首页> 外文期刊>Radiochimica Acta: International Journal for Chemical Aspects of Nuclear Science and Technology >Crown ether as size selective synergist in the solvent extraction of thorium(IV) and uranium(VI) with 3-phenyl-4-(4-fluorobenzoyl)-5-isoxazolone
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Crown ether as size selective synergist in the solvent extraction of thorium(IV) and uranium(VI) with 3-phenyl-4-(4-fluorobenzoyl)-5-isoxazolone

机译:冠醚作为3-苯基-4-(4-氟苯甲酰基)-5-异恶唑酮在extraction(IV)和铀(VI)溶剂萃取中的尺寸选择协同剂

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摘要

The synergistic extraction of thorium(IV) and uranium(VI) from nitric acid solutions has been investigated using mixtures of 3-phenyl-4-(4-fluorobenzoyl)-5-isoxazolone (HFBPI) and dicyclohexano-18-crown-6 (DC18C6), dibenzo-18-crown-6 (DB18C6) or benzo-15-crown-5 (B15C5). The results demonstrate that these metal ions are extracted into chloroform as Th(FBPI)(4) and UO2(FBPI)(2) with HFBPI alone and as Th(FBPI)(4). CE and UO2(FBPI)(2). CE in the presence of crown ethers (CE). The equilibrium constants of the above extracted complexes have been deduced by nonlinear regression analysis. The addition of a crown ether to the metal chelate system enhances the extraction efficiency and also improves the selectivities significantly between thorium (IV) and uranium(VI). The complexation strength of uranium(VI) with various crown ethers follows the order: DC18C6 > B15C5 > DB18C6, which can be explained on the basis of crown ether basicity sequence and steric effects. On the other hand, the complexation strength of Th-FBPI chelate with crown ether follows the order: B15C5 > DC18C6 > DB18C6. The high extraction of thorium(IV) with B15C5 can be explained on the basis of 'size-fitting effect'. Solid complexes of these metals with 4-acyl-3-phenyl-5-isoxazolones and with mixtures of HFBPI and crown ether have been isolated and characterised by elemental analyses, IR and (HNMR)-H-1 spectroscopic techniques. [References: 17]
机译:研究了使用3-苯基-4-(4-氟苯甲酰基)-5-异恶唑酮(HFBPI)和二环己基-18-冠-6(3-苯基-4-(4-氟苯甲酰基)-5-异恶唑酮)混合物从硝酸溶液中协同萃取th(IV)和铀(VI)( DC18C6),二苯并18冠6(DB18C6)或苯并15冠5(B15C5)。结果表明,这些金属离子分别作为Th(FBPI)(4)和UO2(FBPI)(2)单独与HFBPI一起作为Th(FBPI)(4)萃取到氯仿中。 CE和UO2(FBPI)(2)。在冠醚(CE)存在下的CE。通过非线性回归分析推导了上述提取的配合物的平衡常数。向金属螯合体系中添加冠醚可提高萃取效率,并显着提高th(IV)和铀(VI)之间的选择性。铀(VI)与各种冠醚的络合强度遵循以下顺序:DC18C6> B15C5> DB18C6,可以根据冠醚的碱度顺序和空间效应进行解释。另一方面,Th-FBPI螯合物与冠醚的络合强度遵循以下顺序:B15C5> DC18C6> DB18C6。 B15C5对extraction(IV)的高萃取率可以基于“尺寸拟合效应”来解释。已分离出这些金属与4-酰基-3-苯基-5-异恶唑酮以及HFBPI和冠醚的混合物的固体配合物,并通过元素分析,IR和(HNMR)-H-1光谱技术对其进行了表征。 [参考:17]

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