首页> 外文期刊>Radiochimica Acta: International Journal for Chemical Aspects of Nuclear Science and Technology >Chemical speciation of Am, Cm and Eu with EDTA at high ionic strength: thermodynamics and laser fluorescence spectroscopy studies
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Chemical speciation of Am, Cm and Eu with EDTA at high ionic strength: thermodynamics and laser fluorescence spectroscopy studies

机译:EDTA在高离子强度下对Am,Cm和Eu的化学形态:热力学和激光荧光光谱研究

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摘要

The complexation of Am3+, Cm3+ and Eu3+ with EDTA has been studied at an ionic strength of 6.60 mol kg(-1) (NaClO4) and pcH 3.60 in the temperature range of 0 to 60 degrees C with a solvent extraction technique. The complex M(EDTA)was formed with stability constant values (log beta(101)) at 25 degrees C between 15.9 and 16.1 which increased with increasing temperature. The complex formation enthalpies have been obtained from the temperature dependence of the stability constants. The large positive enthalpy and entropy changes are attributed to the considerably reduced water activity at such high ionic strength resulting in large positive contributions from the dehydration of the trivalent metal ions as compared to the smaller negative contributions from the M3+-EDTA(4-) bonding interaction. The nature of the species of the EuEDTA complex formed at 6.60 mol kg(-1) (NaClO4) and pcH >= 3.60 was studied by time-resolved laser fluorescence spectroscopy and lifetime measurements. Between pcH 3.60 and 7.0, Eu(EDTA)(H2O)(3)(-) was formed while at pcH 9.0, Eu(OH)(EDTA)(H2O)(2) (2-) was present.
机译:使用溶剂萃取技术,研究了离子强度为6.60 mol kg(-1)(NaClO4)和pcH 3.60在0至60摄氏度的温度下,Am3 +,Cm3 +和Eu3 +与EDTA的络合作用。复合物M(EDTA)在25℃在15.9和16.1之间形成具有稳定常数值(log beta(101)),其随温度升高而增加。从稳定常数的温度依赖性获得了复合物形成焓。正焓和熵的大变化归因于在这种高离子强度下水活度大大降低,与三价金属离子脱水产生的较小负贡献相比,三价金属离子的脱水产生了较大的正贡献。相互作用。通过时间分辨激光荧光光谱法和寿命测量研究了在6.60 mol kg(-1)(NaClO4)和pcH> = 3.60时形成的EuEDTA复合物的种类。在pcH 3.60和7.0之间,形成Eu(EDTA)(H2O)(3)(-),而在pcH 9.0下,存在Eu(OH)(EDTA)(H2O)(2)(2-)。

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