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首页> 外文期刊>Materials and Manufacturing Processes >Differential Evolution Approach for Reactive Extraction of Propionic Acid Using Tri-n-Butyl Phosphate (TBP) in Kerosene and 1-Decanol
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Differential Evolution Approach for Reactive Extraction of Propionic Acid Using Tri-n-Butyl Phosphate (TBP) in Kerosene and 1-Decanol

机译:差分进化法在煤油和1-癸醇中使用磷酸三正丁酯(TBP)反应萃取丙酸的方法

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摘要

Reactive extraction is found to be an efficient, economical, and environmental friendly method for recovery of acids from fermentation broths. In this study, the reactive extraction of propionic acid is carried out using tri-n-butylphosphate (TBP) dissolved in kerosene and 1-decanol (modifier). The results of equilibrium studies indicate that the extraction efficiency increases with an increase in 1-decanol concentration and TBP composition, but decreases with an increase in initial acid concentration. The degree of extraction, distribution coefficient, and loading factors are calculated. The stoichiometry of reactive extraction for the formation acid: TBP complexes and equilibrium constants (K_E) are estimated through chemodel. using conventional method (graphical) and an optimization procedure (differential evolution algorithm). The results of model show 1:1 complexes between acid and TBP in most of the cases. The equilibrium extraction constant (K_(E1)) for 1:1 complex of propionic acid and TBP at 298K is found to be 2.37. The effect of temperature on recovery of propionic acid with this extraction system is also derived and found to decrease with an increase in temperature (298-334 K). The results of this study are useful to intensify the microbial production of carboxylic acids using renewable sources.
机译:发现反应萃取是从发酵液中回收酸的有效,经济和环境友好的方法。在这项研究中,丙酸的反应性萃取是使用溶于煤油和1-癸醇(改性剂)中的磷酸三正丁酯(TBP)进行的。平衡研究的结果表明,萃取效率随1-癸醇浓度和TBP组成的增加而增加,但随初始酸浓度的增加而降低。计算提取程度,分配系数和负载系数。通过化学模型估算形成酸:TBP配合物和平衡常数(K_E)的反应萃取化学计量。使用常规方法(图形方法)和优化程序(差分进化算法)。模型的结果表明,在大多数情况下,酸与TBP之间为1:1的配合物。发现丙酸与TBP 1:1配合物在298K时的平衡萃取常数(K_(E1))为2.37。还得出了温度对用该萃取系统回收丙酸的影响,发现温度随温度升高(298-334 K)而降低。这项研究的结果有助于加强利用可再生资源的微生物对羧酸的生产。

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