首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry: An International Journal Dealing with All Aspects and Applications of Nuclear Chemistry >Potentiometric titration in a low volume of solution for rapid assay of uranium: application to quantitative electro-reduction of uranium(VI)
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Potentiometric titration in a low volume of solution for rapid assay of uranium: application to quantitative electro-reduction of uranium(VI)

机译:少量溶液中的电位滴定法,用于快速测定铀:在铀的定量电还原中的应用

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摘要

A simple, inexpensive PC based potentiometric titration technique for the assay of uranium using low volumes of sample aliquot (25-100 μL) along with all reagents (total volume of solution being less than 2.5 mL) is presented. The technique involves modification of the well known Davies and Gray Method recommended for assay of uranium(VI) in nuclear materials by introducing an innovative potentiometric titration device with a mini cell developed in-house. After appropriate chemical conditioning the titration is completed within a couple of minutes with display of online titration plot showing the progress of titration. The first derivative plot generated immediately after titration provides information of end point. The main advantage of using this technique is to carry out titration with minimum volumes of sample and reagents generating minimum volume of wastes after titration. The validity of the technique was evaluated using standard certified samples. This technique was applied for assay of uranium in a typical sample collected from fuel reprocessing laboratory. Further, the present technique was deployed in investigating the optimum conditions for efficient in situ production of U(IV). The precision in the estimation of uranium is highly satisfactory (RSD less than 1.0%).
机译:提出了一种简单,廉价的基于PC的电位滴定技术,用于使用少量样品等分试样(25-100μL)以及所有试剂(溶液总体积小于2.5 mL)来测定铀。该技术涉及通过引入创新的电位滴定装置和内部开发的微型电池,对著名的戴维斯和格雷方法(建议用于分析核材料中的铀(VI))进行修改。经过适当的化学处理后,在几分钟内完成滴定,同时在线滴定图显示了滴定的进度。滴定后立即生成的一阶导数图可提供终点信息。使用该技术的主要优点是使用最小量的样品和试剂进行滴定,滴定后产生的废物量最小。使用标准的认证样品评估了该技术的有效性。该技术用于从燃料后处理实验室收集的典型样品中的铀含量测定。此外,本技术被用于研究有效地原位生产U(IV)的最佳条件。铀的估算精度非常令人满意(RSD小于1.0%)。

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