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Uncertainty estimation of anions and cations measured by ion chromatography in fine urban ambient particles (PM _(2.5))

机译:离子色谱法测定城市细小颗粒中阴离子和阳离子的不确定度估算(PM _(2.5)

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摘要

The present work presents a measurement uncertainty evaluation according to Guide to the Expression of Uncertainty in Measurement (GUM) of the concentration of the cations K ~+ and Li ~+ and anions NO _3 ~(-2) and SO _4 ~(-2) in fine airborne particulate matter, refers to particles less than 2.5 μm in diameter (PM _(2.5)), as measured by ion chromatography (US-EPA 300 method). The GUM method is not typically used to report uncertainty. In general, the analytical results only report the measurement's standard deviation under repetition as an uncertainty; thus, not all sources of uncertainty are considered. In this work, the major sources of uncertainty regarding the measurements were identified as contributions to linear least square regression lines, repeatability, precision, and trueness. The expanded uncertainty was approximately 20% for anions and cations. The largest contribution to uncertainty was found to be repeatability.
机译:本工作根据阳离子K〜+和Li〜+和阴离子NO _3〜(-2)和SO _4〜(-2的浓度的不确定度表示指南(GUM)提出了测量不确定度评估空气中细颗粒物)是指直径小于2.5微米(PM _(2.5))的颗粒,通过离子色谱法(US-EPA 300方法)测量。 GUM方法通常不用于报告不确定性。通常,分析结果仅将重复测量下的测量标准偏差报告为不确定度。因此,并未考虑所有不确定因素。在这项工作中,有关测量的不确定性的主要来源被确定为对线性最小二乘回归线,可重复性,精度和真实性的贡献。阴离子和阳离子的扩展不确定度约为20%。发现对不确定性的最大贡献是可重复性。

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