Liu Y, Sklorz M, Schnelle-Kreis J, Orasche J, Ferge T, Kettrup A, Zimmermann R
Department of Environmental Chemistry and Process Analysis, Bavarian Institute of Applied Environmental Research and Technology, BIfA, Am Mittleren Moos 46, 86167 Augsburg, Germany.
Chemosphere. 2006 Mar;62(11):1889-98. doi: 10.1016/j.chemosphere.2005.07.049. Epub 2005 Sep 8.
The concentrations of some polycyclic aromatic hydrocarbons (PAH) and oxygenated PAH (O-PAH) can be changed by oxidation reactions during sampling. This can lead to an over- or underestimation of the corresponding adverse health effects. The aim of this study was the evaluation of these sampling artefacts. The potential of using an oxidant denuder was shown by parallel low-volume sampling with and without MnO(2) ozone denuder. Twenty-three PAH and 11 O-PAH in ambient air were analysed, both in the vapour and particulate phase. The denuder was proven to be highly efficient for stripping ozone from air while causing no significant particle losses. In general, the concentrations of 5- to 7-ring PAH, which are predominantly associated with particles, were underestimated in non-denuded samples. The highest losses due to reaction with ozone and other atmospheric oxidants were observed for benzo[a]pyrene and perylene. Concurrently, the concentrations of most of the mainly particle-associated 4- to 5-ring O-PAH were higher in the non-denuded samples. The denuder did not only remove ozone, moreover other gaseous species such as more volatile PAH and O-PAH were partially oxidized on the catalytic surface, too. Degradation of PAH and concurrent degradation/formation reactions of O-PAH occurred. The corresponding reactivities of selected PAH and O-PAH are discussed.
在采样过程中,一些多环芳烃(PAH)和含氧多环芳烃(O-PAH)的浓度会因氧化反应而发生变化。这可能导致对相应健康危害的高估或低估。本研究的目的是评估这些采样假象。通过使用MnO₂臭氧捕集器进行有或无捕集器的平行小流量采样,展示了使用氧化剂捕集器的潜力。对环境空气中的23种PAH和11种O-PAH在气相和颗粒相中进行了分析。事实证明,该捕集器在从空气中去除臭氧方面非常高效,同时不会造成明显的颗粒损失。一般来说,主要与颗粒相关的5至7环PAH在未使用捕集器的样品中浓度被低估。观察到苯并[a]芘和苝与臭氧及其他大气氧化剂反应导致的损失最高。同时,大多数主要与颗粒相关的4至5环O-PAH在未使用捕集器的样品中浓度更高。该捕集器不仅能去除臭氧,此外,其他气态物质如挥发性更强的PAH和O-PAH在催化表面也会部分被氧化。PAH发生降解,O-PAH发生同时降解/生成反应。讨论了所选PAH和O-PAH的相应反应活性。