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Differences in the composition of organic aerosols between winter and summer in Beijing: a study by direct-infusion ultrahigh-resolution mass spectrometry

机译:北京冬季与夏季有机气溶胶组成的差异:直接输注超高分辨率质谱研究

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This study investigates the chemical composition of PM2.5 collected at a central location in Beijing, China, during winter 2016 and summer 2017. The samples were characterised using direct-infusion negative-nano-electrospray-ionisation ultrahigh-resolution mass spectrometry to elucidate the composition and the potential primary and secondary sources of the organic fraction. The samples from the two seasons were compared with those from a road-tunnel site and an urban background site in Birmingham, UK, analysed in the course of an earlier study using the same method. There were strong differences in aerosol particle composition between the seasons, particularly regarding (poly-)aromatic compounds, which were strongly enhanced in winter, likely due to increased fossil fuel and biomass burning for heating. In addition to the seasonal differences, compositional differences between high- and low-pollution conditions were observed, with the contribution of sulfur-containing organic compounds strongly enhanced under high-pollution conditions. There was a correlation of the number of sulfur-containing molecular formulae with the concentration of particulate sulfate, consistent with a particle-phase formation process.
机译:本研究调查了在2016年北京和2017年夏季在中国北京市冬季收集的PM2.5的化学成分。使用直接输注负纳米电喷雾电离超高分辨率质谱法以阐明样品以阐明样品以阐明样品以阐明组成和有机级分的潜在初级和二次来源。将两种季节的样品与来自英国伯明翰的道路隧道场地和城市背景现场的样本进行了比较,在使用相同方法的早期研究过程中分析。季节之间的气溶胶颗粒组成有很大的差异,特别是在冬季强烈地增强的(聚丙烯)芳族化合物,可能由于增加化石燃料和用于加热的生物质燃烧。除了季节性差异外,观察到高污染条件与低污染条件之间的组成差异,在高污染条件下含硫的有机化合物的贡献强烈增强。含硫分子公式的数量与颗粒状硫酸盐浓度的相关性,与颗粒相形成过程一致。

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