Search results for "ozone"

showing 10 items of 300 documents

Evaluation of the MOZAIC Capacitive Hygrometer during the airborne field study CIRRUS-III

2018

The MOZAIC Capacitive Hygrometer (MCH) is usually operated aboard passenger aircraft in the framework of MOZAIC (Measurement of Ozone by Airbus In-Service Aircraft) for measuring atmospheric relative humidity (RH). In order to evaluate the performance of the MCH, the instrument was operated aboard a Learjet 35A research aircraft as part of the CIRRUS-III field study together with a closed-cell Lyman-α fluorescence hygrometer (Fast in situ Stratospheric Hygrometer, or FISH) and an open-path tunable diode laser system (Open-path Jülich Stratospheric TDL ExpeRiment, or OJSTER) for water vapour measurement. After reducing the CIRRUS-III data set to data corresponding to MOZAIC aircraft operatio…

Atmospheric ScienceOzoneMeteorologyHygrometerChemistrylcsh:TA715-787media_common.quotation_subjectCapacitive sensinglcsh:Earthwork. Foundationslcsh:Environmental engineeringchemistry.chemical_compoundSkyCalibrationddc:550CirrusRelative humiditylcsh:TA170-171Water vaporRemote sensingmedia_common
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In-situ observations of young contrails – overview and selected results from the CONCERT campaign

2010

Lineshaped contrails were detected with the research aircraft Falcon during the CONCERT – CONtrail and Cirrus ExpeRimenT – campaign in October/November 2008. The Falcon was equipped with a set of instruments to measure the particle size distribution, shape, extinction and chemical composition as well as trace gas mixing ratios of sulfur dioxide (SO<sub>2</sub>), reactive nitrogen and halogen species (NO, NO<sub>y</sub>, HNO<sub>3</sub>, HONO, HCl), ozone (O<sub>3</sub>) and carbon monoxide (CO). During 12 mission flights over Europe, numerous contrails, cirrus clouds and a volcanic aerosol layer were probed at altitudes between 8.5 and 11.6 km…

Atmospheric ScienceOzoneMeteorologyicecirrusSO2medicine.disease_causeAtmospheric scienceslcsh:Chemistrychemistry.chemical_compoundAltitudetrace gasesddc:550medicineLife ScienceFlugabteilung OberpfaffenhofenStratosphereIce crystalsInstitut für AntriebstechnikAtmosphärische SpurenstoffecontrailSootlcsh:QC1-999JTrace gaschemistrylcsh:QD1-999Extinction (optical mineralogy)Cirruslcsh:PhysicsAtmospheric Chemistry and Physics
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Operational considerations to improve total ozone measurements with a Microtops II ozone monitor

2012

A Microtops II "ozone monitor" with UV channels centered at 305.5, 312.5, and 320 nm has been used routinely in six experimental campaigns carried out in several geographic locations and seasons, covering latitudes from 35 to 68° N during the last ten years (2001–2011). The total ozone content is retrieved by Microtops II by using different combinations (Channel I, 305.5/312.5 nm; Channel II, 312.5/320 nm; and Channel III, 305.5/312.5/320 nm) of the signals at the three ultraviolet wavelengths. The long-term performance of the total ozone content determination has been studied taking into account the sensitivities to the calibration, airmass, temperature and aerosols. When a calibration was…

Atmospheric ScienceOzoneMeteorologylcsh:TA715-787lcsh:Earthwork. FoundationsOzone monitorMicrotops IITotal ozoneGeofísicamedicine.disease_causelcsh:Environmental engineeringLatitudeRoot mean squarechemistry.chemical_compoundWavelengthAtmosferaUltraviolet solar radiationchemistrySunphotometerCalibrationmedicinelcsh:TA170-171Total column ozoneUltravioletCommunication channel
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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
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On the structural changes in the Brewer-Dobson circulation after 2000

2010

In this paper we present evidence that the observed increase in tropical upwelling after the year 2000 may be attributed to a change in the Brewer-Dobson circulation pattern. For this purpose, we use the concept of transit times derived from residual circulation trajectories and different in-situ measurements of ozone and nitrous dioxide. Observations from the Canadian midlatitude ozone profile record, probability density functions of in-situ N<sub>2</sub>O observations and a shift of the N<sub>2</sub>O-O<sub>3</sub> correlation slopes, taken together, indicate that the increased upwelling in the tropics after the year 2000 appears to have triggered an in…

Atmospheric ScienceOzoneTropicsResidualAtmospheric sciencesBrewer-Dobson circulationlcsh:QC1-999lcsh:Chemistrychemistry.chemical_compoundCirculation (fluid dynamics)chemistrylcsh:QD1-999ClimatologyMiddle latitudesEnvironmental scienceUpwellingStratospherelcsh:PhysicsAtmospheric Chemistry and Physics
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Ozone mini-holes over Valencia (Spain) and their influence on the UV erythemal radiation

2010

Low ozone level episodes (also known as mini-holes) have been analysed over Valencia, Spain, during the period from 1 January 2000 to 31 December 2007. In this study, 24 episodes, lasting 1 or 2 days each, were detected. Most of them can be explained dynamically by the existence of an anticyclone over the Azores, which sends air masses coming from the Caribbean over the Iberian Peninsula. A positive anomaly in the vertical temperature profile in the high troposphere and one negative anomaly in the medium and low stratosphere are also observed in most of the analysed episodes. The total ozone column decrease is accompanied by a rise in the UV erythemal radiation levels. This increase is quan…

