Effect of mid-term drought on <i>Quercus pubescens</i> BVOCs' emission seasonality and their dependency on light and/or temperature

Biogenic volatile organic compounds (BVOCs) emitted by plants represent a large source of carbon compounds released into the atmosphere, where they account for precursors of tropospheric ozone and secondary organic aerosols. Being directly involved in air pollution and indirectly in climate chan...

وصف كامل

التفاصيل البيبلوغرافية
الحاوية / القاعدة:Atmospheric Chemistry and Physics
المؤلفون الرئيسيون: A. Saunier, E. Ormeño, C. Boissard, H. Wortham, B. Temime-Roussel, C. Lecareux, A. Armengaud, C. Fernandez
التنسيق: مقال
اللغة:الإنجليزية
منشور في: Copernicus Publications 2017-06-01
الوصول للمادة أونلاين:http://www.atmos-chem-phys.net/17/7555/2017/acp-17-7555-2017.pdf
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author A. Saunier
E. Ormeño
C. Boissard
H. Wortham
B. Temime-Roussel
C. Lecareux
A. Armengaud
C. Fernandez
author_facet A. Saunier
E. Ormeño
C. Boissard
H. Wortham
B. Temime-Roussel
C. Lecareux
A. Armengaud
C. Fernandez
author_sort A. Saunier
collection DOAJ
container_title Atmospheric Chemistry and Physics
description Biogenic volatile organic compounds (BVOCs) emitted by plants represent a large source of carbon compounds released into the atmosphere, where they account for precursors of tropospheric ozone and secondary organic aerosols. Being directly involved in air pollution and indirectly in climate change, understanding what factors drive BVOC emissions is a prerequisite for modeling their emissions and predict air pollution. The main algorithms currently used to model BVOC emissions are mainly light and/or temperature dependent. Additional factors such as seasonality and drought also influence isoprene emissions, especially in the Mediterranean region, which is characterized by a rather long drought period in summer. These factors are increasingly included in models but only for the principal studied BVOC, namely isoprene, but there are still some discrepancies in estimations of emissions. In this study, the main BVOCs emitted by <i>Quercus pubescens</i> – isoprene, methanol, acetone, acetaldehyde, formaldehyde, MACR, MVK and ISOPOOH (these three last compounds detected under the same <i>m</i>∕<i>z</i>) – were monitored with a PTR-ToF-MS over an entire seasonal cycle during both in situ natural and amplified drought, which is expected with climate change. Amplified drought impacted all studied BVOCs by reducing emissions in spring and summer while increasing emissions in autumn. All six BVOCs monitored showed daytime light and temperature dependencies while three BVOCs (methanol, acetone and formaldehyde) also showed emissions during the night despite the absence of light under constant temperature. Moreover, methanol and acetaldehyde burst in the early morning and formaldehyde deposition and uptake were also punctually observed, which were not assessed by the classical temperature and light models.
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spelling doaj-art-e1d7f008fdb24872b31ed5e4e462f4e92025-08-19T20:20:29ZengCopernicus PublicationsAtmospheric Chemistry and Physics1680-73161680-73242017-06-01177555756610.5194/acp-17-7555-2017Effect of mid-term drought on <i>Quercus pubescens</i> BVOCs' emission seasonality and their dependency on light and/or temperatureA. Saunier0E. Ormeño1C. Boissard2H. Wortham3B. Temime-Roussel4C. Lecareux5A. Armengaud6C. Fernandez7Aix Marseille Univ., Univ Avignon, CNRS, IRD, IMBE, Marseille, FranceAix Marseille Univ., Univ Avignon, CNRS, IRD, IMBE, Marseille, FranceLaboratoire des Sciences du Climat et de l'Environnement, LSCE/IPSL, CEA-CNRS-UVSQ, Université Paris-Saclay, 91191 Gif-sur-Yvette, FranceAix Marseille Univ., CNRS, LCE, Laboratoire de Chimie de l'Environnement, Marseille, FranceAix Marseille Univ., CNRS, LCE, Laboratoire de Chimie de l'Environnement, Marseille, FranceAix Marseille Univ., Univ Avignon, CNRS, IRD, IMBE, Marseille, FranceAir PACA, 146 rue Paradis, Bâtiment Le Noilly Paradis, 13294 Marseille, CEDEX 06, FranceAix Marseille Univ., Univ Avignon, CNRS, IRD, IMBE, Marseille, FranceBiogenic volatile organic compounds (BVOCs) emitted by plants represent a large source of carbon compounds released into the atmosphere, where they account for precursors of tropospheric ozone and secondary organic aerosols. Being directly involved in air pollution and indirectly in climate change, understanding what factors drive BVOC emissions is a prerequisite for modeling their emissions and predict air pollution. The main algorithms currently used to model BVOC emissions are mainly light and/or temperature dependent. Additional factors such as seasonality and drought also influence isoprene emissions, especially in the Mediterranean region, which is characterized by a rather long drought period in summer. These factors are increasingly included in models but only for the principal studied BVOC, namely isoprene, but there are still some discrepancies in estimations of emissions. In this study, the main BVOCs emitted by <i>Quercus pubescens</i> – isoprene, methanol, acetone, acetaldehyde, formaldehyde, MACR, MVK and ISOPOOH (these three last compounds detected under the same <i>m</i>∕<i>z</i>) – were monitored with a PTR-ToF-MS over an entire seasonal cycle during both in situ natural and amplified drought, which is expected with climate change. Amplified drought impacted all studied BVOCs by reducing emissions in spring and summer while increasing emissions in autumn. All six BVOCs monitored showed daytime light and temperature dependencies while three BVOCs (methanol, acetone and formaldehyde) also showed emissions during the night despite the absence of light under constant temperature. Moreover, methanol and acetaldehyde burst in the early morning and formaldehyde deposition and uptake were also punctually observed, which were not assessed by the classical temperature and light models.http://www.atmos-chem-phys.net/17/7555/2017/acp-17-7555-2017.pdf
spellingShingle A. Saunier
E. Ormeño
C. Boissard
H. Wortham
B. Temime-Roussel
C. Lecareux
A. Armengaud
C. Fernandez
Effect of mid-term drought on <i>Quercus pubescens</i> BVOCs' emission seasonality and their dependency on light and/or temperature
title Effect of mid-term drought on <i>Quercus pubescens</i> BVOCs' emission seasonality and their dependency on light and/or temperature
title_full Effect of mid-term drought on <i>Quercus pubescens</i> BVOCs' emission seasonality and their dependency on light and/or temperature
title_fullStr Effect of mid-term drought on <i>Quercus pubescens</i> BVOCs' emission seasonality and their dependency on light and/or temperature
title_full_unstemmed Effect of mid-term drought on <i>Quercus pubescens</i> BVOCs' emission seasonality and their dependency on light and/or temperature
title_short Effect of mid-term drought on <i>Quercus pubescens</i> BVOCs' emission seasonality and their dependency on light and/or temperature
title_sort effect of mid term drought on i quercus pubescens i bvocs emission seasonality and their dependency on light and or temperature
url http://www.atmos-chem-phys.net/17/7555/2017/acp-17-7555-2017.pdf
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