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Ultrafine Particles and PM2.5 at Three Urban Air Monitoring Stations in Northern Taiwan from 2011 to 2013

机译:2011年至2013年,台湾北部三个城市空气监测站的超细颗粒物和PM2.5

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In this study, long term measurements of PM2.5 and ultrafine particles (UFPs) for daily average mass concentration at Zhongshan (ZS), Sinjhuang (SJ), and Jhudong (JD) urban air monitoring stations were conducted from 2011 spring to 2013 autumn. The results showed that daily average UFPs mass concentrations in spring (average at 3 stations: 1.58 ± 0.74 μg m–3) and summer (average at 3 stations: 1.59 ± 0.53 μg m–3) were higher than those in autumn (average at 3 stations: 1.02 ± 0.28 μg m–3) and winter (average at 3 stations: 1.04 ± 0.48 μg m–3) due to the impacts by heavy traffic emission and new particle formation event. The effective density (ρeff) and dynamic shape factor (χ) for ultrafine particles (UFPs) were found to be 0.68 ± 0.16 g cm–3 and 2.06 ± 0.19, respectively, suggesting that the particle morphology was irregular shape. Based on the calculated ρeff and χ, the average number and surface area concentration ratio of UFPs to those of PM2.5 at these monitoring stations was determined to be 89.0 ± 5.5% and 42.1 ± 12.8%, respectively, suggesting that UFPs contribute significantly to the health-relevant PM2.5 aerosol fraction in these stations.
机译:在这项研究中,从2011年春季至2013年秋季,对中山(ZS),新庄(SJ)和J东(JD)城市空气监测站的PM2.5和超细颗粒(UFP)的每日平均质量浓度进行了长期测量。 。结果显示,春季(三个站点的平均值:1.58±0.74μgm-3)和夏季(三个站点的平均值:1.59±0.53μgm-3)的日均UFPs质量浓度高于秋季(三个站点的平均值)。 3个站点:1.02±0.28μgm–3)和冬季(3个站点的平均值:1.04±0.48μgm–3),这是由于交通拥堵和新的颗粒形成事件的影响。发现超细颗粒(UFPs)的有效密度(ρeff)和动态形状因子(χ)分别为0.68±0.16 g cm-3和2.06±0.19,表明颗粒形态为不规则形状。根据计算出的ρeff和χ,在这些监测站中UFP与PM2.5的平均数和表面积浓度比分别确定为89.0±5.5%和42.1±12.8%,表明UFP对这些站中与健康相关的PM2.5气溶胶分数。

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