首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Limit of detection in the presence of instrumental and non-instrumental errors: study of the possible sources of error and application to the analysis of 41 elements at trace levels by inductively coupled plasma-mass spectrometry technique
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Limit of detection in the presence of instrumental and non-instrumental errors: study of the possible sources of error and application to the analysis of 41 elements at trace levels by inductively coupled plasma-mass spectrometry technique

机译:存在仪器误差和非仪器误差的检测极限:研究可能的误差来源,并通过电感耦合等离子体质谱法对痕量水平的41种元素进行分析

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In this paper the detection limit was estimated when signals were affected by two error contributions, namely instrumental errors and operational-non-instrumental errors. The detection limit was theoretically obtained following the hypothesis testing schema implemented with the calibration curve methodology. The experimental calibration design was based on J standards measured I times with non-instrumental errors affecting each standard systematically but randomly among the J levels. A two-component variance regression was performed to determine the calibration curve and to define the detection limit in these conditions. The detection limit values obtained from the calibration at trace levels of 41 elements by ICP-MS resulted larger than those obtainable from a one component variance regression. The role of the reagent impurities on the instrumental errors was ascertained and taken into account. Environmental pollution was studied as source of non-instrumental errors. The environmental pollution role was evaluated by Principal Component Analysis technique (PCA) applied to a series of nine calibrations performed in fourteen months. The influence of the seasonality of the environmental pollution on the detection limit was evidenced for many elements usually present in the urban air particulate. The obtained results clearly indicated the need of using the two-component variance regression approach for the calibration of all the elements usually present in the environment at significant concentration levels. (C) 2015 Elsevier B.V. All rights reserved.
机译:在本文中,当信号受到两个误差贡献(仪器误差和非仪器误差)的影响时,对检测限进行了估计。理论上,检测限是根据使用校准曲线方法实施的假设检验方案获得的。实验校准设计基于I次测量的J标准品,非仪器误差会系统性地影响每个标准品,但会随机影响J级。进行了两部分方差回归以确定标准曲线并定义这些条件下的检测极限。通过ICP-MS在41种元素的痕量水平上通过校准获得的检测极限值比从一种成分方差回归中获得的更高。确定并考虑了试剂杂质对仪器误差的作用。研究环境污染是非仪器误差的来源。通过主成分分析技术(PCA)对环境污染的作用进行了评估,该技术应用于十四个月内进行的九次校准。对于城市空气中通常存在的许多元素,证明了环境污染的季节性对检出限的影响。获得的结果清楚地表明,需要使用两组分方差回归方法来校准环境中通常存在的浓度较高的所有元素。 (C)2015 Elsevier B.V.保留所有权利。

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