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加拿大一座 Söderberg 铝冶炼厂周边住宅室内和室外的多环芳烃。

Indoor and outdoor polycyclic aromatic hydrocarbons in residences surrounding a Söderberg aluminum smelter in Canada.

作者信息

Sanderson Eric G, Farant J P

机构信息

Department of Occupational Health, Faculty of Medicine, McGill University, Montreal, Quebec, Canada H3A 1A3.

出版信息

Environ Sci Technol. 2004 Oct 15;38(20):5350-6. doi: 10.1021/es030715c.

Abstract

Ambient air in 18 residences surrounding an aluminum smelter were sampled to study the relationship between indoor and outdoor polycyclic aromatic hydrocarbons (PAHs). Objectives of the study were to quantify the indoor distribution of PAHs, indoor/outdoor (I/O) concentration ratios, and the relationship among PAH compounds. Correlation coefficients inside residences suggested an indoor source of 2-3 ring PAHs and an external source of 4-6 ring PAHs. The I/O ratios of 4-6 ring PAHs for homes without any substantial indoor sources were below unity, indicating that the presence of these PAHs was attributable to the aluminum smelter. Least squares linear regression of the coupled measurements without indoor sources of 5-6 ring PAHs resulted in average infiltration efficiencies (P(PAH)) of 0.49, 0.20, and 0.47 for benzo[a]pyrene, benzo[k]fluoranthene, and benzo[g,h,i]perylene, respectively. These P(PAH) values suggest that simultaneous measurements of indoor and outdoor concentrations of PAHs > 4 rings predominantly associated with the fine fraction of particulate matter could provide useful estimates of particle infiltration efficiency. Overall, study results indicate that when an industrial facility is the main source of outdoor 4-6 ring PAHs, the contribution of facility emissions may greatly exceed indoor sources in nonsmoking residences.

摘要

对一家铝冶炼厂周围18所住宅的环境空气进行了采样,以研究室内和室外多环芳烃(PAHs)之间的关系。该研究的目的是量化PAHs在室内的分布、室内/室外(I/O)浓度比以及PAH化合物之间的关系。住宅内的相关系数表明,2 - 3环PAHs存在室内来源,4 - 6环PAHs存在外部来源。对于没有任何大量室内来源的家庭,4 - 6环PAHs的I/O比低于1,这表明这些PAHs的存在归因于铝冶炼厂。对没有5 - 6环PAHs室内来源的耦合测量进行最小二乘线性回归,结果显示苯并[a]芘、苯并[k]荧蒽和苯并[g,h,i]苝的平均渗透效率(P(PAH))分别为0.49、0.20和0.47。这些P(PAH)值表明,同时测量与颗粒物细颗粒部分主要相关的> 4环PAHs的室内和室外浓度,可以提供颗粒渗透效率的有用估计。总体而言,研究结果表明,当工业设施是室外4 - 6环PAHs的主要来源时,在无烟住宅中,设施排放的贡献可能大大超过室内来源。

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