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Nitro polycyclic aromatic hydrocarbons in atmospheric particulate matter of Athens, Greece

机译:希腊雅典大气颗粒物中的硝基多环芳烃

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Polycyclic aromatic hydrocarbons (PAHs) and nitro polycyclic aromatic hydrocarbons (N-PAHs) are chemical species of proven mutant and carcinogenic activity. In this study, the concentrations of seven different N-PAHs [2-nitronaphthalene (2N-NAP), 2-nitroflourene (2N-FLU), 2-nitroflouranthene (2N-FLA), 3-nitroflouranthene (3N-FLA), 1-nitropyrene (1N-PYR) and 2-nitropyrene (2N-PYR)] were determined in two fractions of atmospheric particulate matter from the atmosphere of Athens: coarse (2.4 μm 10 μm) and fine ( < 2.4 μm). 3N-FLA was not detected, whereas 1N-PYR, mostly originating from emissions from burning fuel, showed the maximum observed concentrations for both fractions and for the whole-experimental period (especially during winter). In addition, 2N-FLA, a secondary nitro-PAH produced by photochemical reactions, showed relatively high values. Analysis of statistical data for N-PAH concentrations, using clustering technique, showed that: 1N-NAP, 2N-FLU and 1N-PYR are mainly produced by direct burning; and photochemical reactions are the dominant sources of 2N-NAP, 2N-PYR and 2N-FLA.
机译:多环芳烃(PAH)和硝基多环芳烃(N-PAH)是已证明具有突变和致癌活性的化学物质。在这项研究中,七种不同N-PAHs的浓度[2-硝基萘(2N-NAP),2-硝基氟丁烯(2N-FLU),2-硝基氟丁烯(2N-FLA),3-硝基氟丁烯(3N-FLA),1在雅典大气中的两部分大气颗粒物中测定了-硝基nitro(1N-PYR)和2-硝基py(2N-PYR)]:粗颗粒(2.4μm 10μm)和细颗粒(<2.4μm)。未检测到3N-FLA,而1N-PYR主要来自燃烧燃料的排放,在两个馏分和整个实验期间(尤其是冬季)都显示出最大的观测浓度。另外,通过光化学反应产生的仲硝基-PAH 2N-FLA显示出相对较高的值。使用聚类技术分析N-PAH浓度的统计数据表明:1N-NAP,2N-FLU和1N-PYR主要是通过直接燃烧产生的;光化学反应是2N-NAP,2N-PYR和2N-FLA的主要来源。

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