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1.
Proc Natl Acad Sci U S A ; 116(39): 19318-19323, 2019 09 24.
Article de Anglais | MEDLINE | ID: mdl-31501347

RÉSUMÉ

The emissions, deposition, and chemistry of volatile organic compounds (VOCs) are thought to be influenced by underlying landscape heterogeneity at intermediate horizontal scales of several hundred meters across different forest subtypes within a tropical forest. Quantitative observations and scientific understanding at these scales, however, remain lacking, in large part due to a historical absence of canopy access and suitable observational approaches. Herein, horizontal heterogeneity in VOC concentrations in the near-canopy atmosphere was examined by sampling from an unmanned aerial vehicle (UAV) flown horizontally several hundred meters over the plateau and slope forests in central Amazonia during the morning and early afternoon periods of the wet season of 2018. Unlike terpene concentrations, the isoprene concentrations in the near-canopy atmosphere over the plateau forest were 60% greater than those over the slope forest. A gradient transport model constrained by the data suggests that isoprene emissions differed by 220 to 330% from these forest subtypes, which is in contrast to a 0% difference implemented in most present-day biosphere emissions models (i.e., homogeneous emissions). Quantifying VOC concentrations, emissions, and other processes at intermediate horizontal scales is essential for understanding the ecological and Earth system roles of VOCs and representing them in climate and air quality models.


Sujet(s)
Atmosphère/composition chimique , Butadiènes/analyse , Forêts , Hémiterpènes/analyse , Composés organiques volatils/analyse , Brésil , Saisons , Arbres/classification , Arbres/physiologie
2.
Proc Natl Acad Sci U S A ; 113(22): 6125-30, 2016 May 31.
Article de Anglais | MEDLINE | ID: mdl-27185928

RÉSUMÉ

Isoprene photooxidation is a major driver of atmospheric chemistry over forested regions. Isoprene reacts with hydroxyl radicals (OH) and molecular oxygen to produce isoprene peroxy radicals (ISOPOO). These radicals can react with hydroperoxyl radicals (HO2) to dominantly produce hydroxyhydroperoxides (ISOPOOH). They can also react with nitric oxide (NO) to largely produce methyl vinyl ketone (MVK) and methacrolein (MACR). Unimolecular isomerization and bimolecular reactions with organic peroxy radicals are also possible. There is uncertainty about the relative importance of each of these pathways in the atmosphere and possible changes because of anthropogenic pollution. Herein, measurements of ISOPOOH and MVK + MACR concentrations are reported over the central region of the Amazon basin during the wet season. The research site, downwind of an urban region, intercepted both background and polluted air masses during the GoAmazon2014/5 Experiment. Under background conditions, the confidence interval for the ratio of the ISOPOOH concentration to that of MVK + MACR spanned 0.4-0.6. This result implies a ratio of the reaction rate of ISOPOO with HO2 to that with NO of approximately unity. A value of unity is significantly smaller than simulated at present by global chemical transport models for this important, nominally low-NO, forested region of Earth. Under polluted conditions, when the concentrations of reactive nitrogen compounds were high (>1 ppb), ISOPOOH concentrations dropped below the instrumental detection limit (<60 ppt). This abrupt shift in isoprene photooxidation, sparked by human activities, speaks to ongoing and possible future changes in the photochemistry active over the Amazon rainforest.


Sujet(s)
Polluants atmosphériques/analyse , Butadiènes/composition chimique , Radicaux libres/analyse , Hémiterpènes/composition chimique , Monoxyde d'azote/composition chimique , Pentanes/composition chimique , Photochimie , Forêt pluviale , Acroléine/analogues et dérivés , Acroléine/analyse , Atmosphère , Butadiènes/effets des radiations , Butanones/analyse , Hémiterpènes/effets des radiations , Humains , Oxydoréduction , Pentanes/effets des radiations , Peroxydes/composition chimique
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