Search results for "Optical"

showing 10 items of 7671 documents

2017

Abstract. Lightning represents one of the dominant emission sources for NOx in the troposphere. The direct release of oxidised nitrogen in the upper troposphere does not only affect ozone formation, but also chemical and microphysical properties of aerosol particles in this region. This study investigates the direct impact of LNOx emissions on upper-tropospheric nitrate using a global chemistry climate model. The simulation results show a substantial influence of the lightning emissions on the mixing ratios of nitrate aerosol in the upper troposphere of more than 50 %. In addition to the impact on nitrate, lightning substantially affects the oxidising capacity of the atmosphere with substan…

Atmospheric ScienceOzone010504 meteorology & atmospheric sciences010501 environmental sciencesAtmospheric sciences01 natural sciencesLightningAerosolTroposphereAtmosphereRadiative fluxchemistry.chemical_compoundchemistryExtinction (optical mineralogy)ClimatologyNOx0105 earth and related environmental sciencesAtmospheric Chemistry and Physics
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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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Spectral Observations of Optical Emissions Associated with Terrestrial Gamma-Ray Flashes

2021

This is an open access article under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made.

Atmospheric SciencePhoton010504 meteorology & atmospheric sciencesOptical measurementsAtmospheric Composition and StructureAstrophysics010502 geochemistry & geophysics01 natural sciences7. Clean energyCloud OpticsCloud/Radiation InteractionResearch LetterStreamer0105 earth and related environmental sciencesPhysicsScatteringPulse (signal processing)ISSResearchGamma rayAtmosphärische SpurenstoffeLightningTGFASIMGeophysicsAmplitude13. Climate actionLeaderGeneral Earth and Planetary Sciences
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Column-integrated aerosol optical properties in Sodankylä (Finland) during the Solar Induced Fluorescence Experiment (SIFLEX-2002).

2006

[1] A study has been made of the column aerosols using solar irradiance extinction measurements at ground level in a boreal region (Sodankyla, Finland) during spring 2002. The aerosol properties have been related to air mass origin. In general, the aerosol levels were observed to be very low, independent of the air mass origin, with an aerosol optical depth (AOD) value at 500 nm of less than 0.09 ± 0.03. Two characteristic patterns were observed depending on whether the air masses originated in the north and west or from the south and east. In the first case (north and west origins) the aerosol load was very small, with very low optical depths in the range 0.03 ± 0.02 to 0.09 ± 0.03 for 500…

Atmospheric ScienceRadiació solarMeteorologySoil ScienceAquatic ScienceOceanographySolar irradianceAtmospheric sciencesGeochemistry and PetrologyEarth and Planetary Sciences (miscellaneous)Air massEarth-Surface ProcessesWater Science and TechnologyAerosolsEcologySpring seasonPaleontologyForestryGeofísicaAerosolGround levelWavelengthGeophysicsBorealSpace and Planetary ScienceExtinction (optical mineralogy)Environmental science
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Wavelength dependence of the effective cloud optical depth

2015

This study examines the wavelength dependence of cloud optical depth. To accomplish this task two different wavelength bands of the solar spectrum were considered in the cloud optical depth retrieval which was conducted in Valencia, Spain. The first retrieval used global irradiance measurements in the UVER range taken from a YES-UVB-1 radiometer in combination with multiple scattering model estimates; while the second retrieval was obtained in the Broadband range, with measurements of global solar surface irradiance from a CM6 pyranometer and a multiple scattering model. Whilst the dependence of the cloud optical depth (τ) on the wavelength is small, the best result was displayed by the SBD…

Atmospheric ScienceRadiometerPyranometerbusiness.industryScatteringIrradiancePhysics::OpticsWavelengthGeophysicsOpticsSpace and Planetary ScienceBroadbandRange (statistics)Environmental sciencebusinessOptical depthRemote sensingJournal of Atmospheric and Solar-Terrestrial Physics
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Long-term (1995-2018) aerosol optical depth derived using ground based AERONET and SKYNET measurements from aerosol aged-background sites

2019

Abstract We examined long-term aerosol optical depth (AOD) trends over 53 sites across the globe which comprise 49 sites from the Aerosol Robotic Network (AERONET) and 4 sites from the Sky radiometer Network (SKYNET) during 1995–2018. Most of these sites are located in remote and isolated aged-background regions, and few are in urban/semi-urban sites having averaged AOD ∼0.1 at 500 nm. These selected sites have a global distribution including tropical, mid-latitudes, high-latitudes and Polar regions. Among them, there are 14 high-altitude stations (∼1028–5050 m amsl), including Himalayan and Polar regions. The main objective of the present work is to evaluate the AOD trends over the aged-ba…

Atmospheric ScienceSKYNETRadiometer010504 meteorology & atmospheric sciencesSKYNETClimate changeAged-background010501 environmental sciences01 natural sciencesPollutionAerosol optical depthAnthropogenicAerosolAERONETArctic13. Climate actionGlobal distributionClimatologyEnvironmental scienceSatelliteWaste Management and DisposalAERONET0105 earth and related environmental sciences
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Extreme, wintertime Saharan dust intrusion in the Iberian Peninsula: Lidar monitoring and evaluation of dust forecast models during the February 2017…

