高等学校化学学报 ›› 1983, Vol. 4 ›› Issue (1): 19.

• 论文 • 上一篇    下一篇

加压阳离子交换流洗法分离研究——以H2SO4-MnSO4为流洗剂分离UO22+、U(Ⅳ)和Fe2+及UO22+和Fe3+及其机理

贾东方, 向红文   

  1. 兰州大学化学系
  • 收稿日期:1981-03-21 出版日期:1983-02-24 发布日期:1983-02-24

STUDY OF PRESSURED CATIONIC ION EXCHANGE ELUTION SEPARATION -SEPARATION OF UO22+,U(F), AND Fe2+ ORUO22+ AND Fe3+ AND MECHANISM OF SEPARATION OF UO22+ AND U(Ⅳ)

Jia Dongfang, Xiang Hongwen   

  1. Chemistry Department, Lanzhou University, Lanzhou
  • Received:1981-03-21 Online:1983-02-24 Published:1983-02-24

摘要: 本文发现一种含有Mn2+的硫酸流洗剂,可使UO22+和U(Ⅳ)的扩散常数分别增大20倍和400倍,从而显著地提高了UO22+和U(Ⅳ)的阳离子色谱效率;并论证了Mn2+离子的作用机理。

Abstract: This paper has found an elution agent, Mn2+-containing sulfuric acid, which has the ability of enhancing the column efficiency of the cationic chromatographic separation of UO22+ and U(Ⅳ) and of improving the symmetry of their chromatography.In further study, we found out the diffusion process of UO22+ and U(Ⅳ) in resin can be accelerated with Mn2+-containing sulfuric acid agent about 20 and 400 folds respectively.The activation energy of diffusion of UO22+ and U(Ⅳ) has also beenidetermined in the range of temperature 25-45℃by using the Mn2+-containing sulfuric acid as desorption agent. Under the corresponding temperatures, the plate heights h of UO22+ and U(Ⅳ) are obtained from elution curves respectively, comparing the ratios of Bvalues of different temperatures with the ratios of h' values under corresponding temperatures, we have clearified that the column efficiency under present elution condition is determined by the particle diffusion process and that the effect cf Mn2+ ion was attributed to the great enhancement of the particle diffusion process of UO22+ and U(Ⅳ).For further improving column efficiency, macroreticular ion exchange resin of fine particles Was used. The wriggle pump was used as driving source to overcome the difficulty of corrosion of inorganic acids in a pressured chromatographic separation equipment. After studying the experimental factors, such as stationary phase, operation temperature and elution agent, the optimum coditions for separating UO22+, U(Ⅳ) and Fe2+ or UO22+ and Fe3+ have been established.

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