quadratic model was able to predict butanol yield as a function of all four investigated factors. The model was confirmed through additional experiments and via analysis of variance (ANOVA). Subsequently, numerical optimization was used to maximize the butanol yield within the experimental range. Based on these results, batch fermentations in a 7 L bioreactor were performed using pure and crude (residue from biodiesel production) glycerol as substrates at optimized conditions. A butanol yield of 0.34 mole(butanol) mole(glycerol)(1) was obtained indicating the suitability of this feedstock for fermentative butanol production. (C) 2016 Elsevier Ltd. All rights reserved.
机译:丁醇是一种有前途的生物燃料和有价值的平台化学品,可以通过甘油的发酵转化来生产。通过中央复合设计优化了巴氏梭菌DSM 525从纯甘油生产丁醇的初始发酵条件。定量了接种物的年龄,初始细胞密度,培养基的初始pH和温度的影响,并且二次模型能够预测丁醇产量,这是所有四个研究因素的函数。通过其他实验和方差分析(ANOVA)确认了该模型。随后,使用数值优化在实验范围内最大化丁醇收率。基于这些结果,在7 L生物反应器中分批发酵使用纯甘油和粗甘油(来自生物柴油生产的残留物)作为底物,并在优化条件下进行。得到的丁醇收率为0.34摩尔(丁醇)摩尔(甘油)(1),表明该原料适合于发酵丁醇生产。 (C)2016 Elsevier Ltd.保留所有权利。

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