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首页> 外文期刊>Applied Biochemistry and Biotechnology >Application of Response Surface Method for Studying the Role of Dissolved Oxygen and Agitation Speed on Gamma-Linolenic Acid Production
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Application of Response Surface Method for Studying the Role of Dissolved Oxygen and Agitation Speed on Gamma-Linolenic Acid Production

机译:响应面法在研究溶解氧和搅拌速度对γ-亚麻酸生产中的作用中的应用

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To study the effect of agitation speed (rpm) and dissolved oxygen concentration (DO) on the production of gamma linolenic acid by Mucor sp. RRL001, a central composite design experiment was performed in a 5-L stirred tank bioreactor. The design consisted of a total of 10 runs consisting of runs at five levels for each factor and was divided in two blocks. The ANOVA analysis and Pareto chart of effects suggested agitation speed (p = 0.0142) linear effect and DO concentration (p = 0.0342) quadratic effects were significant factors with significant contribution to the response. The validation run based on the optimum production zone in response surface plot resulted in the maximum 350.3 mg l?1 GLA yield as compared with model predicted value of 340.7 mg l?1. The study suggests that agitation rate is having more pronounced effect on GLA yield than dissolved oxygen concentration by ensuring enhanced mass transfer and by preventing wall growth at elevated agitation speed. Also, it shows that higher GLA yields can be obtained in a simple medium at moderate oxygen saturation and that the Mucor sp. RRL001 is resistant to high agitation linked shear stress and suitable for GLA production at higher scale.
机译:研究搅拌速度(rpm)和溶解氧浓度(DO)对Mucor sp。生产γ亚麻酸的影响。 RRL001是一项中央复合设计实验,是在5升搅拌釜生物反应器中进行的。该设计总共包括10个运行,每个因素在五个级别上运行,并分为两个模块。方差分析和帕累托效应图表明,搅拌速度(p = 0.0142)线性效应和溶解氧浓度(p = 0.0342)二次效应是影响响应的重要因素。与响应模型的预测值340.7 mg l?1 相比,基于响应曲面图上的最佳生产区进行的验证得出最大的GLA产量为350.3 mg l?1 。该研究表明,搅拌速率通过确保增强的传质和防止搅拌速度加快时壁的生长,对GLA产量的影响比溶解氧浓度更为明显。而且,它表明在中等氧饱和度的简单培养基中可以获得更高的GLA产量,并且Mucor sp。。 RRL001具有抗高搅拌性剪切应力的能力,适合大规模生产GLA。

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