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Quantifying uncertainty in measurement of mercury in suspended particulate matter by cold vapor technique using atomic absorption spectrometry with hydride generator

机译:使用氢化物​​发生器的原子吸收光谱法通过冷蒸气技术定量测定悬浮颗粒物中的汞的不确定度

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摘要

As a result of rapid industrialization several chemical forms of organic and inorganic mercury are constantly introduced to the environment and affect humans and animals directly. All forms of mercury have toxic effects; therefore accurate measurement of mercury is of prime importance especially in suspended particulate matter (SPM) collected through high volume sampler (HVS). In the quantification of mercury in SPM samples several steps are involved from sampling to final result. The quality, reliability and confidence level of the analyzed data depends upon the measurement uncertainty of the whole process. Evaluation of measurement uncertainty of results is one of the requirements of the standard ISO/IEC 17025:2005 (European Standard EN IS/ISO/IEC 17025:2005, issue1:1-28, 2006). In the presented study the uncertainty estimation in mercury determination in suspended particulate matter (SPM) has been carried out using cold vapor Atomic Absorption Spectrometer-Hydride Generator (AAS-HG) technique followed by wet chemical digestion process. For the calculation of uncertainty, we have considered many general potential sources of uncertainty. After the analysis of data of seven diverse sites of Delhi, it has been concluded that the mercury concentration varies from 1.59 ± 0.37 to 14.5 ± 2.9 ng/m3 with 95% confidence level (k = 2).
机译:快速工业化的结果是,有机和无机汞的几种化学形式不断被引入环境,并直接影响人类和动物。所有形式的汞均具有毒性作用;因此,准确测量汞至关重要,尤其是在通过大容量采样器(HVS)收集的悬浮颗粒物(SPM)中。在SPM样品中的汞定量中,从采样到最终结果涉及几个步骤。分析数据的质量,可靠性和置信度取决于整个过程的测量不确定性。评估结果的测量不确定度是标准ISO / IEC 17025:2005(欧洲标准EN IS / ISO / IEC 17025:2005,版本1:1-28,2006)的要求之一。在本研究中,使用冷蒸气原子吸收光谱仪-氢化物发生器(AAS-HG)技术进行湿化学消解工艺,从而进行了悬浮颗粒物(SPM)中汞测定的不确定度估算。在计算不确定性时,我们考虑了许多不确定性的潜在潜在来源。在分析了德里的七个不同地点的数据之后,得出的结论是,汞浓度在1.59±0.37到14.5±2.9 ng / m 3 范围内,置信度为95%(k = 2) 。

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