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Parametric Optimization of Lactic Acid Extraction from Aqueous Solution in a Mixed Flow Reactor Using Emulsion Liquid Membrane by Response Surface Methodology

机译:乳化液膜在混合流反应器水溶液中提取乳酸的响应面法参数优化

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A statistical programme using Box-Behnken design,which applies a response optimization algorithm,was used to calculate and optimize simultaneously the lactic acid extraction by emulsion liquid membrane(ELM)in a mixed flow reactor.A 3-level Box-Behnken design with seven variables i.e.lactic acid concentration,internal reagent concentration,Alamine 336 fraction in oleyl alcohol,stirring speed,fraction of acceptor phase containing internal reagent in emulsion,feed:emulsion ratio and residence time was used to identify a significant correlation between the effect of these variables on lactic acid extraction from aqueous phase since the conventional practice of single factor optimization by maintaining other factors at an unspecified constant level does not depict the combined effect of all the factors involved.The experimental values were found to be in good agreement with predicted values.The analysis of the variance(ANOVA)shows that all the extraction process parameters significantly affect the performance,as well as shows that there are some interactions between the extraction parameters.The contribution of feed:emulsion ratio and stirring speed on extraction efficiency was more than other factors and the fraction of acceptor phase in emulsion has minimum contribution.The optimum value of the process parameters for the maximization of extraction of lactic acid from aqueous phase using ELM in MFR by the application of Box-Behnken design has been found.The recommended optimal conditions have been verified by conducting confirmation experiments.It can be concluded that the Box-Behnken experimental design provides a suitable means of optimizing and testing the robustness of lactic acid extraction in a MFR using emulsion liquid membrane and 100% lactic acid extraction in MFR using ELM from aqueous feed can be achieved in few minutes within the specified range of independent process parameters.
机译:采用Box-Behnken设计的统计程序,该程序应用响应优化算法,以同时计算和优化混合流反应器中乳化液膜(ELM)的乳酸萃取。三级Box-Behnken设计,其中有七个变量乳酸浓度,内部试剂浓度,油醇中的Alamine 336馏分,搅拌速度,乳液中含有内部试剂的受体相的分数,进料:乳液比例和停留时间用于确定这些变量的影响之间的显着相关性从水相中提取乳酸的实验,因为通过将其他因素保持在一个未指定的恒定水平上进行的单因素优化的常规做法并未体现出所有涉及因素的综合作用。实验值与预测值非常吻合。方差分析(ANOVA)表明,所有提取过程参数均显着影响进料:乳液比例和搅拌速度对萃取效率的影响大于其他因素,并且乳液中受主相的比例影响最小。通过Box-Behnken设计,发现了用ELM在MFR中最大程度地从水相中提取乳酸的工艺参数值,并通过确认实验验证了推荐的最佳条件。 Box-Behnken实验设计提供了优化和测试使用乳状液膜在MFR中提取乳酸的稳健性的合适方法,并且可以在指定范围内的几分钟内在几分钟内完成使用ELM从含水进料中在MFR中100%提取乳酸。独立的工艺参数。

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