کد مقاله | کد نشریه | سال انتشار | مقاله انگلیسی | نسخه تمام متن |
---|---|---|---|---|
6336070 | 1620333 | 2016 | 6 صفحه PDF | دانلود رایگان |
- Ethylene observed in multiple fire plume observations from Aura TES.
- Ethylene detection limit of 2-3Â ppbv for representative boreal fire plumes.
- Spatial averaging needed to detect ethylene from non-fire plume sources.
- Assumptions about ethylene vertical distribution greatly impact VMRs.
We present a study focusing on detection and initial quantitative estimates of ethylene (C2H4) in observations from the Tropospheric Emission Spectrometer (TES), a Fourier transform spectrometer aboard the Aura satellite that measures thermal infrared radiances with high spectral resolution (0.1Â cmâ1). We analyze observations taken in support of the 2008 Arctic Research of the Composition of the Troposphere from Aircraft and Satellites (ARCTAS) mission and demonstrate the feasibility of future development of C2H4 into a TES standard product. In the Northern Hemisphere, C2H4 is commonly associated with boreal fire plumes, motor vehicle exhaust and petrochemical emissions. It has a short lifetime (â¼14-32Â h) in the troposphere due to its reaction with OH and O3. Chemical destruction of C2H4 in the atmosphere leads to the production of ozone and other species such as carbon monoxide (CO) and formaldehyde. Results indicate a correlation between C2H4 and CO in boreal fire plumes. Quantitative C2H4 estimates are sensitive to assumptions about the plume height and width. We find that C2H4 greater than 2-3Â ppbv can be detected in a single TES observation (for a fire plume at 3Â km altitude and 1.5Â km width). Spatial averaging will be needed for surface-peaking profiles where TES sensitivity is lower.
Journal: Atmospheric Environment - Volume 141, September 2016, Pages 388-393