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Size-dependent characteristics of diurnal particle concentration variation in an underground subway tunnel

机译:地下地铁隧道中昼夜颗粒物浓度变化的大小相关特征

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Understanding characteristics of diurnal particle concentration variation in an underground subway tunnel is important to reduce subway passengers' exposure to high levels of toxic particle pollution. In this study, real-time particle monitoring for eight consecutive days was done at a shelter located in the middle of a one-way underground subway tunnel in Seoul, Republic of Korea, during the summer of 2015. Particle mass concentration was measured using a dust monitor and particle number concentration using an optical particle counter. From the diurnal variations in PM10, PM2.5, and PM1, concentrations of particles larger than 0.54 mu m optical particle diameter were affected by train frequency whereas those of particles smaller than 0.54 mu m optical particle diameter were not changed by train frequency. Number concentration of particles smaller than 1.15 mu m optical particle diameter was dependent on outdoor ambient air particle concentration level, whereas that of particles larger than 1.15 mu m optical particle diameter was independent of outdoor ambient air due to low ventilation system transmission efficiency of micrometer-sized particles. In addition, an equation was suggested to predict the diurnal particle concentration in an underground tunnel by considering emission, ventilation, and deposition effects.
机译:了解地下地铁隧道中昼夜颗粒物浓度变化的特征对于减少地铁乘客暴露于高水平的有毒颗粒物污染非常重要。在这项研究中,2015年夏季,在大韩民国首尔的单向地下地铁隧道中间的一个庇护所中,连续八天进行了实时颗粒监测。灰尘监测器和使用光学粒子计数器的粒子数浓度。从PM10,PM2.5和PM1的日变化来看,大于0.54μm光学粒径的颗粒浓度受序列频率的影响,而小于0.54μm光学粒径的颗粒浓度不受序列频率的影响。小于1.15μm光学粒径的颗粒数浓度取决于室外环境空气颗粒浓度水平,而大于1.15μm光学粒径的颗粒数浓度密度与室外环境空气无关,这是因为微米的通风系统传输效率低。大小的颗粒。此外,建议了一个方程,通过考虑排放,通风和沉积效应来预测地下隧道中的日颗粒浓度。

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