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Speciation analysis of chromium in drinking water samples by ion-pair reversed-phase HPLC–ICP-MS: validation of the analytical method and evaluation of the uncertainty budget

机译:离子对反相HPLC-ICP-MS对饮用水中铬的形态分析:分析方法的验证和不确定度预算的评估

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摘要

The approach presented in this article refers to the modification of a method for the detection and quantitative determination of chromium species in water by high-performance liquid chromatography inductively coupled plasma mass spectrometry. The main aim of this work was to establish a detailed validation of the analytical procedure and an estimation of the budget of measurement uncertainty which was helpful in recognizing the critical points of the presented method. As a result of the method validation experiment, the obtained limit of quantification, repeatability and intermediate precision were satisfied for the quantification Cr(III) and Cr(VI) in water matrices. The trueness of the method was verified via an estimation of the recovery of the spiked real samples. The recovery rate of both determined analytes was found to be between 93 and 115%. Considering that the validation of the method and the evaluation of measurement uncertainty are crucial for quantitative analysis, the above-mentioned assessment of the uncertainty budget was performed in two different ways: a modelling approach and a single-laboratory validation approach. The measurement uncertainties of the results were found to be 4.4 and 7.8% for Cr(III), 4.2 and 7.9% for Cr(VI) using the classical concept and method validation data, respectively. This paper is the first publication to presenting all the steps needed to evaluate the measurement uncertainty for the speciation analysis of chromium species. In summary, the obtained results demonstrate that the method can be applied effectively for its intended use.
机译:本文介绍的方法是通过高效液相色谱-电感耦合等离子体质谱法检测和定量测定水中铬种类的方法的改进。这项工作的主要目的是建立分析程序的详细验证并估计测量不确定度的预算,这有助于识别所提出方法的关键点。作为方法验证实验的结果,水基质中的Cr(III)和Cr(VI)定量满足了定量极限,重复性和中间精度。通过估计加标真实样品的回收率来验证该方法的真实性。发现两种确定的分析物的回收率在93%和115%之间。考虑到方法的验证和测量不确定度的评估对于定量分析至关重要,因此,上述不确定性预算的评估以两种不同的方式进行:建模方法和单实验室验证方法。使用经典概念和方法验证数据,结果的测量不确定度分别为Cr(III)为4.4和7.8%,Cr(VI)为4.2和7.9%。本文是第一本介绍所有步骤的出版物,该步骤评估了铬物种形态分析的测量不确定度。总而言之,获得的结果表明该方法可以有效地用于其预期用途。

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