首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Optimisation of a current generation ICP-QMS and benchmarking against MC-ICP-MS spectrometry for the determination of lead isotope ratios in environmental samples
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Optimisation of a current generation ICP-QMS and benchmarking against MC-ICP-MS spectrometry for the determination of lead isotope ratios in environmental samples

机译:优化了当前的ICP-QMS并对照MC-ICP-MS光谱法确定环境样品中的铅同位素比

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摘要

Novel ANOVA methodology was used to benchmark ICP-QMS against MC-ICP-MS for Pb isotope ratios, demonstrating "fitness-for-purpose" in environmental source apportionment. The precision and accuracy of lead (Pb) isotope measurements obtained from quadrupole-based mass spectrometers (ICP-QMS) are considered to be limited by a number of factors originating in different components of the instruments. In this study, experimental and instrumental protocols were optimised for determining lead isotope ratios in urban soil digests. Experimental measures included individual dilution of all samples and isotopic standards (SRM-981, NIST) to a single Pb concentration intended to produce an intensity which was high enough to negate blanks and interferences but low enough to ensure the detector operated only in pulse counting mode. Instrumental protocols included batch dead time correction, optimisation of dwell time and the number of scans employed and correction of mass discrimination by sequential application of both internal (Tl-203/Tl-205 ratio) and external (SRM-981, NIST) standards. This optimised methodology was benchmarked against multi-collector mass spectrometer (MC-ICP-MS) measurements of Pb isotope ratios using replicate digest solutions of the same soil; but after these had been subjected to Pb separation using an ion-exchange procedure. On the assumption that MC-ICP-MS measurements are more accurate, small additive and multiplicative differences were observed in only the 4th decimal place. ANOVA was used to compare the precisions of the two techniques demonstrating equal precisions c. 0.08% for Pb-207/Pb-206, suggesting a sample heterogeneity limitation. By contrast, for Pb-207/Pb-204, the worst-case ratio, ICP-QMS had a 10-fold poorer precision, despite negligible interference from Hg-204, implying an instrumental limitation. The study concludes that ICP-QMS can provide valuable source apportionment information for most Pb isotope ratios but further efforts should focus on improving assay of the Pb-207/Pb-204 ratio.
机译:新颖的ANOVA方法被用于将ICP-QMS与MC-ICP-MS的铅同位素比进行基准比较,证明了“目的适应性”在环境源分配中的作用。从基于四极杆质谱仪(ICP-QMS)获得的铅(Pb)同位素测量的精度和准确性被认为受到源自仪器不同组件的许多因素的限制。在这项研究中,实验和仪器协议进行了优化,以确定城市土壤中的铅同位素比。实验措施包括将所有样品和同位素标准品(SRM-981,NIST)单独稀释到单个Pb浓度,以产生足以抵消空白和干扰的强度,但又足以确保检测器仅在脉冲计数模式下运行。仪器规程包括批量停滞时间校正,优化停留时间和采用的扫描次数以及通过依次应用内部标准(Tl-203 / Tl-205)和外部标准(SRM-981,NIST)来校正质量歧视。使用同一土壤的重复消化液,通过多收集器质谱仪(MC-ICP-MS)进行铅同位素比测量,以此优化方法为基准。但是在使用离子交换程序对它们进行了Pb分离之后。假设MC-ICP-MS测量更准确,则仅在小数点后四位观察到较小的加性和乘性差异。方差分析用于比较两种技术的精度,证明了精度c。 Pb-207 / Pb-206为0.08%,表明存在样品异质性限制。相比之下,对于Pb-207 / Pb-204,最坏情况的比率是ICP-QMS,尽管Hg-204的干扰可忽略不计,但精度却降低了10倍,这意味着仪器的局限性。该研究得出的结论是,ICP-QMS可以为大多数Pb同位素比率提供有价值的源分配信息,但进一步的工作应集中在改进Pb-207 / Pb-204比率的测定上。

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