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Online measurement of carbonaceous aerosols in suburban Shanghai during winter over a three-year period: Temporal variations, meteorological effects, and sources

机译:三年期间冬季上海郊区碳质气溶胶的在线测量:时间变化,气象影响和来源

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摘要

Carbonaceous aerosols have adverse effects on both human health and the climate. To understand the temporal variations and sources of carbonaceous aerosols, organic carbon (OC) and elemental carbon (EC) were measured hourly in suburban Shanghai in 2015-2017 during winter. The average OC concentrations were 7.34 +/- 4.51 mu gC/m(3) in 2015, 7.16 +/- 4.43 mu gC/m(3) in 2016, and 6.4 +/- 3.22 mu gC/m(3) in 2017. The EC concentrations decreased significantly each year, with average concentrations of 3.82 +/- 2.43, 2.91 +/- 2.28, and 2.46 +/- 1.88 mu gC/m(3), respectively, which caused the OC/EC ratio to increase from 2015 to 2017. Although the meteorological conditions differed each winter, there was a similar pattern of OC and EC diurnal variations, with concentrations peaking at 08:00 and 20:00, largely due to rush-hour vehicle emissions. A downward trend of EC/CO and EC/NO2 (mass ratios) but steady CO and NO2 concentrations from 2015 to 2017 revealed that the characteristics of primary vehicle emissions changed, and that less EC was emitted. Secondary organic carbon (SOC) and primary organic carbon (POC) were estimated with the minimum R-2 (MRS) method. The hiemal SOC/OC values in suburban Shanghai were 19.2 +/- 18.6% in 2015, 31.1 +/- 18.6% in 2016, and 51.0 +/- 21.4% in 2017, exhibiting an increasing trend. As the PM2.5 concentration increased (from 0 to 50 mu g/m(3) to 100-300 mu g/m(3)), a decreasing SOC/OC ratio (from 43.6 +/- 23.9% to 21.8 +/- 17.7%) was observed over the three years, showing that primary emissions were the main contributors to carbonaceous aerosols on haze days. Case analysis of haze events further demonstrated that the primary sources of OC and EC were vehicle emissions. The contributions of biomass burning and coal combustion to carbonaceous aerosols became less important over the study period. This study highlights the importance of controlling vehicle emissions to reduce carbonaceous aerosol concentrations in the suburbs of the Chinese megacity, Shanghai.
机译:碳质气溶胶对人类健康和气候都有不利影响。为了解碳质气溶胶的时间变化和来源,我们在2015-2017年冬季每小时对上海郊区的有机碳(OC)和元素碳(EC)进行了测量。 2015年的平均OC浓度为7.34 +/- 4.51μgC / m(3),2016年为7.16 +/- 4.43μgC / m(3),2017年为6.4 +/- 3.22μgC / m(3) 。EC浓度每年显着下降,平均浓度分别为3.82 +/- 2.43、2.91 +/- 2.28和2.46 +/- 1.88μgC / m(3),这导致OC / EC比率增加从2015年到2017年。尽管每个冬季的气象条件都不同,但OC和EC的日变化有相似的模式,其浓度在08:00和20:00达到峰值,这主要是由于高峰时段的车辆排放。从2015年到2017年,EC / CO和EC / NO2(质量比)呈下降趋势,但CO和NO2浓度保持稳定,这表明主要车辆排放的特征发生了变化,并且EC排放量减少了。使用最小R-2(MRS)方法估算了次级有机碳(SOC)和初级有机碳(POC)。上海郊区的SOC / OC值在2015年为19.2 +/- 18.6%,在2016年为31.1 +/- 18.6%,在2017年为51.0 +/- 21.4%,呈上升趋势。随着PM2.5浓度的增加(从0到50μg / m(3)到100-300μg / m(3)),SOC / OC比率降低(从43.6 +/- 23.9%降至21.8 + / -三年期间观察到-17.7%),这表明雾霾天主要排放是碳质气溶胶的主要贡献者。雾霾事件的案例分析进一步表明,OC和EC的主要来源是车辆排放物。在研究期间,生物质燃烧和煤炭燃烧对碳质气溶胶的贡献变得不那么重要。这项研究强调了控制车辆排放以降低中国大城市上海郊区含碳气溶胶浓度的重要性。

著录项

  • 来源
    《Atmospheric environment》 |2020年第4期|117408.1-117408.11|共11页
  • 作者

  • 作者单位

    Shanghai Normal Univ Sch Environm & Geog Sci Dept Environm Engn Shanghai 200234 Peoples R China;

    Shanghai Environm Monitoring Ctr Shanghai 200235 Peoples R China;

    Fudan Univ Dept Environm Sci & Engn Shanghai 200438 Peoples R China;

    Fudan Univ Dept Environm Sci & Engn Shanghai 200438 Peoples R China|Inst Ecochongming 3663 Zhongshan Rd Shanghai 200062 Peoples R China|Chinese Acad Sci Ctr Excellence Reg Atmospher Environm Inst Urban Environm Xiamen 361021 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Organic carbon; Elemental carbon; PM2.5; Temporal variations; Vehicle emissions;

    机译:有机碳元素碳PM2.5;时间变化;车辆排放;
  • 入库时间 2022-08-18 05:18:01

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