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Method development for the determination of alkali metals in samples from pyrochemical reprocessing using ICP-OES and comparison with sector field ICP-MS

机译:使用ICP-OES测定热化学后处理样品中碱金属的方法开发以及与扇形场ICP-MS的比较

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An analytical procedure for the reliable determination of the alkaline elements Na, K, and Li in radioactive samples was developed and validated. To this end, a high efficiency, desolvating nebulizer (Apex E) was coupled to a commercial high resolution ICP-OES instrument operated at 1000. W. Because of their radioactive nature, all investigated samples were handled in appropriate glove boxes operated in under-pressure, following strict safety and security procedures. After optimization of the ICP-OES operational parameters, detection limits (LODs) of 0.15μg/L, 0.8μg/L, and 1.3μg/L were obtained for Li (λ = 670.784. nm), Na (λ = 589.592. nm), and K (λ = 766.490. nm). Compared to conventional sample uptake rates of 1-2. mL/min, the 350μL/min used in this study helped to lower the radiation dose to the ICP-OES operator and produced much less radioactive waste while at the same time improving LODs. Calibration curves were linear up to 4. mg/L with a correlation coefficient of better than 0.999. Because of its robust and reproducible performance, no internal standard was required to correct for potential drifts in sensitivity of the ICP-OES. Three certified water reference materials (BCR?-617, LGC6177, SRM? 1643a) were employed to assess the accuracy of the developed ICP-OES procedure, the results of which underpin its reliability. In addition, Na and K concentrations calculated from emission intensities measured at two wavelengths confirmed that each dataset is consistent in itself. A comparison of sector field ICP-MS results of 23 samples originating from pyrochemical reprocessing with the data obtained applying the newly developed ICP-OES procedure revealed that the latter provides a reliable, straightforward and more robust analytical approach to determine Na, K, and Li in radioactive specimens.
机译:开发并验证了用于可靠测定放射性样品中碱性元素Na,K和Li的分析程序。为此,将高效去溶剂雾化器(Apex E)与以1000. W运行的商业高分辨率ICP-OES仪器结合使用。由于其放射性,所有研究的样品都在适当的手套箱中操作,该手套箱在低于遵守严格的安全措施。优化ICP-OES操作参数后,Li(λ= 670.784。nm),Na(λ= 589.592。nm)的检出限(LOD)为0.15μg/ L,0.8μg/ L和1.3μg/ L。 )和K(λ= 766.490。nm)。与传统样品的1-2吸收率相比。 mL / min,本研究中使用的350μL/ min有助于降低ICP-OES操作员的辐射剂量,产生的放射性废物少得多,同时改善了LOD。校准曲线在4. mg / L以下为线性,相关系数优于0.999。由于其强大且可重复的性能,因此不需要内部标准就可以校正ICP-OES灵敏度的潜在漂移。三种认证的水参考材料(BCR?-617,LGC6177,SRM?1643a)用于评估开发的ICP-OES程序的准确性,其结果是其可靠性的基础。此外,根据在两个波长下测得的发射强度计算出的Na和K浓度证实了每个数据集本身是一致的。将来自热化学后处理的23个样品的扇形场ICP-MS结果与使用新开发的ICP-OES程序获得的数据进行比较,发现后者提供了可靠,直接且更可靠的分析方法来测定Na,K和Li在放射性标本中。

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