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首页> 外文期刊>Environmental Science & Technology >Atmospheric Reactions Influence Seasonal PAH and Nitro-PAH Concentrations in the Los Angeles Basin
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Atmospheric Reactions Influence Seasonal PAH and Nitro-PAH Concentrations in the Los Angeles Basin

机译:大气反应影响洛杉矶盆地的季节性PAH和Nitro-PAH浓度

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Ambient measurements of polycyclic aromatic hydrocarbons (PAHs) and nitro-PAHs were carried out during August 2002 and January 2003 in Los Angeles, CA, a source site and in Riverside, CA, a downwind receptor site ~90 km to the east of Los Angeles. Atmospheric concentrations of PAHs and nitro-PAHs are of interest because both of these compound classes include potent mutagens and carcinogens. To augment our current understanding of atmospheric formation of nitro-PAHs, four sampling periods were employed to study the diurnal variations of these compounds. The PAH concentrations were highest in Los Angeles during January, as a result of traffic input at this source site under tight wintertime atmospheric inversions. In contrast, nitro-PAH levels were highest in Riverside during August, as a result of enhanced summertime photochemistry. Hydroxyl radical-initiated reactions produced nitro-PAHs in both seasons, while in winter little evidence for nitrate radical chemistry was seen. For the August samples, nitrate radical-initiated formation of nitro-PAHs is suggested by nitro-PAH isomer profiles not only at the downwind location as anticipated, but also at the source site. In southern California, the contribution of atmospheric formation through gas-phase radical-initiated PAH reactions to the ambient burden of nitro-PAHs is dominant, with the semi-volatile nitro-PAHs being the most abundant and 2-nitro-fluoranthene being the major particle-associated nitro-PAH.
机译:在2002年8月至2003年1月间,在加利福尼亚州洛杉矶的原始站点和加利福尼亚州里弗赛德市(位于洛杉矶以东约90公里处的顺风受体站点)进行了多环芳烃(PAHs)和硝基PAHs的环境测量。 。大气中PAHs和硝基PAHs的浓度是令人感兴趣的,因为这两种化合物都包括有效的诱变剂和致癌物。为了增强我们目前对硝基PAHs大气形成的了解,采用了四个采样周期来研究这些化合物的日变化。一月份,洛杉矶的PAH浓度最高,这是由于该源站点在严冬冬季大气反转的情况下输入的流量。相比之下,由于夏季光化学增强,八月份河滨的硝基PAH含量最高。在两个季节中,羟基自由基引发的反应均产生硝基-PAH,而在冬季,几乎没有证据表明硝酸根自由基化学反应。对于8月份的样品,硝基-PAH异构体分布图表明,硝酸根自由基引发的硝基-PAHs形成不仅在预期的顺风位置,而且在源头也是如此。在加利福尼亚州南部,通过气相自由基引发的PAH反应形成大气对硝基PAHs的环境负荷起主要作用,其中半挥发性硝基PAHs含量最高,而2-硝基荧蒽是主要成分。颗粒相关的硝基PAH。

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