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扩散式采样器中二氧化氮和二氧化硫标准物质的制备及定值可行性研究

Feasibility study of preparation and certification of reference materials for nitrogen dioxide and sulfur dioxide in diffusive samplers.

作者信息

Gerboles Michel, Buzica Daniela, Amantini Luciano, Lagler Friedrich, Hafkenscheid Theo

机构信息

European Commission-Joint Research Centre, Institute for Environment and Sustainability, Emissions and Health Unit, 21020, Ispra, Italy.

出版信息

J Environ Monit. 2006 Jan;8(1):174-82. doi: 10.1039/b509559j. Epub 2005 Nov 10.

Abstract

This paper presents the results of a feasability study for the preparation and certification of reference materials (RMs) for nitrogen dioxide (NO(2)) and sulfur dioxide (SO(2)) in diffusive samplers. RMs for NO(2) were prepared by exposure to gas mixtures in a chamber while the RMs for SO(2) were prepared by liquid spiking. Certification of RMs for NO(2) was found feasible with a certified uncertainty of 5.8% and a proposed shelf life of 5 years. The uncertainty was calculated with contribution from the homogeneity of preparation, stability and transport of the CRMs and from an external verification of the certified value. To reach 5.8% of uncertainty, the contribution of the differences between the results of analysis by ion chromatography and colorimetry must be eliminated. It is proposed to solve this by pre-extracting the samplers with water before analysis. The results of this study indicate that the samplers are stable for at least two years before and after exposure when stored in a refrigerator. By contrast, the certification of RMs for SO(2) was found to not be feasible due to instability problems. This instability was attributed to reaction of sulfate on the walls of the samplers. Alternatively, the preparation of RMs by simultaneous exposure to SO(2) and NO(2) has been tested. Satisfying homogeneities has been reached both for NO(2) and SO(2).

摘要

本文介绍了一项关于扩散式采样器中二氧化氮(NO₂)和二氧化硫(SO₂)参考物质(RM)制备与认证的可行性研究结果。NO₂的RM通过在腔室内暴露于气体混合物中来制备,而SO₂的RM则通过液体加标来制备。发现NO₂的RM认证是可行的,认证不确定度为5.8%,建议保质期为5年。该不确定度是根据制备的均匀性、CRM的稳定性和运输以及认证值的外部验证的贡献来计算的。为了达到5.8%的不确定度,必须消除离子色谱法和比色法分析结果之间差异的贡献。建议通过在分析前用水对采样器进行预萃取来解决这个问题。本研究结果表明,采样器在暴露前后储存在冰箱中时至少两年是稳定的。相比之下,由于稳定性问题,发现SO₂的RM认证不可行。这种不稳定性归因于采样器壁上硫酸盐的反应。另外,已经测试了通过同时暴露于SO₂和NO₂来制备RM。对于NO₂和SO₂都达到了令人满意的均匀性。

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