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Application of Capillary Electrophoresis with Laser-induced Fluorescence Detection for the Determination of Trace Neodymium in Spent Nuclear Fuel Using Complexation with an Emissive Macrocyclic Polyaminocarboxylate Probe

机译:毛细管电泳-激光诱导荧光检测-发射大环聚氨基羧酸盐配合物测定废核燃料中痕量钕的应用

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A simple and rapid method with low radiation exposure risk was developed for the determination of neodymium in spent nuclear fuel by capillary electrophoresis with laser-induced fluorescence detection using a fluorescent probe having a macrocyclic hexadentate polyaminocarboxylate structure. The concentration of Nd(III) in a spent nuclear fuel sample was determined with no interference from various matrix elements, including lanthanides and uranium (at a 200-fold excess), with 92 ± 3% recovery. This is due to high resolution based on establishing a ternary complex equilibrium during migration in which the hydroxyl ion plays an auxiliary role (log K _(Ln–L–OH) = 3.9 – 5.3).
机译:开发了一种简单,快速,辐射风险低的方法,该方法通过毛细管电泳,使用具有大环六齿聚氨基羧酸盐结构的荧光探针,通过激光诱导的荧光检测,来测定乏核燃料中的钕。测定乏核燃料样品中Nd(III)的浓度时不受各种基质元素(包括镧系元素和铀)的干扰(过量200倍),回收率为92±3%。这是由于在迁移过程中建立了三元络合物平衡而获得的高分辨率,其中氢氧根离子起辅助作用(log K_(Ln–L–OH)= 3.9 – 5.3)。

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