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评估半挥发性有机化合物(SVOC)测量中变异性来源的聚氨酯泡沫被动空气采样器的全球比对

Global intercomparison of polyurethane foam passive air samplers evaluating sources of variability in SVOC measurements.

作者信息

Melymuk Lisa, Nizzetto Pernilla Bohlin, Harner Tom, White Kevin B, Wang Xianyu, Tominaga Maria Yumiko, He Jun, Li Jun, Ma Jianmin, Ma Wan-Li, Aristizábal Beatriz H, Dreyer Annekatrin, Jiménez Begoña, Muñoz-Arnanz Juan, Odabasi Mustafa, Dumanoglu Yetkin, Yaman Baris, Graf Carola, Sweetman Andrew, Klánová Jana

机构信息

RECETOX, Masaryk University, Brno, Czech Republic.

NILU - Norwegian Institute for Air Research, Kjeller, Norway.

出版信息

Environ Sci Policy. 2021 Nov;125:1-9. doi: 10.1016/j.envsci.2021.08.003.

Abstract

Polyurethane foam passive air samplers (PUF-PAS) are the most common type of passive air sampler used for a range of semi-volatile organic compounds (SVOCs), including regulated persistent organic pollutants (POPs) and polycyclic aromatic hydrocarbons (PAHs), and emerging contaminants (e.g., novel flame retardants, phthalates, current-use pesticides). Data from PUF-PAS are key indicators of effectiveness of global regulatory actions on SVOCs, such as the Global Monitoring Plan of the Stockholm Convention on Persistent Organic Pollutants. While most PUF-PAS use similar double-dome metal shielding, there is no standardized dome size, shape, or deployment configuration, with many different PUF-PAS designs used in regional and global monitoring. Yet, no information is available on the comparability of data from studies using different PUF-PAS designs. We brought together 12 types of PUF-PAS used by different research groups around the world and deployed them in a multi-part intercomparison to evaluate the variability in reported concentrations introduced by different elements of PAS monitoring. PUF-PAS were deployed for 3 months in outdoor air in Kjeller, Norway in 2015-2016 in three phases to capture (1) the influence of sampler design on data comparability, (2) the influence of analytical variability when samplers are analyzed at different laboratories, and (3) the overall variability in global monitoring data introduced by differences in sampler configurations and analytical methods. Results indicate that while differences in sampler design (in particular, the spacing between the upper and lower sampler bowls) account for up to 50 % differences in masses collected by samplers, the variability introduced by analysis in different laboratories far exceeds this amount, resulting in differences spanning orders of magnitude for POPs and PAHs. The high level of variability due to analysis in different laboratories indicates that current SVOC air sampling data (i.e., not just for PUF-PAS but likely also for active air sampling) are not directly comparable between laboratories/monitoring programs. To support on-going efforts to mobilize more SVOC data to contribute to effectiveness evaluation, intercalibration exercises to account for uncertainties in air sampling, repeated at regular intervals, must be established to ensure analytical comparability and avoid biases in global-scale assessments of SVOCs in air caused by differences in laboratory performance.

摘要

聚氨酯泡沫被动空气采样器(PUF-PAS)是用于一系列半挥发性有机化合物(SVOCs)的最常见的被动空气采样器类型,这些化合物包括受管制的持久性有机污染物(POPs)和多环芳烃(PAHs),以及新兴污染物(例如新型阻燃剂、邻苯二甲酸盐、现行使用的农药)。来自PUF-PAS的数据是全球对SVOCs监管行动有效性的关键指标,例如《关于持久性有机污染物的斯德哥尔摩公约》的全球监测计划。虽然大多数PUF-PAS使用类似的双穹顶金属屏蔽,但没有标准化的穹顶尺寸、形状或部署配置,在区域和全球监测中使用了许多不同的PUF-PAS设计。然而,关于使用不同PUF-PAS设计的研究数据的可比性尚无信息。我们汇集了世界各地不同研究小组使用的12种PUF-PAS,并将它们进行多部分相互比较部署,以评估PAS监测不同要素所导致的报告浓度的变异性。2015年至2016年,PUF-PAS在挪威克耶勒的室外空气中分三个阶段部署了3个月,以获取:(1)采样器设计对数据可比性的影响;(2)在不同实验室分析采样器时分析变异性的影响;(3)采样器配置和分析方法差异所导致的全球监测数据的总体变异性。结果表明,虽然采样器设计的差异(特别是上下采样碗之间的间距)导致采样器收集的质量差异高达50%,但不同实验室分析所导致的变异性远远超过这一数值,导致持久性有机污染物和多环芳烃的差异跨越几个数量级。不同实验室分析导致的高度变异性表明,目前的SVOC空气采样数据(即不仅针对PUF-PAS,可能对主动空气采样也是如此)在不同实验室/监测计划之间无法直接比较。为了支持正在进行的调动更多SVOC数据以促进有效性评估的努力,必须建立定期重复的相互校准活动,以考虑空气采样中的不确定性,以确保分析的可比性,并避免因实验室性能差异导致的全球尺度空气中SVOC评估出现偏差。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3bed/8525512/14266734aabe/gr1.jpg

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