伪乳液基中空纤维条分散体萃取钕的数学建模

Prateek L. Mishra, B. Swain, A. K. Pabby, M. Singh, S. Gulati, S. Ramasubramanium
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引用次数: 1

摘要

伪乳液基中空纤维条分散体(PEHFSD)具有稳定性好、操作简单、成本低等优点,是一种很有前途的替代技术。这是一种高效的工艺,因为它的萃取和剥离表面积大,制造伪乳液和相分离的能耗低。该技术综合了乳状液膜的优点,克服了支撑液膜系统中膜稳定性的缺点。在PEHFSD技术中,采用TODGA和HNO3作为萃取剂和萃取剂萃取钕(III) (Nd)。建立了一个模型,研究了不同水动力和化学条件下Nd的迁移,包括分散有机比(A/O)、叶轮转速对液滴形成的影响、饲料酸度的影响、载体浓度的影响、饲料流量的影响。编写了数值求解模型方程的程序,以预测进料库的浓度随时间的变化。通过实验确定了最佳提取条件。数值模拟结果与实验数据吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mathematical Modeling of Extraction of Neodymium using Pseudo-emulsion based Hollow Fiber Strip Dispersion (PEHFSD)
Pseudo-emulsion based hollow fiber strip dispersion (PEHFSD) is a promising alternative technique due to its stability, simplicity and cost of operation. This is an efficient process due to its high surface area for extraction as well as stripping, and low energy consumption for creating the pseudo-emulsion and for the separation of phases. This technique takes the combine advantages of emulsion liquid membrane and overcomes the sufferings of membrane stability in the supported liquid membrane systems. Present work includes extraction of neodymium (III) (Nd) by using TODGA and HNO3 as the extractant cum strippant in PEHFSD technique. A model is developed to study the transport of Nd under different hydrodynamic and chemical conditions that includes organic ratio (A/O) in dispersion, effect of speed of impeller on drop size formation, effect of feed acidity, effect of carrier concentration, effect of feed flow rate. A code is written to solve the model equations numerically to predict the concentration of the feed reservoir with time. Experiments are conducted to obtain the best optimum extraction conditions. Results obtained from the numerical simulations are validated with the experimental data and found a good agreement between them.
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