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Particle emissions of a railway line determined by detailed single particle analysis

机译:通过详细的单颗粒分析确定的铁路线颗粒排放

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The goal of this study was to identify and quantify particles emitted from railway traffic. For that purpose PM10 samples were collected near a busy railway line using a wind direction and speed controlled sampling equipment consisting of five devices. Measurements taken perpendicular to the railway lines at 10, 36 and 120 m distance enable an identification and separation of particles caused by the railway traffic from background particles. Morphology and chemistry of more than 11,000 particles were analysed by computer controlled scanning electron microscopy (CCSEM). Based on chemical composition five particle classes are defined and assigned to their sources. The mass of the individual particles is determined by multiplying their volumes, calculated based on their morphology with a density assigned specifically to each particle class. The density of the particle classes is derived from their chemical composition. To estimate the PM10 contributions of the railway lines, the mass of PM10 at 120 m (background, not influenced by the railway lines) is subtracted from the mass of PM10 at 10 m. The emissions of the railway lines are dominated by 'iron' particles, which contribute 2.9 μgm~(-3) or 67% to the railway related PM10. In addition, 'aluminium' and 'calcium' particles contribute also to the railway related PM10 (1.0 μg m~(-3) or 23% for the 'aluminium' and 0.4μg m~(-3) or 10% for the 'calcium' particles). These particles are assigned to abrasion of the gravel bed and re-suspension of mineral dust. Long-term gravimetric results of the contribution of iron to the mass of railway related PM10 from a study performed earlier at the same site are in good agreement with the data presented in this study.
机译:这项研究的目的是识别和量化铁路交通产生的颗粒。为此,使用风向和速度控制的采样设备(由五个设备组成)在繁忙的铁路线上收集PM10样品。垂直于铁路线以10、36和120 m的距离进行的测量可以识别和分离由铁路交通造成的颗粒与背景颗粒。通过计算机控制扫描电子显微镜(CCSEM)分析了超过11,000个颗粒的形态和化学性质。根据化学成分,定义了五个粒子类别并将其分配给它们的来源。单个粒子的质量是通过将其体积乘以其形态来确定的,再乘以专门分配给每个粒子类别的密度。颗粒类别的密度源自其化学组成。为了估算铁路线中PM10的贡献,从10 m处的PM10质量中减去120 m处的PM10质量(背景,不受铁路线的影响)。铁路线的排放以“铁”颗粒为主,铁颗粒占铁路相关PM10的2.9μgm〜(-3)或67%。此外,“铝”和“钙”颗粒也对铁路相关的PM10产生了影响(“铝”为1.0μgm〜(-3)或23%,铁为10μ%为0.4μgm〜(-3)或10%。钙颗粒)。这些颗粒被分配用于砾石床的磨损和矿物粉尘的重新悬浮。早先在同一地点进行的一项研究得出的铁对铁路相关PM10的质量的长期重量分析结果与本研究中提供的数据非常吻合。

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