Batch Fermentation of Bioethanol from the Residues of Elaeis guineensis: Optimization and Kinetics Evaluation

M. Samsudin, M. M. Don
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引用次数: 7

Abstract

Bioethanol was produced by Saccharomyces cerevisiae using oil palm trunk (OPT) sap supplemented with the palm oil mill effluent (POME) in a shake flask culture. Four variables namely OPT sap to POME ratio, inoculum size, pH and incubation time were chosen to investigate their effects on production of bioethanol using the One-Factor-at-a-Time (OFAT) method. The optimum process conditions were found to be at OPT sap to POME ratio of 30:20 and inoculum size of 4% v/v. The fermentation process exhibited better result in slightly basic media. The bioethanol concentration at the optimum condition was 12.52 g/l which equal to bioethanol yield of 44% g/g after four days of fermentation. It was found that the cell growth followed a sigmoidal trend. Logistic model, Luedeking-Piret model and Luedeking-Piret-like model were chosen and validated to describe the behavior of dry weight of the biomass, bioethanol production and glucose consumption, respectively. All selected models fitted well to experimental data, proven by high R values (>0.9) and low RMSE values. 2
利用几内亚Elaeis渣分批发酵生物乙醇:优化及动力学评价
以油棕榈树干(OPT)汁液和棕榈油厂废水(POME)为原料,在摇瓶培养中制备生物乙醇。采用单因子-一次法(one - factor -at- time, OFAT)研究了OPT液与POME比、接种量、pH和孵育时间4个变量对生物乙醇生产的影响。最佳工艺条件为OPT液与POME比为30:20,接种量为4% v/v。微碱性培养基发酵效果较好。最适条件下的生物乙醇浓度为12.52 g/l,发酵4天后的生物乙醇产量为44% g/g。结果表明,细胞生长呈s型曲线。选择Logistic模型、Luedeking-Piret模型和Luedeking-Piret-like模型分别描述生物质干重、生物乙醇产量和葡萄糖消耗的行为并进行验证。所选模型与实验数据拟合良好,R值高(>0.9),RMSE值低。2
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