Atmospheric ScienceOzonebiologyAnomaly (natural sciences)RadiationTotal ozonebiology.organism_classificationAtmospheric sciencesTropospherechemistry.chemical_compoundchemistryAnticycloneClimatologyEnvironmental scienceValenciaStratosphereInternational Journal of Climatology
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Multilayer modelling of ozone fluxes on winter wheat reveals large deposition on wet senescing leaves

2015

Understanding how ozone is deposited on vegetation canopies is needed to perform tropospheric greenhouse gas budgets and evaluate the associated damage on vegetation. In this study, we propose a new multilayer scheme of ozone deposition on vegetation canopies that predicts stomatal, cuticular and soil deposition pathways separately. This mechanistic ozone deposition scheme is based on the multi-layer, multi-leaf mass and energy transfer model MuSICA. This model was chosen because it explicitly simulates the processes of rain interception, through fall and evaporation at different depths within the vegetation canopy, so that ozone deposition on wet leaf cuticles can be explicitly modelled wi…

Atmospheric ScienceOzonesenescence010504 meteorology & atmospheric sciences[SDV]Life Sciences [q-bio]010501 environmental sciencesAtmospheric sciences01 natural scienceswater filmchemistry.chemical_compoundMuSICAozone depositionEvapotranspirationwheat0105 earth and related environmental sciencesHydrologyGlobal and Planetary Change[ SDV ] Life Sciences [q-bio]ForestryVegetation15. Life on landchemistry13. Climate actionGreenhouse gasEnvironmental scienceDewcuticleInterceptionAgronomy and Crop ScienceDeposition (chemistry)Water vapor
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Analysing time-varying trends in stratospheric ozone time series using the state space approach

2014

Abstract. We describe a hierarchical statistical state space model for ozone profile time series. The time series are from satellite measurements by the Stratospheric Aerosol and Gas Experiment (SAGE) II and the Global Ozone Monitoring by Occultation of Stars (GOMOS) instruments spanning the years 1984–2011. Vertical ozone profiles were linearly interpolated on an altitude grid with 1 km resolution covering 20–60 km. Monthly averages were calculated for each altitude level and 10° wide latitude bins between 60° S and 60° N. In the analysis, mean densities are studied separately for the 25–35, 35–45, and 45–55 km layers. Model variables include the ozone mean level, local trend, seasonal osc…

Atmospheric ScienceStratospheric Aerosol and Gas ExperimentEquatorNorthern HemisphereGlobal Ozone Monitoring by Occultation of StarsAtmospheric scienceslcsh:QC1-999Latitudelcsh:ChemistryAltitudelcsh:QD1-999ClimatologyOzone layerEnvironmental scienceSouthern Hemispherelcsh:PhysicsAtmospheric Chemistry and Physics
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2021

Abstract. Stratospheric inorganic chlorine (Cly) is predominantly released from long-lived chlorinated source gases and, to a small extent, very short-lived chlorinated substances. Cly includes the reservoir species (HCl and ClONO2) and active chlorine species (i.e., ClOx). The active chlorine species drive catalytic cycles that deplete ozone in the polar winter stratosphere. This work presents calculations of inorganic chlorine (Cly) derived from chlorinated source gas measurements on board the High Altitude and Long Range Research Aircraft (HALO) during the Southern Hemisphere Transport, Dynamic and Chemistry (SouthTRAC) campaign in austral late winter and early spring 2019. Results are c…

Atmospheric Sciencechemistry.chemical_compoundOzonechemistryArcticPolar vortexMiddle latitudesNorthern HemisphereEnvironmental scienceTropopauseAtmospheric sciencesStratosphereAir massAtmospheric Chemistry and Physics
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The primary volcanic aerosol emission from Mt Etna: Size-resolved particles with SO2 and role in plume reactive halogen chemistry

2018

International audience; Volcanoes are an important source of aerosols to the troposphere. Within minutes after emission, volcanic plume aerosol catalyses conversion of co-emitted HBr, HCl into highly reactive halogens (e.g. BrO, OClO) through chemical cycles that cause substantial ozone depletion in the dispersing downwind plume.This study quantifies the sub-to-supramicron primary volcanic aerosol emission (0.2-5 μm diameter) and its role in this process. An in-situ ground-based study at Mt Etna (Italy) during passive degassing co-deployed an optical particle counter and Multi-Gas SO2 sensors at high time resolution (0.1 Hz) enabling to characterize the aerosol number, size-distribution and…

Atmospheric chemistry010504 meteorology & atmospheric sciencesParticle010502 geochemistry & geophysicsAtmospheric sciences01 natural sciences7. Clean energyTroposphereEmissionGeochemistry and Petrology[SDU.STU.VO]Sciences of the Universe [physics]/Earth Sciences/VolcanologyRelative humidityimpactsVolcano0105 earth and related environmental sciences[SDU.OCEAN]Sciences of the Universe [physics]/Ocean Atmospheregeographygeography.geographical_feature_categoryChemistryTroposphereOzone depletionSulfatesulphatePlumeAerosolImpactVolcano13. Climate actionAtmospheric chemistryChArMExHalogenParticle counter
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