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Properties and sources of individual particles and some chemical species in the aerosol of a metropolitan underground railway station

机译:大都市地下火车站气溶胶中单个颗粒和某些化学物质的性质和来源

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Aerosol samples in PM _(10-2.0) and PM_(2.0) size fractions were collected on the platform of a metropolitan underground railway station in central Budapest. Individual aerosol particles were studied using atomic force microscopy, scanning electron microscopy and transmission electron microscopy with energy-dispersive X-ray spectrometry and electron diffraction. The bulk aerosol samples were investigated by ~(57)Fe Mossbauer spectroscopy, and they were subjected to chemical speciation analysis for Cr. The particles were classified into groups of iron oxides and iron, carbonates, silicates, quartz and carbonaceous debris. Electron micrographs showed that the Fe-rich particles in the PM_(2.0) size fraction typically consisted of aggregates of nano-sized hematite crystals that were randomly oriented, had round shapes and diameters of 5-15 nm. In addition to hematite, a minor fraction of the iron oxide particles also contained magnetite. In addition, the PM_(2.0)-fraction particles typically had a rugged surface with layered or granular morphologies. Mossbauer spectroscopy suggested that hematite was a major Fe-bearing species in the PM_(10-2.0) size fraction; its mass contribution to the Fe was 36%. Further constituents (ferrite, carbides and FeOOH) were also identified. The water soluble amounts of Cr for the underground railway station and city center were similar. In the PM_(10-2.0) size fraction, practically all dissolved Cr had an oxidation state of three, which corresponds to ambient conditions. In the PM2.0 size fraction, however, approximately 7% of the dissolved Cr was present as Cr(VI), which was different from that for the urban aerosol. It is suggested that the increased adverse health effects of aerosol particles in metros with respect to ambient outdoor particles is linked to the differences in the oxidation states, surface properties or morphologies.
机译:在布达佩斯市中心的一个大都市地下火车站的平台上,收集了PM_(10-2.0)和PM_(2.0)大小分数的气溶胶样品。使用原子力显微镜,扫描电子显微镜和透射电子显微镜以及能量色散X射线光谱和电子衍射研究了单个气溶胶颗粒。通过〜(57)Fe Mossbauer光谱对大量气溶胶样品进行了研究,并对它们进行了Cr的化学形态分析。颗粒分为氧化铁和铁,碳酸盐,硅酸盐,石英和碳质碎屑。电子显微照片显示,PM_(2.0)尺寸级分中的富铁颗粒通常由纳米尺寸的赤铁矿晶体的聚集体组成,这些纳米晶的赤铁矿晶体是随机取向的,形状为圆形,直径为5-15 nm。除赤铁矿外,一小部分氧化铁颗粒还含有磁铁矿。另外,PM_(2.0)-级分颗粒通常具有粗糙的表面,具有层状或粒状形态。 Mossbauer光谱表明,赤铁矿是PM_(10-2.0)尺寸级分中主要的含铁物质。它对铁的质量贡献为36%。还确定了其他成分(铁素体,碳化物和FeOOH)。地下火车站和市中心的水溶性铬含量相似。在PM_(10-2.0)尺寸分数中,几乎所有溶解的Cr的氧化态均为3,这与环境条件相对应。但是,在PM2.0尺寸分数中,大约7%的溶解Cr以Cr(VI)的形式存在,这与城市气溶胶不同。有人提出,相对于室外的室外颗粒,地铁中的气溶胶颗粒对健康的不利影响增加与氧化态,表面性质或形态的差异有关。

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