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DOI10.5194/acp-20-7179-2020
PTR-TOF-MS eddy covariance measurements of isoprene and monoterpene fluxes from an eastern Amazonian rainforest
Sarkar C.; Guenther A.B.; Park J.-H.; Seco R.; Seco R.; Alves E.; Alves E.; Batalha S.; Santana R.; Kim S.; Smith J.; Tóta J.; Vega O.
发表日期2020
ISSN1680-7316
起始页码7179
结束页码7191
卷号20期号:12
英文摘要Biogenic volatile organic compounds (BVOCs) are important components of the atmosphere due to their contribution to atmospheric chemistry and biogeochemical cycles. Tropical forests are the largest source of the dominant BVOC emissions (e.g. isoprene and monoterpenes). In this study, we report isoprene and total monoterpene flux measurements with a proton transfer reaction time-of-flight mass spectrometer (PTR-TOF-MS) using the eddy covariance (EC) method at the Tapajos National Forest (2.857 S, 54.959 W), a primary rainforest in eastern Amazonia. Measurements were carried out from 1 to 16 June 2014, during the wet-to-dry transition season. During the measurement period, the measured daytime (06:00- 18:00 LT) average isoprene mixing ratios and fluxes were 1:15-0:60 ppb and 0:55-0:71 mgCm-2 h-1, respectively, whereas the measured daytime average total monoterpene mixing ratios and fluxes were 0:14-0:10 ppb and 0:20- 0:25 mgCm-2 h-1, respectively. Midday (10:00-14:00 LT) average isoprene and total monoterpene mixing ratios were 1:70-0:49 and 0:24-0:05 ppb, respectively, whereas midday average isoprene and monoterpene fluxes were 1:24- 0:68 and 0:46-0:22 mgCm-2 h-1, respectively. Isoprene and total monoterpene emissions in Tapajos were correlated with ambient temperature and solar radiation. Significant correlation with sensible heat flux, SHF (r2 D 0:77), was also observed. Measured isoprene and monoterpene fluxes were strongly correlated with each other (r2 D 0:93). The MEGAN2.1 (Model of Emissions of Gases and Aerosols from Nature version 2.1) model could simulate most of the observed diurnal variations (r2 D 0:7 to 0.8) but declined a little later in the evening for both isoprene and total monoterpene fluxes. The results also demonstrate the importance of site-specific vegetation emission factors (EFs) for accurately simulating BVOC fluxes in regional and global BVOC emission models. © 2020 BMJ Publishing Group. All rights reserved.
语种英语
scopus关键词atmospheric chemistry; biogenic emission; biogeochemical cycle; isoprene; mixing ratio; monoterpene; rainforest; tropical forest; volatile organic compound; Amazonia; Brazil; Para [Brazil]; Tapajos National Forest
来源期刊Atmospheric Chemistry and Physics
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/141268
作者单位Department of Earth System Science, University of California, Irvine, CA 92697, United States; Climate and Air Quality Research Department, National Institute of Environmental Research (NIER), Incheon, 22689, South Korea; Terrestrial Ecology Section, Department of Biology, University of Copenhagen, Copenhagen, Denmark; Center for Permafrost (CENPERM), Department of Geosciences and Natural Resource Management, University of Copenhagen, Copenhagen, Denmark; Department of Climate and Environment, National Institute for Amazonian Research, Manaus, Amazonas, 69067-375, Brazil; Centro Universitário da Amazônia, Universidade da Amazônia, UNAMA, Santarém, Pará, 68010-200, Brazil; Instituto de Engenharia e Geociências, Universidade Federal Do Oeste Do Pará, Santarém, Pará, 68040-255, Brazil; Department of Chemistry, University of California, Irvine, CA 92697, United States; Centro de Química e Meio Ambiente, Instituto de Pesquisas Energéticas e Nucleares, São Paulo, 05508-000, Brazil; Department of Biogeochemica...
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Sarkar C.,Guenther A.B.,Park J.-H.,et al. PTR-TOF-MS eddy covariance measurements of isoprene and monoterpene fluxes from an eastern Amazonian rainforest[J],2020,20(12).
APA Sarkar C..,Guenther A.B..,Park J.-H..,Seco R..,Seco R..,...&Vega O..(2020).PTR-TOF-MS eddy covariance measurements of isoprene and monoterpene fluxes from an eastern Amazonian rainforest.Atmospheric Chemistry and Physics,20(12).
MLA Sarkar C.,et al."PTR-TOF-MS eddy covariance measurements of isoprene and monoterpene fluxes from an eastern Amazonian rainforest".Atmospheric Chemistry and Physics 20.12(2020).
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