Influence of Stirring Speed on Glucose and Ethanol Production in Simultaneous Saccharification and Fermentation Process

T. Palniandy, A. I. Nafsun, N. Mohd Jamil, F. Herz, N. Azmi, M. H. Muhammad Zaki
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引用次数: 2

Abstract

Lignocellulosic biomass has a potential to be coverted to bioethanol which can be a new alternative for fossil fuel. Empty fruit bunches (EFB) is one of the most abundant lignocellulosic biomass in Malaysia, which has high content of cellulose and posses favorable physiochemical characteristics for bioethanol production via a process called simultaneous saccharification and fermentation (SSF). In SSF process, the reaction is initiated by diffusion and consolidation of the enzyme and its substrate. Thus, optimum stirring speed is crucial, as diffusion rate of substrates is influenced by the agitation of reaction mixture. The influence of stirring speed on the glucose and ethanol concentration in SSF process was investigated in the current study.  Initially, 5 % (g/ml) of pretreated EFB in 1.5 liter of 0.05 M buffer citrate pH 4.8 were sterilized in autoclave at 121°C for 20 minutes. Then, enzyme Cellic Ctec-2 solution with concentration (1%) were added together with 1.5% (g/ml) Saccharomyces cerevisiae yeast in the bioreactor. The process was conducted in the bioreactor under temperature of 37°C with stirring speed of 100 rpm for 72 hours. SSF process experiments were repeated with the same setup except by varying the stirring speed (150 and 200 rpm) independently. From the results, the glucose concentration and ethanol yield of 200 rpm indicated less concentration in every 24 hours compared to 150 rpm and 100 rpm. The stirring speed of 150 rpm shows the highest glucose concentration (1.914 mg/ml) and ethanol yield (16%) obtained after 72 hours and determined as the best stirring speed for this experiment.
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搅拌速度对糖化发酵过程中葡萄糖和乙醇产量的影响
木质纤维素生物质具有转化为生物乙醇的潜力,可以成为化石燃料的新替代品。空果束(EFB)是马来西亚最丰富的木质纤维素生物质之一,其纤维素含量高,具有通过同时糖化和发酵(SSF)过程生产生物乙醇的有利理化特性。在SSF过程中,反应是由酶及其底物的扩散和巩固引起的。因此,最佳搅拌速度是至关重要的,因为底物的扩散速率受到反应混合物搅拌的影响。研究了搅拌速度对SSF过程中葡萄糖和乙醇浓度的影响。首先,5% (g/ml)预处理的EFB在1.5升0.05 M柠檬酸缓冲液pH 4.8中,在121℃的高压灭菌器中灭菌20分钟。然后,在生物反应器中加入浓度为(1%)的celllic Ctec-2酶溶液和1.5% (g/ml)的酿酒酵母。该工艺在生物反应器中进行,温度37℃,搅拌速度100 rpm,搅拌72小时。除单独改变搅拌速度(150和200 rpm)外,在相同的设置下重复SSF过程实验。结果表明,与150 rpm和100 rpm相比,200 rpm的葡萄糖浓度和乙醇产量每24小时的浓度更低。搅拌速度为150 rpm, 72h后葡萄糖浓度最高(1.914 mg/ml),乙醇得率最高(16%),确定为本实验的最佳搅拌速度。
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