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首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry >Selective ion exchange separation of uranium from concomitant impurities in uranium materials and subsequent determination of the impurities by ICP-OES
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Selective ion exchange separation of uranium from concomitant impurities in uranium materials and subsequent determination of the impurities by ICP-OES

机译:铀与铀材料中伴随杂质的选择性离子交换分离,然后通过ICP-OES测定杂质

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摘要

An ion exchange method has been developed for the separation of uranium from trace level metallic impurities prior to their determination by inductively coupled plasma optical emission spectrometry (ICP-OES) in uranium materials. Selective separation of uranium from trace level metallic impurities consisting Cr, Co, Cu, Fe, Mn, Cd, Gd, Dy, Ni, and Ca was achieved on anion exchange resin Dowex 1 × 8 in sulphate medium. The resin (100–200 mesh, in chloride form) was packed in a small Teflon column (7.8 cm × 0.8 cm I.D.) and brought into sulphate form by passing 0.2 N ammonium sulphate solution. Optimum experimental conditions including pH and concentration of sulphate in the liquid phase were investigated for the effective uptake of uranium by the column. Uranium was selectively retained on the column as anionic complex with sulphate, while impurities were passed through the column. Post column solution was collected and analyzed by ICP-OES for the determination of metallic impurities. Up to 2,500 μg/mL of uranium was retained with >99% efficiency after passing 25 mL sample through the column at pH 3. Percentage recoveries obtained for most of the metallic impurities were >95% with relative standard deviations <5%. The method established was applied for the determination of gadolinium in urania–gadolinia (UO2–Gd2O3) ceramic nuclear fuel and excellent results were achieved. Solvent extraction method using tributylphosphate (TBP) as extractant was also applied for the separation of uranium in urania–gadolinia nuclear fuel samples prior to the determination of gadolinium by ICP-OES. The results obtained with the present method were found very comparable with those of the solvent extraction method.
机译:已经开发了一种离子交换方法,用于从痕量金属杂质中分离铀,然后通过电感耦合等离子体发射光谱法(ICP-OES)测定铀材料中的痕量金属杂质。在硫酸盐介质中,通过阴离子交换树脂Dowex 1×8实现了铀与痕量金属杂质的选择性分离,所述金属杂质包括Cr,Co,Cu,Fe,Mn,Cd,Gd,Dy,Ni和Ca。将树脂(100-200目,氯化物形式)装在一个小的Teflon柱(7.8厘米×0.8厘米内径)中,并通过0.2 N硫酸铵溶液使其变成硫酸盐形式。研究了色谱柱有效吸收铀的最佳实验条件,包括pH和液相中硫酸盐的浓度。铀与硫酸盐作为阴离子络合物选择性地保留在色谱柱上,同时杂质通过色谱柱。收集柱后溶液并通过ICP-OES分析以测定金属杂质。在使25 mL样品在pH为3的条件下通过色谱柱后,以> 99%的效率保留高达2500μg/ mL的铀。大多数金属杂质的回收率均大于95%,相对标准偏差小于5%。所建立的方法用于铀– d(UO 2 –Gd 2 O 3 )陶瓷核燃料中determination的测定实现了。在通过ICP-OES测定of之前,也采用了以磷酸三丁酯(TBP)为萃取剂的溶剂萃取方法分离铀-ania核燃料样品中的铀。发现用本方法获得的结果与溶剂萃取方法的结果非常可比。

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