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Optimization of solid phase extraction chromatography for the separation of Np from U and Pu using experimental design tools in complex matrices

机译:在复杂基质中使用实验设计工具优化固相萃取色谱法从U和Pu中分离Np的过程

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摘要

Effective solid phase extraction separation methods of actinides and fission products are required in the control and evaluation of common or experimental nuclear spent fuel reprocessing strategies and environmental contaminated samples. In this study, we have developed a simpler sequential analytical separation scheme to isolate 237Np from U and Pu. Experimental design tools were used to achieve parameter optimization. We studied the contribution of critical factors such as the type of resin, acidity, sulfamic acid concentration and sample volume to actinide extraction with a multivariate approach. Following a sequential assembly approach, fractional factorial designs were used to select the best resin. Full factorial designs were used to evaluate the expected response for the chosen multifactorial space. After discarding a first order linear model, the designs were augmented and the response surface methodology was used to evaluate the response through the use of a quadratic model together with graphical and canonical analysis. Knowledge acquired from multiple actinide responses allowed us to find multi-criteria compromise solutions that were successfully applied for the separation of Np from Pu and U in complex matrices...
机译:在控制或评估常规或实验性核乏燃料后处理策略和环境污染样品时,需要有效的固相萃取分离方法来分离act系元素和裂变产物。在这项研究中,我们开发了一种更简单的顺序分析分离方案,可从U和Pu中分离出237 Np。实验设计工具用于实现参数优化。我们使用多元方法研究了关键因素(例如树脂类型,酸度,氨基磺酸浓度和样品量)对act系元素萃取的贡献。按照顺序组装的方法,采用分数阶乘设计来选择最佳树脂。全因子设计用于评估所选多因子空间的预期响应。丢弃一阶线性模型后,对设计进行了扩充,并通过使用二次模型以及图形和规范分析,使用了响应面方法来评估响应。从多个act系元素反应中获得的知识使我们能够找到多标准的折衷解决方案,这些解决方案已成功应用于复杂基质中Np从Pu和U中的分离...

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