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Optimal feed profile for the Rhamnolipid kinetic models by using Tabu search: metabolic view point

机译:使用禁忌搜索的鼠李糖脂动力学模型的最佳饲料概况:代谢观点

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摘要

Rhamnolipids are bio surfactants which are extra-cellular glycolipids composed of l-rhamnose and 3-hydroxyalkanoics. Rhamnolipids are produced through fermentation process by using Pseudomonas sp. as the species. An alteration to the traditional procedures in order to achieve increase in the production of biosurfactants, a numerous process technologies have been adopted in fed batch mode. Fed batch mode facilitates the high production of product by avoiding the substrate or product inhibition line of attack. To overcome the controlling parameters which reduce the product yield, optimal control profiles are designed. In order to develop viable control methods for fed-batch fermentation of Rhamnolipid production, multiple substrate feeding strategies were employed and their efficiencies were compared with different substrates concentration of glucose, nitrogen and phosphorous. The product formation depends upon the substrate feeding strategy and so, the fed-batch fermentation was carried out by using P. aeruginosa providing substrates at manifold rates. With the obtained experimental data, using the kinetic models (logistic equation and by Luedeking Piret), the kinetic parameters were estimated. These kinetic parameters were implemented in tabu search algorithm and this programme was executed in Dev-C++, optimal control profiles were generated as a result. These obtained optimal control profiles have shown an increase in productivity of rhamnolipid with a decline in computational time. Through this procedure, the optimal control profiles of substrate feeding strategies of glucose, nitrogen and phosphorous were estimated. In comparison with other algorithms like genetic algorithm, Tabu Search algorithm was able to generate an accurate optimal control profiles with a reduction in their intricacy.
机译:鼠李糖脂是生物表面活性剂,其是由1-鼠李糖和3-羟基链烷酸组成的细胞外糖脂。鼠李糖脂是通过使用假单胞菌(Pseudomonas sp。)的发酵过程产生的。作为物种。为了增加生物表面活性剂的生产量,对传统方法进行了改进,在补料分批模式下采用了多种加工技术。喂料分批模式通过避免底物或产品抑制作用线来促进产品的高产量。为了克服降低产品产量的控制参数,设计了最佳控制配置文件。为了开发鼠李糖脂生产的补料分批发酵的可行控制方法,采用了多种底物进料策略,并将其效率与不同底物浓度的葡萄糖,氮和磷进行了比较。产物的形成取决于底物的进料策略,因此,通过使用铜绿假单胞菌以多种速率提供底物来进行分批补料发酵。利用获得的实验数据,使用动力学模型(逻辑方程式和Luedeking Piret的方法),估算了动力学参数。这些动力学参数在禁忌搜索算法中实现,并且该程序在Dev-C ++中执行,因此生成了最佳控制曲线。这些获得的最佳控制曲线表明鼠李糖脂的生产率提高,而计算时间却减少了。通过该程序,估计了葡萄糖,氮和磷的底物进料策略的最佳控制谱。与其他算法(例如遗传算法)相比,禁忌搜索算法能够生成准确的最佳控制配置文件,并且降低了复杂性。

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