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Application of double-focusing sector field ICP-MS for determination of ultratrace constituents in samples characterized by complex composition of the matrix

机译:双聚焦扇形场ICP-MS在测定基质复杂成分为特征的样品中超痕量成分中的应用

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摘要

The performance of double focusing, sector field mass spectrometry (ICP-SFMS) for determination of analytes, including technology critical elements (TCE), at ultra-trace levels in environmental and clinical matrices was critically evaluated. Different configurations of the ICP-SFMS introduction system as well as various sample preparations, pre-concentration and matrix separation methods were employed and compared. Factors affecting detection capabilities and accuracy of data produced (instrumental sensitivity, contamination risks, purity of reagents, spectral interferences, matrix effects, analyte recovery and losses) were discussed. Optimized matrix-specific methods were applied to a range of reference and control materials (riverine, brackish and seawaters; whole blood, serum and urine) as well as tap water and snow samples collected in the area of Luleå city, northern Sweden; brackish and seawater from the Laptev Sea; venous blood samples with a special emphasis on determination of Au, Ag, Ir, Os, Pd, Pt, Re, Rh, Ru, Sb and Te. Even though these low abundant elements are relatively under-documented, the results produced were compared with published data, where available.
机译:严格评估了双聚焦扇形场质谱(ICP-SFMS)在环境和临床基质中超痕量分析物(包括技术关键元素(TCE))测定中的性能。并比较了ICP-SFMS导入系统的不同配置以及各种样品制备,预浓缩和基质分离方法。讨论了影响检测能力和产生数据准确性的因素(仪器灵敏度,污染风险,试剂纯度,光谱干扰,基质效应,分析物回收率和损失)。优化的特定于基质的方法应用于瑞典北部吕勒奥地区收集的一系列参考和对照材料(河流,咸淡水和海水;全血,血清和尿液)以及自来水和雪样。拉普捷夫海咸淡水和海水;静脉血样,尤其着重于对Au,Ag,Ir,Os,Pd,Pt,Re,Rh,Ru,Sb和Te的测定。即使这些低丰度元素的记录相对不足,但仍将产生的结果与公开数据进行了比较(如果有)。

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