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Temporal Distribution and Gas/Particle Partitioning of Polycyclic Aromatic Hydrocarbons (PAHs) in the Atmosphere of Strasbourg, France

机译:斯特拉斯堡,法国大气中多环芳烃(PAHS)的时间分布及气体/颗粒分配

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摘要

Gas and particulate phase ambient air concentrations of polycyclic aromatic hydrocarbons (Ʃ16PAHs) were determined in Strasbourg, a large city located in the Alsace region of northeastern France, from May 2018 to March 2020, to study the evolution of their temporal variations and their potential origins. The analysis of PAHs was performed using a global analytical method permitting the quantification of pesticides, PAHs, and polychlorobiphenyls (PCBs). Filters and Carbon doped silicon carbide NMC@SiC foams were extracted by accelerated solvent extraction (ASE) followed by a solid-phase extraction (SPE). Afterwards, extracts were analyzed using gas chromatography coupled to tandem mass spectrometry (GC-MS/MS). Prior to analysis, a pre-concentration step based on solid-phase microextraction (SPME) was used with a polydimethylsiloxane (PDMS) 100 µm fiber. The average total (gas plus particulate) concentration of Ʃ16PAHs varied from 0.51 to 117.31 ng m−3 with a mean of 16.87 ng m−3, with higher concentrations in the cold season of more than 2.5-fold and 6-fold that in the warm season for the gas and particulate phases, respectively. Moreover, low molecular weight (LMW) (2-ring and 3-ring) and medium molecular weight (MMW) (4-ring) PAHs contribute dominantly to the gas phase, while the particulate phase is associated with MMW (4-ring) and high molecular weight (HMW) (5-ring and 6-ring) PAHs. Gas/particle partitioning coefficient (log Kp) was calculated, and values varied between −4.13 and −1.49. It can be seen that the log Kp increased with the molecular weight of the PAHs and that the log Kp is different between cold and warm seasons for HMW PAHs but not for LMW PAHs. Diagnostic ratios of PAHs, which were employed to estimate the primary source of PAHs in Strasbourg, indicate that fuel combustion and biomass/coal burning are the possible origins of PAHs in Strasbourg’s atmosphere.
机译:在2018年5月至2020年5月,位于位于法国东北部的大城市的斯特拉斯堡(Σ16PAH)的气体和颗粒相环境空气浓度(σ16PAH),是在2018年5月至3月20日起,研究其时间变化及其潜在起源的演变。使用允许量化杀虫剂,PAHS和聚氯联合(PCB)的全局分析方法进行PAHS的分析。通过加速溶剂萃取(ASE)提取过滤器和碳掺杂碳化硅NMC泡沫释放件,然后用固相萃取(SPE)提取。然后,使用与串联质谱(GC-MS / MS)偶联的气相色谱法分析提取物。在分析之前,基于固相微萃取(SPME)的预浓缩步骤与聚二甲基硅氧烷(PDMS)100μM纤维一起使用。 σ16PAH的平均总量(气体加颗粒)浓度从0.51-117.31ng m-3变化,平均为16.87ng m-3,寒冷季节的浓度高于2.5倍,6倍温暖的季节分别为气体和颗粒阶段。此外,低分子量(LMW)(2环和3环)和中等分子量(MMW)(4环)PAHs主要贡献到气相,而颗粒相与MMW(4环)相关和高分子量(HMW)(5环和6环)PAHs。计算气体/粒子分配系数(LOG KP),值在-4.13和-1.49之间变化。可以看出,Log KP随着PAH的分子量而增加,并且LOG KP在HMW PAHS的寒冷和温暖的季节之间存在不同,但不是用于LMW PAHS。 PAHS的诊断比例用于估算斯特拉斯堡的PAHS主要来源,表明燃料燃烧和生物质/煤炭燃烧是斯特拉斯堡大气层的可能起源。

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