0000000000397219

AUTHOR

R. Axinte

showing 4 related works from this author

The summertime Boreal forest field measurement intensive (HUMPPA-COPEC-2010): an overview of meteorological and chemical influences

2011

This paper describes the background, instrumentation, goals, and the regional influences on the HUMPPACOPEC intensive field measurement campaign, conducted at the Boreal forest research station SMEAR II (Station for Measuring Ecosystem-Atmosphere Relation) in Hyyti¨al¨a, Finland from 12 July–12 August 2010. The prevailing meteorological conditions during the campaign are examined and contrasted with those of the past six years. Back trajectory analyses show that meteorological conditions at the site in 2010 were characterized by a higher proportion of southerly flow than in the other years studied. As a result the summer of 2010 was anomalously warm and high in ozone making the campaign rel…

lcsh:Chemistrylcsh:QD1-999010504 meteorology & atmospheric sciences13. Climate actionBoreal forestHUMPPA-COPEC15. Life on land010501 environmental sciences01 natural scienceslcsh:Physicslcsh:QC1-9990105 earth and related environmental sciences
researchProduct

Measurement report: Photochemical production and loss rates of formaldehyde and ozone across Europe

2021

Various atmospheric sources and sinks regulate the abundance of tropospheric formaldehyde (HCHO), which is an important trace gas impacting the HOx (≡ HO2 + OH) budget and the concentration of ozone (O3). In this study, we present the formation and destruction terms of ambient HCHO and O3 calculated from in situ observations of various atmospheric trace gases measured at three different sites across Europe during summertime. These include a coastal site in Cyprus, in the scope of the Cyprus Photochemistry Experiment (CYPHEX) in 2014, a mountain site in southern Germany, as part of the Hohenpeißenberg Photochemistry Experiment (HOPE) in 2012, and a forested site in Finland, where measurement…

Atmospheric ScienceOzonePhysicsQC1-999PhotodissociationFormaldehydePhotochemistryMethaneTrace gasTropospherechemistry.chemical_compoundChemistrychemistryEnvironmental scienceQD1-999IsopreneNOx
researchProduct

Diurnal variability, photochemical production and loss processes of hydrogen peroxide in the boundary layer over Europe

2019

Hydrogen peroxide (H2O2) plays a significant role in the oxidizing capacity of the atmosphere. It is an efficient oxidant in the liquid phase and serves as a temporary reservoir for the hydroxyl radical (OH), the most important oxidizing agent in the gas phase. Due to its high solubility, removal of H2O2 due to wet and dry deposition is efficient, being a sink of HOx (OH+HO2) radicals. In the continental boundary layer, the H2O2 budget is controlled by photochemistry, transport and deposition processes. Here we use in situ observations of H2O2 and account for chemical source and removal mechanisms to study the interplay between these processes. The data were obtained during five ground-base…

Atmospheric Science010504 meteorology & atmospheric sciencesUrbanisationEnvironment010502 geochemistry & geophysicsPhotochemistry01 natural scienceslcsh:QC1-999lcsh:ChemistryTroposphereBoundary layerchemistry.chemical_compoundDeposition (aerosol physics)lcsh:QD1-999chemistryOxidizing agentddc:550Environmental scienceSunriseHydroxyl radicalHydrogen peroxideEnvironment & SustainabilityDiel vertical migrationlcsh:Physics0105 earth and related environmental sciences
researchProduct

Summertime total OH reactivity measurements from boreal forest during HUMPPA-COPEC 2010

2012

Ambient total OH reactivity was measured at the Finnish boreal forest station SMEAR II in Hyytiälä (Latitude 61°51' N; Longitude 24°17' E) in July and August 2010 using the Comparative Reactivity Method (CRM). The CRM – total OH reactivity method – is a direct, in-situ determination of the total loss rate of hydroxyl radicals (OH) caused by all reactive species in air. During the intensive field campaign HUMPPA-COPEC 2010 (<b>H</b>yytiälä <b>U</b>nited <b>M</b>easurements of <b>P</b>hotochemistry and <b>P</b>articles in <b>A</b>ir – <b>C</b>omprehensive <b>O</b>rganic <b>P&l…

0106 biological scienceslcsh:Chemistry010504 meteorology & atmospheric scienceslcsh:QD1-99913. Climate action15. Life on land01 natural scienceslcsh:Physicslcsh:QC1-999010606 plant biology & botany0105 earth and related environmental sciencesAtmospheric Chemistry and Physics
researchProduct