Validation and measurement uncertainty of the determination of 24 elements in drinking water using ICP-MS

Murat Kilic
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Abstract

In this study, the concentrations of 24 elements, which are suspicious to be found in drinking and utility waters for the province of Antalya/Turkey, were determined using an inductively coupled plasma-mass spectrometer (ICP-MS). Validated methods with a low limit of detection are required to analyze such waters. The method was validated considering selectivity, limits of detection and quantification, sensitivity, linearity, operating range, accuracy, precision, and measurement uncertainty. All monitored isotope calibration plots had a correlation coefficient of 0.9994 or higher. According to the results of recovery, the expected results of all element isotopes were determined in the range of 94–104%. The average precision quantities for items were calculated as percent relative standard deviation (%RSD) between 0.10 and 2.31%. The analytical method provided here for detecting the concentrations of 24 elements in drinking water samples with demonstrated traceability and estimated uncertainty can yield reliable and internationally comparable results.
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利用 ICP-MS 测定饮用水中 24 种元素的有效性和测量不确定性
本研究使用电感耦合等离子体质谱仪 (ICP-MS) 测定了土耳其安塔利亚省饮用水和公用事业用水中可疑的 24 种元素的浓度。分析这类水需要经过验证的低检测限方法。该方法的验证考虑了选择性、检出限和定量限、灵敏度、线性度、工作范围、准确度、精确度和测量不确定性。所有监测到的同位素校准图的相关系数都在 0.9994 或以上。根据回收结果,确定所有元素同位素的预期结果范围为 94-104%。各项目平均精密度的计算结果为相对标准偏差百分比(%RSD),介于 0.10%和 2.31%之间。本报告提供的检测饮用水样本中 24 种元素浓度的分析方法具有可追溯性和估计的不确定性,可以得出可靠的、具有国际可比性的结果。
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