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Quantifying uncertainty in the measurement of arsenic in suspended particulate matter by Atomic Absorption Spectrometry with hydride generator

机译:氢化物发生原子吸收光谱法测定悬浮颗粒物中砷的不确定度定量

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Arsenic is the toxic element, which creates several problems in human being specially when inhaled through air. So the accurate and precise measurement of arsenic in suspended particulate matter (SPM) is of prime importance as it gives information about the level of toxicity in the environment, and preventive measures could be taken in the effective areas. Quality assurance is equally important in the measurement of arsenic in SPM samples before making any decision. The quality and reliability of the data of such volatile elements depends upon the measurement of uncertainty of each step involved from sampling to analysis. The analytical results quantifying uncertainty gives a measure of the confidence level of the concerned laboratory. So the main objective of this study was to determine arsenic content in SPM samples with uncertainty budget and to find out various potential sources of uncertainty, which affects the results. Keeping these facts, we have selected seven diverse sites of Delhi (National Capital of India) for quantification of arsenic content in SPM samples with uncertainty budget following sampling by HVS to analysis by Atomic Absorption Spectrometer-Hydride Generator (AAS-HG). In the measurement of arsenic in SPM samples so many steps are involved from sampling to final result and we have considered various potential sources of uncertainties. The calculation of uncertainty is based on ISO/IEC17025: 2005 document and EURACHEM guideline. It has been found that the final results mostly depend on the uncertainty in measurement mainly due to repeatability, final volume prepared for analysis, weighing balance and sampling by HVS. After the analysis of data of seven diverse sites of Delhi, it has been concluded that during the period from 31st Jan. 2008 to 7th Feb. 2008 the arsenic concentration varies from 1.44 卤 0.25 to 5.58 卤 0.55 ng/m3 with 95% confidence level (k = 2).
机译:砷是有毒元素,特别是通过空气吸入时,会给人类带来很多问题。因此,准确,准确地测量悬浮颗粒物(SPM)中的砷至关重要,因为它可以提供有关环境中毒性水平的信息,并且可以在有效区域中采取预防措施。在做出任何决定之前,质量保证对于SPM样品中砷的测量同样重要。这些易挥发元素的数据的质量和可靠性取决于对从采样到分析的每个步骤的不确定性的度量。量化不确定性的分析结果可以衡量相关实验室的可信度。因此,本研究的主要目的是确定具有不确定性预算的SPM样品中的砷含量,并找出影响结果的各种潜在不确定性来源。保留这些事实,我们选择了德里的七个不同地点(印度国家首都),在HVS采样并通过原子吸收光谱仪-氢化物发生器(AAS-HG)进行分析之后,以不确定的预算来量化SPM样品中的砷含量。在SPM样品中砷的测量中,从采样到最终结果涉及许多步骤,我们考虑了各种潜在的不确定性来源。不确定度的计算基于ISO / IEC17025:2005文档和EURACHEM指南。已经发现,最终结果主要取决于测量的不确定性,这主要归因于可重复性,为分析准备的最终体积,称重天平和通过HVS采样。在对德里的七个不同地点的数据进行分析之后,得出的结论是,从2008年1月31日到2008年2月7日,砷的浓度在1.44 0.25到5.58 0.55 ng / m3之间,置信度为95%。 (k = 2)。

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