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生物质燃烧有机气溶胶挥发性对火灾下风处烟雾浓度的影响。

Impact of Biomass Burning Organic Aerosol Volatility on Smoke Concentrations Downwind of Fires.

机构信息

Department of Chemistry, University of Colorado Boulder, Boulder 80309, Colorado, United States.

Cooperative Institute for Research in Environmental Sciences (CIRES), University of Colorado, Boulder 80309, Colorado, United States.

出版信息

Environ Sci Technol. 2023 Nov 7;57(44):17011-17021. doi: 10.1021/acs.est.3c05017. Epub 2023 Oct 24.

DOI:10.1021/acs.est.3c05017
PMID:37874964
Abstract

Biomass burning particulate matter (BBPM) affects regional air quality and global climate, with impacts expected to continue to grow over the coming years. We show that studies of North American fires have a systematic altitude dependence in measured BBPM normalized excess mixing ratio (NEMR; ΔPM/ΔCO), with airborne and high-altitude studies showing a factor of 2 higher NEMR than ground-based measurements. We report direct airborne measurements of BBPM volatility that partially explain the difference in the BBPM NEMR observed across platforms. We find that when heated to 40-45 °C in an airborne thermal denuder, 19% of lofted smoke PM evaporates. Thermal denuder measurements are consistent with evaporation observed when a single smoke plume was sampled across a range of temperatures as the plume descended from 4 to 2 km altitude. We also demonstrate that chemical aging of smoke and differences in PM emission factors can not fully explain the platform-dependent differences. When the measured PM volatility is applied to output from the High Resolution Rapid Refresh Smoke regional model, we predict a lower PM NEMR at the surface compared to the lofted smoke measured by aircraft. These results emphasize the significant role that gas-particle partitioning plays in determining the air quality impacts of wildfire smoke.

摘要

生物质燃烧颗粒物(BBPM)会影响区域空气质量和全球气候,预计在未来几年内其影响还将继续增长。我们表明,对北美的火灾研究显示出测量的 BBPM 归一化过量混合比(NEMR;ΔPM/ΔCO)存在系统的海拔依赖性,与地面测量相比,机载和高空研究显示 NEMR 高出两倍。我们报告了直接的机载 BBPM 挥发性测量值,这些测量值部分解释了不同平台上观测到的 BBPM NEMR 差异。我们发现,当在机载热沉降器中加热至 40-45°C 时,19%的抬升烟雾 PM 蒸发。热沉降器测量结果与在单个烟雾羽流从 4 公里高度下降到 2 公里高度的过程中,在一系列温度下采样时观察到的蒸发结果一致。我们还证明,烟雾的化学老化和 PM 排放因子的差异不能完全解释平台依赖性差异。当将测量的 PM 挥发性应用于高分辨率快速刷新烟雾区域模型的输出时,我们预测与飞机测量的抬升烟雾相比,表面处的 PM NEMR 较低。这些结果强调了气体-颗粒分配在确定野火烟雾对空气质量影响方面的重要作用。

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