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Size-segregated urban particulate matter: mass closure chemical composition and primary and secondary matter content

机译:大小隔离的城市颗粒物:物质封闭化学成分以及初级和次级物质含量

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摘要

Forty-nine components of ambient particulate matter (PM) in size-fractionated PM were investigated at an urban background site in Katowice (Silesian Agglomeration in Southern Poland) in the non-heating season of 2012. PM was analyzed for two groups of carbon compounds (organic (OC) and elemental (EC) carbon, Lab OC-EC Aerosol Analyzer), five major water-soluble ions (NH4+, Cl, SO42−, NO3, and Na+ contents in PM water extracts, ion chromatography), 26 elements (X-ray fluorescence spectrometry), and 16 polycyclic aromatic hydrocarbons (PAHs, gas chromatography). The distributions of the masses of these components among 13 basic PM fractions were determined, and chemical mass closure was checked for each of these fractions separately. The particles having their aerodynamic diameters in the interval 0.03–0.26 μm, the fraction PM0.03–0.26, contributed about 13 % to the total PM mass. This PM fraction consisted of primary particles predominantly composed of various inorganic compounds, primary organic compounds, and, in lesser amounts, of elemental carbon, secondary ions, and secondary organic compounds. The second particle fraction, PM0.26–1.6, consisted mainly of secondary matter, and its mass contribution to the total PM mass was about 59 %. The third fraction, PM1.6–40, was a fraction of coarse particles composed of mineral/soil and organic matter and elemental carbon. It contributed to the PM mass about 28 %. For each of PM0.03–0.26, PM0.26–1.6, and PM1.6–40, the health hazard from its 16 PAH contents was determined by computing toxicity factors. PM0.26–1.6 posed the greatest health hazard from the mixture of the 16 PAHs that it contained, PM1.6–40 was the next, and the hazard from the PM0.03–0.26-bound 16 PAHs was the smallest. The molecular diagnostic ratios computed for these three fractions were specific for coal and wood combustion; some indicated the road traffic effects.
机译:在2012年非供暖季节的卡托维兹市(波兰南部西里西亚集聚区)的城市背景下,研究了大小分级PM中的四十九种颗粒物。分析了PM中的两类碳化合物(有机(OC)和元素(EC)碳,实验室OC-EC气溶胶分析仪),五个主要水溶性离子(NH4 + ,Cl -,SO4 2-−sup>,NO3 -和Na + 含量,离子色谱法,26种元素(X射线荧光光谱法)和16种元素多环芳烃(PAH,气相色谱)。确定了这些组分在13个基本PM馏分中的质量分布,并分别检查了每个馏分的化学质量封闭度。空气动力学直径在0.03-0.26μm范围内的颗粒(分数PM0.03-0.26)占总PM质量的13%。该PM级分由主要由各种无机化合物,主要有机化合物以及较少量的元素碳,仲离子和仲有机化合物组成的主要颗粒组成。第二个颗粒部分PM0.26-1.6主要由次要物质组成,其对总PM质量的质量贡献约为59%。第三部分,PM1.6–40,是由矿物/土壤,有机物和元素碳组成的粗颗粒部分。它对PM质量的贡献约为28%。对于PM0.03-0.26,PM0.26-1.6和PM1.6-40中的每一种,通过计算毒性因子可以确定其16 PAH含量对健康的危害。 PM0.26-1.6所含的16种PAH的混合物对健康的危害最大,其次是PM1.6-40,而与PM0.03-0.26结合的16种PAH的危害最小。计算出的这三个馏分的分子诊断率特定于煤和木材的燃烧。一些表明了道路交通的影响。

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