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Mass closure on the chemical species in size-segregated atmospheric aerosol collected in an urban area of the Po Valley, Italy

机译:在意大利波谷市区收集的按尺寸分类的大气气溶胶中的化学物质进行大规模封闭

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A complete size segregated chemical characterisation was carried out for aerosol samples collected in the urban area of Bologna over a period of one year, using five-stage low pressure Berner impactors. An original dual-substrate technique was adopted to obtain samples suitable for a complete chemical characterisation. Total mass, inorganic, and organic components were analysed as a function of size, and a detailed characterisation of the water soluble organic compounds was also performed by means of a previously developed methodology, based on HPLC separation of organic compounds according to their acid character and functional group analysis by Proton Nuclear Magnetic Resonance. Chemical mass closure of the collected samples was reached to within a few percent on average in the submicron aerosol range, while a higher unknown fraction in the coarse aerosol range was attributed to soil-derived species not analysed in this experiment. Comparison of the functional group analysis results with model results simulating water soluble organic compound production by gas-to-particle conversion of anthropogenic VOCs showed that this pathway provides a minor contribution to the organic composition of the aerosol samples in the urban area of Bologna.
机译:使用五级低压伯纳撞击器,对博洛尼亚市区一年内收集的气溶胶样品进行了完整尺寸的分离化学表征。采用原始的双底物技术来获得适合于完整化学表征的样品。分析了总质量,无机和有机成分随尺寸的变化,还根据先前开发的方法对水溶性有机化合物进行了详细的表征,该方法基于有机化合物的酸性质和质子核磁共振对官能团进行分析。在亚微米气溶胶范围内,收集到的样品的化学质量平均封闭程度平均在百分之几以内,而在粗气溶胶范围内更高的未知分数归因于本实验中未分析的土壤来源物种。官能团分析结果与模拟结果的比较,模拟结果通过人为挥发性有机化合物的气-粒转化模拟了水溶性有机化合物的生产,表明该途径对博洛尼亚市区的气溶胶样品的有机组成影响不大。

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