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Mathematical modeling of aroma compound recovery from natural sources using hollow fiber membrane contactors with small packing fraction

机译:使用小填充分数的中空纤维膜接触器从天然来源回收芳香化合物的数学模型

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A numerical simulation was carried out in order to investigate aroma compounds recovery from aqueous phase using an organic solvent. A hollow-fiber membrane contactor with small packing fraction was selected to be used in the study. Momentum, continuity and mass transfer equations were solved simultaneously utilizing finite element method. The simulation results showed that solving the Navier-Stokes equations has significantly diminished average deviation about 55% compared to Happle's velocity model. Simulation results revealed that mass transfer resistance increases along the contactor length in both tube and shell sides. It seems that it is due to the increasing thickness of the boundary layer. Enhancement of the solvent velocity could result in increasing mass transfer rate through the membrane. However, it reduced the extraction efficiency of aroma compounds. Moreover, recovery of 2-hexanal was higher than benzaldehyde due to its higher partition coefficient. Furthermore, n-hexane has higher extraction efficiency than miglyol because of lower Schmidt number. (C) 2016 Elsevier B.V. All rights reserved.
机译:为了研究使用有机溶剂从水相中回收芳香化合物,进行了数值模拟。本研究选择了具有较小填充率的中空纤维膜接触器。利用有限元方法同时求解了动量,连续性和传质方程。仿真结果表明,与Happle的速度模型相比,求解Navier-Stokes方程的平均偏差显着减小了约55%。仿真结果表明,传质阻力沿管和壳两侧的接触器长度增加。似乎是由于边界层厚度的增加。溶剂速度的提高可能导致通过膜的传质速率增加。但是,它降低了芳香化合物的提取效率。此外,由于2-己醛的分配系数较高,因此其回收率高于苯甲醛。此外,由于较低的施密特数,正己烷比米格醇具有更高的提取效率。 (C)2016 Elsevier B.V.保留所有权利。

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