节点文献
Parameter Optimization for Enhancement of Ethanol Yield by Atmospheric Pressure DBD-Treated Saccharomyces cerevisiae
【摘要】 In this study, Saccharomyces cerevisiae(S. cerevisiae) was exposed to dielectric barrier discharge plasma(DBD) to improve its ethanol production capacity during fermentation. Response surface methodology(RSM) was used to optimize the discharge-associated parameters of DBD for the purpose of maximizing the ethanol yield achieved by DBD-treated S. cerevisiae. According to single factor experiments, a mathematical model was established using Box-Behnken central composite experiment design, with plasma exposure time, power supply voltage, and exposed-sample volume as impact factors and ethanol yield as the response. This was followed by response surface analysis. Optimal experimental parameters for plasma dischargeinduced enhancement in ethanol yield were plasma exposure time of 1 min, power voltage of 26 V, and an exposed sample volume of 9 mL. Under these conditions, the resulting yield of ethanol was 0.48 g/g, representing an increase of 33% over control.
【Abstract】 In this study, Saccharomyces cerevisiae(S. cerevisiae) was exposed to dielectric barrier discharge plasma(DBD) to improve its ethanol production capacity during fermentation. Response surface methodology(RSM) was used to optimize the discharge-associated parameters of DBD for the purpose of maximizing the ethanol yield achieved by DBD-treated S. cerevisiae. According to single factor experiments, a mathematical model was established using Box-Behnken central composite experiment design, with plasma exposure time, power supply voltage, and exposed-sample volume as impact factors and ethanol yield as the response. This was followed by response surface analysis. Optimal experimental parameters for plasma dischargeinduced enhancement in ethanol yield were plasma exposure time of 1 min, power voltage of 26 V, and an exposed sample volume of 9 mL. Under these conditions, the resulting yield of ethanol was 0.48 g/g, representing an increase of 33% over control.
【Key words】 dielectric barrier discharge(DBD) plasma at atmospheric pressure; ethanol yield; response surface methodology(RSM); Saccharomyces cerevisiae;
- 【文献出处】 Plasma Science and Technology ,等离子体科学和技术(英文版) , 编辑部邮箱 ,2014年01期
- 【分类号】O539;Q937
- 【被引频次】3
- 【下载频次】52