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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Mass transfer modeling on the separation of tantalum and niobium from dilute hydrofluoric media through a hollow fiber supported liquid membrane
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Mass transfer modeling on the separation of tantalum and niobium from dilute hydrofluoric media through a hollow fiber supported liquid membrane

机译:通过空心纤维支撑液膜从稀氢氟酸介质中分离钽和铌的传质模型

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摘要

The separation of a mixture of tantalum and niobium in dilute hydrofluoric media via hollow fiber supported liquid membrane (HFSLM) was examined. Quaternary ammonium salt (Aliquat336) diluted in kerosene was used as a carrier. The various effects on the transport and separation of tantalum and niobium were studied: concentration of hydrofluoric acid in the feed solution, concentration of the carrier (Aliquat336) in the membrane phase, types of stripping solutions (NaClO_4, thiourea and HC1) and their concentration. The extraction of tantalum in the membrane phase from 0.3 M hydrofluoric acid (HF) by 3% (v/v) Aliquat336 was achieved by leaving niobium in the feed solution. Quantitative recovery of tantalum was achieved by 0.2 M NaClO_4. Furthermore, a mathematical model focusing on the extraction side of the liquid membrane system was presented in order to predict the concentration of tantalum at different times.
机译:研究了通过中空纤维支撑液膜(HFSLM)在稀氢氟酸介质中钽和铌混合物的分离。用煤油稀释的季铵盐(Aliquat336)用作载体。研究了对钽和铌的迁移和分离的各种影响:进料溶液中氢氟酸的浓度,膜相中载体的浓度(Aliquat336),汽提溶液的类型(NaClO_4,硫脲和HCl)及其浓度。通过将铌留在进料溶液中,从3 M(v / v)的0.3 M氢氟酸(HF)中萃取出膜相中的钽。通过0.2 M NaClO_4实现了钽的定量回收。此外,提出了侧重于液膜系统萃取侧的数学模型,以预测不同时间的钽浓度。

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