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Measurements of I/SVOCs in biomass-burning smoke using solid-phase extraction disks and two-dimensional gas chromatography

机译:使用固相萃取盘和二维气相色谱法测量生物质燃烧烟雾中的I / SVOC

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Biomass-burning organic-aerosol (OA) emissions are known to exhibit semi-volatile behavior that impacts OA loading during plume transport. Because such semi-volatile behavior depends in part on OA composition, improved speciation of intermediate and semi-volatile organic compounds (I/SVOCs) emitted during fires is needed to assess the competing effects of primary OA volatilization and secondary OA production. In this study, 18 laboratory fires were sampled in which a range of fuel types were burned. Emitted I/SVOCs were collected onto Teflon filters and solid-phase extraction (SPE) disks to qualitatively characterize particulate and gaseous I/SVOCs, respectively. Derivatized filter extracts were analyzed using comprehensive two-dimensional gas chromatography with time-of-flight mass spectrometry (GC × GC-TOFMS). Quality control tests were performed using biomass-burning relevant standards and demonstrate the utility of SPE disks for untargeted analysis of air samples. The observed chromatographic profiles of I/SVOCs in coniferous fuel-derived smoke samples were well correlated with each other, but poorly correlated with other fuel types (e.g., herbaceous and chaparral fuels). Emissions of benzenediol isomers were also shown to be fuel dependent. The combined Teflon and SPE filter data captured differences in gas-particle partitioning of the benzenediol isomers, with hydroquinone having a significantly higher particle-phase fraction than catechol due to its lower volatility. Additionally, the speciated volatility distribution of I/SVOCs in smoke from a rotten-log fire was estimated to evaluate the composition of potentially volatilized primary OA, which was entirely attributed to oxygenated (or other heteroatomic) compounds. The isomer-dependent partitioning and the speciated volatility distributions both suggest the need for better understanding of gas-phase and heterogenous reaction pathways of biomass-burning-derived I/SVOCs in order to represent the atmospheric chemistry of smoke in models.
机译:众所周知,燃烧生物质的有机气溶胶(OA)排放物表现出半挥发性行为,在烟羽运输过程中会影响OA的负荷。由于这种半挥发性行为部分取决于OA的组成,因此需要改善大火过程中散发的中间和半挥发性有机化合物(I / SVOC)的形态,以评估一次OA挥发和二次OA产生的竞争影响。在这项研究中,对18种实验室火灾进行了采样,其中燃烧了多种燃料。排放的I / SVOC被收集到特富龙过滤器和固相萃取(SPE)盘上,以分别定性地表征颗粒和气态I / SVOC。使用具有飞行时间质谱(GC×GC-TOFMS)的全面二维气相色谱法分析了衍生的滤膜提取物。使用燃烧生物质的相关标准进行了质量控制测试,并证明了SPE圆盘可用于空气样本的非目标分析。在针叶燃料来源的烟雾样品中观察到的I / SVOC色谱图谱相互关联性很好,但与其他燃料类型(例如草本燃料和丛林燃料)的相关性却很差。苯二醇异构体的排放也被证明与燃料有关。聚四氟乙烯和SPE过滤器的组合数据捕获了苯酚异构体在气体颗粒分配方面的差异,对苯二酚由于其较低的挥发性而具有比邻苯二酚明显更高的颗粒相分数。此外,估计了燃木燃放的烟雾中I / SVOC的特定挥发性分布,以评估潜在挥发的一次OA的成分,该成分完全归因于氧化(或其他杂原子)化合物。异构体相关的分配和特定的挥发性分布都表明需要更好地了解生物质燃烧衍生的I / SVOC的气相和异相反应途径,以便在模型中表示烟雾的大气化学性质。

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