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Characterization of Total OH Reactivity in a Rapeseed Field: Results from the COV3ER Experiment in April 2017

Authors :
Sandy Bsaibes
Valérie Gros
François Truong
Christophe Boissard
Dominique Baisnée
Roland Sarda-Esteve
Nora Zannoni
Florence Lafouge
Raluca Ciuraru
Pauline Buysse
Julien Kammer
Lais Gonzaga Gomez
Benjamin Loubet
Source :
Atmosphere, Vol 11, Iss 3, p 261 (2020)
Publication Year :
2020
Publisher :
MDPI AG, 2020.

Abstract

Croplands remain poorly studied ecosystems in terms of total hydroxyl radical (OH) reactivity, especially when compared to forests. As part of the COV3ER project, total OH reactivity (ROH), defined as the total loss rate of OH due to its reaction with reactive species in the atmosphere, was characterized in a rapeseed field (Grignon, France) during the blooming season in April 2017. Measurements were performed in a dynamic chamber as well as in ambient air using the Comparative Reactivity Method (CRM). Complementary measurements of organic (including a proton transfer reaction quadrupole ion−time of flight mass spectrometry, PTRQi-ToFMS) and inorganic compounds were also performed in order to calculate the expected OH reactivity and evaluate the missing fraction. Measured ROH varied diurnally in the dynamic chamber (mROHchamber) with maxima around 20 to 30 s−1 at midday and minima during dark hours, following the variability of the enclosed branch VOCsrapeseed, which is light- and temperature-dependent. Oxygenated VOCs were the major compounds emitted by the rapeseed crop. However, in terms of contribution to OH reactivity, isoprene accounted for 40% during the daytime, followed by acetaldehyde (21%) and monoterpenes (18%). The comparison between mROHchamber and calculated ROH (cROHchamber) exhibited little or no difference during dark hours, whereas a maximum difference appeared around midday, highlighting a significant missing fraction (46% on average during daytime) mainly related to biogenic temperature- and/or light-dependent emissions.

Details

Language :
English
ISSN :
20734433
Volume :
11
Issue :
3
Database :
Directory of Open Access Journals
Journal :
Atmosphere
Publication Type :
Academic Journal
Accession number :
edsdoj.4f15f7cde425443a831a74e41b1de820
Document Type :
article
Full Text :
https://doi.org/10.3390/atmos11030261