Alvarado Matthew J, Cady-Pereira Karen E, Xiao Yaping, Millet Dylan B, Payne Vivienne H
Atmospheric and Environmental Research (AER), Lexington, MA 02421, USA.
Department of Soil, Water, and Climate, University of Minnesota, St. Paul, MN 55455-0213, USA.
Atmosphere (Basel). 2011 Dec;2(4):633-654. doi: 10.3390/atmos2040633. Epub 2011 Nov 9.
We use the Tropospheric Emission Spectrometer (TES) aboard the NASA Aura satellite to determine the concentrations of the trace gases ammonia (NH) and formic acid (HCOOH) within boreal biomass burning plumes, and present the first detection of peroxy acetyl nitrate (PAN) and ethylene (CH) by TES. We focus on two fresh Canadian plumes observed by TES in the summer of 2008 as part of the Arctic Research of the Composition of the Troposphere from Aircraft and Satellites (ARCTAS-B) campaign. We use TES retrievals of NH and HCOOH within the smoke plumes to calculate their emission ratios (1.0% ± 0.5% and 0.31% ± 0.21%, respectively) relative to CO for these Canadian fires. The TES derived emission ratios for these gases agree well with previous aircraft and satellite estimates, and can complement ground-based studies that have greater surface sensitivity. We find that TES observes PAN mixing ratios of ~2 ppb within these mid-tropospheric boreal biomass burning plumes when the average cloud optical depth is low (<0.1) and that TES can detect CH mixing ratios of ~2 ppb in fresh biomass burning smoke plumes.
我们利用美国国家航空航天局(NASA)艾奥瓦卫星上搭载的对流层发射光谱仪(TES)来测定北方生物质燃烧烟羽中痕量气体氨(NH₃)和甲酸(HCOOH)的浓度,并首次通过TES探测到过氧乙酰硝酸酯(PAN)和乙烯(C₂H₄)。我们重点研究了2008年夏季TES观测到的两道来自加拿大的新鲜烟羽,这是飞机和卫星对对流层成分进行北极研究(ARCTAS - B)活动的一部分。我们利用TES对烟羽中NH₃和HCOOH的反演数据,计算出它们相对于这些加拿大火灾中CO的排放比(分别为1.0%±0.5%和0.31%±0.21%)。TES得出的这些气体的排放比与之前飞机和卫星的估计结果吻合良好,并且可以补充具有更高地表敏感度的地面研究。我们发现,当平均云光学深度较低(<0.1)时,TES在这些对流层中部的北方生物质燃烧烟羽中观测到PAN的混合比约为2 ppb,并且TES能够在新鲜生物质燃烧烟羽中探测到C₂H₄的混合比约为2 ppb。