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DOI10.1111/gcb.12980
Ecosystem-scale volatile organic compound fluxes during an extreme drought in a broadleaf temperate forest of the Missouri Ozarks (central USA)
Seco, Roger1; Karl, Thomas2; Guenther, Alex3,4; Hosman, Kevin P.5; Pallardy, Stephen G.5; Gu, Lianhong6; Geron, Chris7; Harley, Peter8; Kim, Saewung1
发表日期2015-10-01
ISSN1354-1013
卷号21期号:10页码:3657-3674
英文摘要

Considerable amounts and varieties of biogenic volatile organic compounds (BVOCs) are exchanged between vegetation and the surrounding air. These BVOCs play key ecological and atmospheric roles that must be adequately represented for accurately modeling the coupled biosphere-atmosphere-climate earth system. One key uncertainty in existing models is the response of BVOC fluxes to an important global change process: drought. We describe the diurnal and seasonal variation in isoprene, monoterpene, and methanol fluxes from a temperate forest ecosystem before, during, and after an extreme 2012 drought event in the Ozark region of the central USA. BVOC fluxes were dominated by isoprene, which attained high emission rates of up to 35.4mgm(-2)h(-1) at midday. Methanol fluxes were characterized by net deposition in the morning, changing to a net emission flux through the rest of the daylight hours. Net flux of CO2 reached its seasonal maximum approximately a month earlier than isoprenoid fluxes, which highlights the differential response of photosynthesis and isoprenoid emissions to progressing drought conditions. Nevertheless, both processes were strongly suppressed under extreme drought, although isoprene fluxes remained relatively high compared to reported fluxes from other ecosystems. Methanol exchange was less affected by drought throughout the season, confirming the complex processes driving biogenic methanol fluxes. The fraction of daytime (7-17h) assimilated carbon released back to the atmosphere combining the three BVOCs measured was 2% of gross primary productivity (GPP) and 4.9% of net ecosystem exchange (NEE) on average for our whole measurement campaign, while exceeding 5% of GPP and 10% of NEE just before the strongest drought phase. The meganv2.1 model correctly predicted diurnal variations in fluxes driven mainly by light and temperature, although further research is needed to address model BVOC fluxes during drought events.


英文关键词biogenic emissions;drought;isoprene;isoprene volcano;megan;methanol;monoterpenes;VOC
语种英语
WOS记录号WOS:000360994500009
来源期刊GLOBAL CHANGE BIOLOGY
来源机构美国环保署
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/61703
作者单位1.Univ Calif Irvine, Dept Earth Syst Sci, Irvine, CA 92697 USA;
2.Univ Innsbruck, Inst Meteorol & Geophys, A-6020 Innsbruck, Austria;
3.Pacific NW Natl Lab, Richland, WA 99352 USA;
4.Washington State Univ, Dept Civil & Environm Engn, Pullman, WA 99164 USA;
5.Univ Missouri, Dept Forestry, Columbia, MO 65211 USA;
6.Oak Ridge Natl Lab, Div Environm Sci, Oak Ridge, TN 37831 USA;
7.US EPA, Natl Risk Management Res Lab, Res Triangle Pk, NC 27711 USA;
8.Natl Ctr Atmospher Res, Div Atmospher Chem, Boulder, CO 80301 USA
推荐引用方式
GB/T 7714
Seco, Roger,Karl, Thomas,Guenther, Alex,et al. Ecosystem-scale volatile organic compound fluxes during an extreme drought in a broadleaf temperate forest of the Missouri Ozarks (central USA)[J]. 美国环保署,2015,21(10):3657-3674.
APA Seco, Roger.,Karl, Thomas.,Guenther, Alex.,Hosman, Kevin P..,Pallardy, Stephen G..,...&Kim, Saewung.(2015).Ecosystem-scale volatile organic compound fluxes during an extreme drought in a broadleaf temperate forest of the Missouri Ozarks (central USA).GLOBAL CHANGE BIOLOGY,21(10),3657-3674.
MLA Seco, Roger,et al."Ecosystem-scale volatile organic compound fluxes during an extreme drought in a broadleaf temperate forest of the Missouri Ozarks (central USA)".GLOBAL CHANGE BIOLOGY 21.10(2015):3657-3674.
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