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个人被动采样器的开发、特征描述和测试,用于测量气态元素汞的吸入暴露。

Development, characterization, and testing of a personal passive sampler for measuring inhalation exposure to gaseous elemental mercury.

机构信息

Department of Physical and Environmental Sciences, University of Toronto Scarborough, 1265 Military Trail, Toronto, Ontario M1C 1A4, Canada.

Department of Physical and Environmental Sciences, University of Toronto Scarborough, 1265 Military Trail, Toronto, Ontario M1C 1A4, Canada.

出版信息

Environ Int. 2021 Jan;146:106264. doi: 10.1016/j.envint.2020.106264. Epub 2020 Nov 20.

Abstract

Inhalation of gaseous elemental mercury (GEM) is an occupational exposure concern for workers handling elemental mercury or mercury-containing waste. GEM is also often present near historically mercury-contaminated sites, potentially resulting in low-level, chronic exposure of the wider population. Here we introduce a passive sampler for personal GEM monitoring which combines a radial porous diffusive barrier with an activated carbon sorbent. A total mercury analyzer is used to quantify GEM sorbed to the carbon by thermal decomposition, amalgamation, and atomic absorption spectroscopy. A sampling rate of 0.070 m/day was determined by calibrating the sampler at low and high concentrations. Deployments lasting 8 h result in limits of quantification well below 200 ng/m. The sampler has a measurement range of at least four orders of magnitude. Derived air concentrations were not statistically significantly different from those obtained by active air sampling but were more precise than those obtained using a personal pump. If properly stored, the sampler maintains low blank levels in high GEM environments. Affordability, sturdiness, simplicity, and the wide availability of total mercury analyzers make this sampler highly suited for monitoring GEM inhalation exposure, including in developing countries.

摘要

气态元素汞(GEM)的吸入是处理元素汞或含汞废物的工人的职业暴露关注点。GEM 也经常存在于历史上受汞污染的地点附近,可能导致更广泛人群的低水平、慢性暴露。在这里,我们引入了一种用于个人 GEM 监测的被动采样器,它将径向多孔扩散屏障与活性炭吸附剂结合在一起。总汞分析仪用于通过热分解、汞齐化和原子吸收光谱法来量化吸附在碳上的 GEM。通过在低浓度和高浓度下校准采样器,确定了 0.070 m/天的采样速率。8 小时的部署结果得出的定量下限远低于 200 ng/m。该采样器的测量范围至少有四个数量级。衍生的空气浓度与通过主动空气采样获得的浓度没有统计学上的显著差异,但比使用个人泵获得的浓度更精确。如果正确储存,采样器在高 GEM 环境中保持低空白水平。可负担性、坚固性、简单性以及总汞分析仪的广泛可用性使这种采样器非常适合监测 GEM 吸入暴露,包括在发展中国家。

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