2019

The research leading to these results has received funding from the H2020 program from the European Union (grant agreement no. 654109, 778349) and also from the Spanish Ministry of Industry, Economy and Competitiviness (MINECO, ref. CGL2013-45410-R, CGL2016-81092-R, CGL2017-85344-R, TEC2015-63832-P), the Spanish Ministry of Science, Innovation and Universities (ref. CGL2017-90884-REDT); the CommSensLab "Maria de Maeztu" Unity of Excellence (ref. MDM-2016-0600) financed by the Spanish Agencia Estatal de Investigación. Co-funding was also provided by the European Union through the European Regional Development Fund (ref. POCI-01-0145-FEDER-007690, ALT20-03-0145-FEDER-000004, ALT20-03-0145-FED…

Atmospheric ScienceTeledeteccióPols mineral -- Tesis doctorals010504 meteorology & atmospheric sciencesBackscatterSun-photometer:Energies [Àrees temàtiques de la UPC]Particle optical propertiesForecast skill010501 environmental sciencesMineral dustAtmospheric sciencesExtreme Saharan dust intrusion01 natural sciencesSun photometerModel evaluation0105 earth and related environmental sciencesMulti-wavelength lidarRemote sensingVertical distributionDust forecast modelAERONETAerosolPlumeLidar:Enginyeria de la telecomunicació::Radiocomunicació i exploració electromagnètica::Teledetecció [Àrees temàtiques de la UPC]13. Climate actionEnvironmental scienceDust control
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Gas emission strength and evolution of the molar ratio of BrO/SO2in the plume of Nyiragongo in comparison to Etna

2015

Airborne and ground-based differential optical absorption spectroscopy observations have been carried out at the volcano Nyiragongo (Democratic Republic of Congo) to measure SO2 and bromine monoxide (BrO) in the plume in March 2004 and June 2007, respectively. Additionally filter pack and multicomponent gas analyzer system (Multi-GAS) measurements were carried out in June 2007. Our measurements provide valuable information on the chemical composition of the volcanic plume emitted from the lava lake of Nyiragongo. The main interest of this study has been to investigate for the first time the bromine emission flux of Nyiragongo (a rift volcano) and the BrO formation in its volcanic plume. Mea…

Atmospheric SciencegeographyBrominegeography.geographical_feature_categoryLavaDifferential optical absorption spectroscopyFluxchemistry.chemical_elementMineralogyGas analyzerPlumeGeophysicschemistryVolcanoSpace and Planetary ScienceEarth and Planetary Sciences (miscellaneous)Chemical compositionGeologyJournal of Geophysical Research: Atmospheres
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Reactive halogen chemistry in volcanic plumes

2007

[1] Bromine monoxide (BrO) and sulphur dioxide (SO2) abundances as a function of the distance from the source were measured by ground-based scattered light Multiaxis Differential Optical Absorption Spectroscopy (MAX-DOAS) in the volcanic plumes of Mt. Etna on Sicily, Italy, in August–October 2004 and May 2005 and Villarica in Chile in November 2004. BrO and SO2 spatial distributions in a cross section of Mt. Etna's plume were also determined by Imaging DOAS. We observed an increase in the BrO/SO2 ratio in the plume from below the detection limit near the vent to about 4.5 × 10−4 at 19 km (Mt. Etna) and to about 1.3 × 10−4 at 3 km (Villarica) distance, respectively. Additional attempts were …

Atmospheric Sciencegeographygeography.geographical_feature_categoryEcologyAbsorption spectroscopyThermodynamic equilibriumDifferential optical absorption spectroscopyPaleontologySoil ScienceMineralogyForestryAquatic ScienceOceanographySpatial distributionPlumeBrOGeophysicsVolcanoSpace and Planetary ScienceGeochemistry and PetrologyHalogenEarth and Planetary Sciences (miscellaneous)PanacheEarth-Surface ProcessesWater Science and TechnologyJournal of Geophysical Research
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Application of aerosol optical properties to estimate aerosol type from ground-based remote sensing observation at urban area of northeastern China

2015

Abstract Aerosol optical properties were derived from ground-based sunphotometer observations between 2009-2013 at three urban sites of Shenyang, Anshan, Fushun in northeastern China. The annual means for extinction aerosol optical depths (EAOD) at 500 nm were 0.57±0.38, 0.52±0.35, and 0.41±0.31 at Shenyang, Anshan, Fushun, respectively. The corresponding annual means for the extinction Angstrom exponents (EAE) computed for the wavelengths of 440 and 870 nm were 0.86±0.32, 0.86±0.34 and 0.91±0.35, respectively, indicating that urban area of Northeast China were affected by both coarse and fine particles. Hygroscopic growth in summer and incursions of dust aerosols in spring were evidently r…

Atmospheric Sciencegeographygeography.geographical_feature_categoryMeteorologyCoal combustion productsMineral dustUrban areaAtmospheric sciencesAerosolGeophysicsSpace and Planetary ScienceExtinction (optical mineralogy)Environmental scienceAngstromBiomass burningAbsorption (electromagnetic radiation)Journal of Atmospheric and Solar-Terrestrial Physics
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