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Development and validation of a method for mercury determination in seawater for the process control of a candidate certified reference material

机译:海水中汞含量测定方法的开发和验证用于候选认证参考物质的过程控制

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摘要

A simple, robust and reliable method for mercury determination in seawater matrices based on the combination of cold vapour generation and inductively coupled plasma mass spectrometry (CV-ICP-MS) and its complete in-house validation are described. The method validation covers parameters such as linearity, limit of detection (LOD), limit of quantification (LOQ), trueness, repeatability, intermediate precision and robustness. A calibration curve covering the whole working range was achieved with coefficients of determination typically higher than 0.9992. The repeatability of the method (RSDrep) was 0.5 %, and the intermediate precision was 2.3 % at the target mass fraction of 20 ng/kg. Moreover, the method was robust with respect to the salinity of the seawater. The limit of quantification was 2.7 ng/kg, which corresponds to 13.5 % of the target mass fraction in the future certified reference material (20 ng/kg). An uncertainty budget for the measurement of mercury in seawater has been established. The relative expanded (k = 2) combined uncertainty is 6 %. The performance of the validated method was demonstrated by generating results for process control and a homogeneity study for the production of a candidate certified reference material.
机译:描述了一种基于冷蒸气发生和电感耦合等离子体质谱法(CV-ICP-MS)结合的海水基质中汞测定的简单,可靠和可靠的方法,以及其完整的内部验证方法。方法验证包括线性,检测限(LOD),定量限(LOQ),真实性,可重复性,中间精度和鲁棒性等参数。获得的测定曲线涵盖了整个工作范围,测定系数通常高于0.9992。该方法(RSDrep)的可重复性为0.5%,目标质量分数为20ng / kg时的中间精度为2.3%。而且,该方法对于海水的盐度是鲁棒的。定量限为2.7 ng / kg,相当于未来认证参考物质(20 ng / kg)中目标质量分数的13.5%。已经建立了用于测量海水中汞含量的不确定性预算。相对扩展(k = 2)组合不确定度为6%。通过生成用于过程控制的结果以及用于生产候选认证参考材料的同质性研究,证明了该验证方法的性能。

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