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Mass transfer in liquid-liquid membrane-based extraction at small fiber packing fractions

机译:在小纤维堆积率下液-液膜萃取中的传质

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Results are presented of carefully controlled mass transfer experiments, complemented by theoretical analysis. A simple test section is employed, comprised of five microporous nearly parallel fibers (fixed within a tubular glass shell), to study mass transfer when the shell-side resistance is controlling. The feed phase, flowing in the shell side, is an aqueous solution of either benzaldehyde or 2-hexanal, whereas n-hexane is used as the organic solvent (in the lumen); the respective partition coefficients at 25℃ are 10 and 57. Accurate data are obtained by using 'once-through' flow of both fluids. For the class of problems studied here (i.e. small fiber packing fraction Φ and high Sc number at shell side), a boundary layer solution is obtained for the mass transfer rate to the outer fiber surface. This expression, model variations thereof, as well as similar theoretical results recently reported in the literature, are assessed by comparison with the new data. By combining the analytical solution for the shell with a known expression for mass transfer at the lumen side, a closed-form expression is derived for the solute concentration variation in the organic solvent along the fiber/module. Very good agreement is obtained between experimental data and theoretical predictions, with no recourse to adjustable parameters. An important conclusion of this work, concerning shell-side mass transfer, is the dependence of Sh·Sc~(-1/3) on Reynolds number to the 1/3 power. Furthermore, the flow rate in the lumen (though not controlling) is shown to be a significant parameter affecting process efficiency.
机译:提出了精心控制的传质实验的结果,并辅以理论分析。使用一个简单的测试部分,该测试部分由五根几乎平行的微孔纤维(固定在管状玻璃壳内)组成,用于研究在控制壳侧阻力时的传质。在壳侧流动的进料相是苯甲醛或2-己醛的水溶液,而正己烷用作有机溶剂(在管腔中)。 25℃时的分配系数分别为10和57。使用两种流体的“一次通过”流动可获得准确的数据。对于此处研究的问题类别(即,较小的纤维堆积分数Φ和较高的壳层Sc值),获得了到外部纤维表面的传质速率的边界层解决方案。通过与新数据比较来评估该表达,其模型变化以及最近在文献中报道的类似理论结果。通过将用于外壳的分析溶液与在管腔侧进行质量转移的已知表达式结合起来,可以得出沿纤维/组件的有机溶剂中溶质浓度变化的闭合形式表达式。实验数据与理论预测之间获得了非常好的一致性,而无需求助于可调参数。这项关于壳侧传质的重要结论是,Sh·Sc〜(-1/3)对雷诺数与1/3幂的依赖关系。此外,内腔中的流速(尽管不受控制)显示为影响工艺效率的重要参数。

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