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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Airborne measurements of western U.S. wildfire emissions: Comparison with prescribed burning and air quality implications
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Airborne measurements of western U.S. wildfire emissions: Comparison with prescribed burning and air quality implications

机译:美国野火排放的空中测量:与规定的燃烧和空气质量影响的比较

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摘要

Wildfires emit significant amounts of pollutants that degrade air quality. Plumes from three wildfires in the western U.S. were measured from aircraft during the Studies of Emissions and Atmospheric Composition, Clouds and Climate Coupling by Regional Surveys (SEAC~4RS) and the Biomass Burning Observation Project (BBOP), both in summer 2013. This study reports an extensive set of emission factors (EFs) for over 80 gases and 5 components of submicron particulate matter (PM_1) from these temperate wildfires. These include rarely, or never before, measured oxygenated volatile organic compounds and multifunctional organic nitrates. The observed EFs are compared with previous measurements of temperate wildfires, boreal forest fires, and temperate prescribed fires. The wildfires emitted high amounts of PM_1 (with organic aerosol (OA) dominating the mass) with an average EF that is more than 2 times the EFs for prescribed fires. The measured EFs were used to estimate the annual wildfire emissions of carbon monoxide, nitrogen oxides, total nonmethane organic compounds, and PM_1 from 11 western U.S. states. The estimated gas emissions are generally comparable with the 2011 National Emissions Inventory (NEI). However, our PM_1 emission estimate (1530 ± 570 Gg yr~(-1)) is over 3 times that of the NEI PM_(2.5) estimate and is also higher than the PM_(2.5) emitted from all other sources in these states in the NEI. This study indicates that the source of OA from biomass burning in the western states is significantly underestimated. In addition, our results indicate that prescribed burning may be an effective method to reduce fine particle emissions. Plain Language Summary Wildfires emit large amounts of pollutants. This work quantifies the emissions of a range of both gaseous and particulate species from U.S. wildfires using measurements performed on research aircraft. The results indicate that wildfires are a large source of particulate pollution in the western states and that the source is currently underestimated by more than a factor of three in emissions inventories. Comparison of these results to those obtained from prescribed burning indicates that wildfires are a larger source of pollution.
机译:野火发出大量污染物,降低了空气质量。美国西部三种野火的羽毛是在2013年夏季的排放和大气成分,云和气候偶联的污水和大气组成,云和气候偶联期间测量的。这项研究报告了超过80个气体的80多种气体和5种成分的大量排放因子(EFS),来自这些温带野火的亚微粒颗粒物质(PM_1)。这些很少或从未在之前,测得的含氧挥发性有机化合物和多官能有机硝酸盐。观察到的EFS与先前的温带野火,北方森林火灾和温带节制火灾进行了比较。野火发出大量PM_1(有机气溶胶(OA)主导质量),平均EF是超过EF的EFS用于规定的火灾的2倍。测量的EFS用于估计一氧化碳,氮氧化物,总非甲烷有机化合物和来自11个美国西部的野火排放的年野火排放和PM_1。估计的气体排放通常与2011年国家排放库存(NEI)相当。但是,我们的PM_1发射估计(1530±570 gg YR〜(-1))是NEI PM_(2.5)估计的3倍,并且也高于这些国家的所有其他来源排放的PM_(2.5) nei。本研究表明,西方国家生物量燃烧的OA的来源显着低估了。此外,我们的结果表明规定的燃烧可能是减少细颗粒排放的有效方法。普通语言摘要野火发出大量的污染物。这项工作通过在研究飞机上进行的测量来量化来自美国野火的一系列气态和颗粒物种的排放量。结果表明,野火是西方国家的大型颗粒污染来源,目前的来源是低估了排放量度的超过了三个。这些结果对由规定的燃烧获得的结果的比较表明野火是更大的污染源。

著录项

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  • 作者单位

    School of Earth and Atmospheric Sciences Georgia Institute of Technology Atlanta Georgia USA;

    School of Earth and Atmospheric Sciences Georgia Institute of Technology Atlanta Georgia USA;

    Department of Chemistry University of Montana Missoula Montana USA;

    Department of Chemistry University of Montana Missoula Montana USA;

    Department of Chemistry University of California Irvine California USA;

    Department of Chemistry University of Montana Missoula Montana USA;

    Cooperative Institute for Research in Environmental Sciences University of Colorado Boulder Boulder Colorado USA;

    Cooperative Institute for Research in Environmental Sciences University of Colorado Boulder Boulder Colorado USA;

    NASA Langley Research Center Hampton Virginia USA;

    Department of Chemistry University of California Irvine California USA;

    Earth and Environmental Sciences Division Los Alamos National Laboratory Los Alamos New Mexico USA;

    NASA Langley Research Center Hampton Virginia USA;

    Division of Geological and Planetary Sciences California Institute of Technology Pasadena California USA;

    Cooperative Institute for Research in Environmental Sciences University of Colorado Boulder Boulder Colorado USA;

    NASA Langley Research Center Hampton Virginia USA;

    Earth and Environmental Sciences Division Los Alamos National Laboratory Los Alamos New Mexico USA;

    Center for Aerosol and Cloud Chemistry Aerodyne Research Inc. Billerica Massachusetts USA;

    Atmospheric Chemistry and Dynamics Laboratory NASA Goddard Space Flight Center Greenbelt Maryland USA;

    Cooperative Institute for Research in Environmental Sciences University of Colorado Boulder Boulder Colorado USA;

    School of Earth and Atmospheric Sciences Georgia Institute of Technology Atlanta Georgia USA;

    Environmental and Climate Sciences Department Brookhaven National Laboratory Upton New York USA;

    Department of Chemistry University of California Irvine California USA;

    Department of Chemistry University of Oslo Oslo Norway;

    Center for Aerosol and Cloud Chemistry Aerodyne Research Inc. Billerica Massachusetts USA;

    Cooperative Institute for Research in Environmental Sciences University of Colorado Boulder Boulder Colorado USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

    Comparison; measurements; Airborne;

    机译:比较;测量;空气传播;

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