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首页> 外文期刊>Journal of health science. >Analysis of Atmospheric Polycyclic Aromatic Hydrocarbons and Nitropolycyclic Aromatic Hydrocarbons in Gas/Particle Phases Separately Collected by a High-volume Air Sampler Equipped with a Column Packed with XAD-4 Resin
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Analysis of Atmospheric Polycyclic Aromatic Hydrocarbons and Nitropolycyclic Aromatic Hydrocarbons in Gas/Particle Phases Separately Collected by a High-volume Air Sampler Equipped with a Column Packed with XAD-4 Resin

机译:用装有XAD-4树脂的色谱柱的高容量空气进样器分别收集的气相/颗粒相中的大气多环芳烃和硝基多环芳烃的分析

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摘要

We developed a sampler for collecting atmospheric polycyclic aromatic hydrocarbons (PAHs) and nitropolycyclic aromatic hydrocarbons (NPAHs) by attaching a glass column packed with XAD-4 resin to the gas sampling port of a high-volume air sampler equipped with a filter. When the upper and bottom layers of the column were packed with 64 g and 32 g of XAD-4 resin, respectively, all PAHs and NPAHs in the gas phase were quantitatively collected in the XAD-4 resin column without any break through, while PAHs and NPAHs in the particle phase were collected on the filter. We collected air samples at suburban and downtown Kanazawa by using the proposed sampler. It was found that about 95% of 2-3 ring PAHs and more than 99% of 2-ring NPAHs existed chiefly in the gas phase, that 4-ring PAHs such as fluoranthene (FR) and pyrene (Pyr) and 3-ring NPAHs were in both the gas and particle phases and that the other PAHs and NPAHs having 4-rings or more except for FR and Pyr were almost completely in the particle phase. Our data also indicated that the adsorption of NPAHs to the particle phase in the atmosphere is controlled by the same mechanism as that of PAHs.
机译:通过将装有XAD-4树脂的玻璃柱连接到配有过滤器的大容量空气采样器的气体采样口,我们开发了一种采样器,用于收集大气中的多环芳烃(PAH)和硝基多环芳烃(NPAH)。当色谱柱的上层和底层分别填充有64 g和32 g XAD-4树脂时,气相中的所有PAH和NPAH被定量收集在XAD-4树脂柱中而没有任何突破,而PAHs颗粒相中的NPAH和NPAH被收集在过滤器上。我们使用拟议的采样器在金泽郊区和市区收集了空气样本。发现2-3环PAH中约有95%和2-环NPAH中超过99%主要存在于气相中,诸如荧蒽(FR)和pyr(Pyr)等4-环PAH和3-环NPAH既处于气相,又处于颗粒相,除FR和Pyr外,其他具有4个环或更多环的PAH和NPAH几乎完全处于颗粒相。我们的数据还表明,大气中NPAHs对颗粒相的吸附受与PAHs相同的机制控制。

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