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Biomass burning aerosols observed in Eastern Finland during the Russian wildfires in summer 2010 - Part 1: In-situ aerosol characterization

机译:在2010年夏季俄罗斯野火期间在芬兰东部观察到的生物质燃烧气溶胶-第1部分:原位气溶胶表征

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摘要

Biomass burning smoke and associated aerosol particles from wildfires near Moscow, Russia during summer 2010 had a significant impact on air quality both in the close vicinity of the burning area and to a lesser extent in other parts of Eastern Europe. Smoke was also observed in Eastern Finland, about 1000 km northwest of the fire area, in city of Kuopio, at Puijo tower atmospheric measurement station and at the city of Kuopio air quality monitoring sites. The origin of air masses was confirmed by remote sensing observations and trajectory analyses. Despite the distance between Kuopio and the fire area and a travel time of 1 -2 days, exceptional physical and optical properties of aerosol particles were evident. During smoke events, aerosol particles twice as large (geometric mean diameter 158 nm) as in background conditions (geometric mean diameter 76.3 nm) were observed and they contained record-breaking amounts of black carbon, up to 1.23 μg m~(-3), which exceeds typical values by a factor of 12. Thus, absorption coefficient was significantly different when compared to background summer conditions (8.12 Mm~(-1) vs. 0.651 Mm~(-1). Also scattering coefficients experienced a remarkable increase, on average from 12.0 Mm((-1), 7.2 Mm~(-1) and 4.2 Mm~(-1) to 245 Mm~(-1),169 Mm~(-1) and 111 Mm~(-1) for blue, green and red light, respectively. The amount of particulate mass also experienced a multifold increase. Depending on the measurement site, PM2.5 grew from 3 to 6 μg m~(-3) to 34-48 μg m~(-3) and PM_(10) from 4 to 17 μg m~(-3) to 40-76 μg m~(-3). Trace gas concentrations were also affected by the smoke presence, especially carbon monoxide, which is commonly used as a tracer for biomass burning smoke. The concentration of nitric oxide, nitrogen dioxide, ozone and sulfur dioxide was affected only moderately and partly masked by the emissions from local pollutant sources.
机译:2010年夏季,俄罗斯莫斯科附近野火燃烧的生物质燃烧的烟雾和相关的气溶胶颗粒对燃烧区附近和东欧其他地区的空气质量产生了重大影响。在火区西北约1000公里的芬兰东部,库奥皮奥市,Puijo塔大气测量站和库奥皮奥市空气质量监测点也观察到了烟雾。气团的起源已通过遥感观测和轨迹分析得到了证实。尽管库奥皮奥与火区之间的距离较远,且飞行时间为1 -2天,但气溶胶颗粒仍具有出色的物理和光学性能。在烟雾事件中,观察到的气溶胶颗粒(几何平均直径为158 nm)是背景条件(几何平均直径为76.3 nm)的两倍,并且其破纪录的黑碳含量高达1.23μgm〜(-3)。 ,比典型值高出12倍。因此,与夏季背景条件相比,吸收系数显着不同(8.12 Mm〜(-1)对0.651 Mm〜(-1)。散射系数也显着增加,平均从12.0 Mm((-1),7.2 Mm〜(-1)和4.2 Mm〜(-1)到245 Mm〜(-1),169 Mm〜(-1)和111 Mm〜(-1)分别为蓝色,绿色和红色光,颗粒物质量也呈倍数增加,根据测量部位的不同,PM2.5从3到6μgm〜(-3)增长到34-48μgm〜( -3)和PM_(10)从4到17μgm〜(-3)到40-76μgm〜(-3)。痕量气体浓度也受烟雾存在的影响,特别是一氧化碳作为生物质燃烧的示踪剂烟。一氧化氮,二氧化氮,臭氧和二氧化硫的浓度仅受到中等程度的影响,部分被当地污染物源的排放所掩盖。

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  • 来源
    《Atmospheric environment》 |2012年第2期|p.269-278|共10页
  • 作者单位

    Finnish Meteorological Institute, Kuopio Unit, POB 1627, Kuopio FI-70211, Finland,University of Eastern Finland, Department of Applied Physics, POB 1627, Kuopio FI-70211, Finland;

    Finnish Meteorological Institute, Kuopio Unit, POB 1627, Kuopio FI-70211, Finland;

    Finnish Meteorological Institute, Kuopio Unit, POB 1627, Kuopio FI-70211, Finland;

    Finnish Meteorological Institute, Kuopio Unit, POB 1627, Kuopio FI-70211, Finland;

    City of Kuopio, Environmental Services, Puijonkatu 22 A, FI-70110, Finland;

    University of Eastern Finland, Department of Applied Physics, POB 1627, Kuopio FI-70211, Finland;

    University of Eastern Finland, Department of Applied Physics, POB 1627, Kuopio FI-70211, Finland, Finnish Meteorological Institute, Research and Development, POB 503, Helsinki FI-00101 Finland;

    Finnish Meteorological Institute, Kuopio Unit, POB 1627, Kuopio FI-70211, Finland,University of Eastern Finland, Department of Applied Physics, POB 1627, Kuopio FI-70211, Finland;

    Finnish Meteorological Institute, Kuopio Unit, POB 1627, Kuopio FI-70211, Finland;

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

    biomass burning; particulate matter; black carbon; light scattering;

    机译:生物质燃烧颗粒物黑炭光散射;

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