Search results for "Aerosol"

showing 10 items of 722 documents

The optical constants of atmospheric aerosol particles in the 7.5–12 ?m spectral region

2011

Thin films of atmospheric aerosol particles which have been collected by an automatic jet impactor are used to obtain the real and imaginary part of the mean complex refractive index of aerosol particles of various types in the 7.5–12 ?m spectral region. A dispersion analysis of the measured ir-spectra of absorption of the particle films is performed. By applying the Lorentz theory of continuous dielectrics to the particle films a mathematical relation between the optical constants of the particle films and those of the aerosol particles themselves is obtained. The resulting complex refractive indices are applied to Mie computations to indicate the importance of scattering and absorbing aer…

Atmospheric ScienceJet (fluid)Materials science010504 meteorology & atmospheric sciencesScatteringbusiness.industryOceanography01 natural sciencesMolecular physicsAerosolOpticsThermal radiationParticlebusinessDispersion (chemistry)Absorption (electromagnetic radiation)Refractive indexPhysics::Atmospheric and Oceanic Physics0105 earth and related environmental sciencesTellus A
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Depolarization�ratio profiling at several wavelengths in pure Saharan dust during SAMUM 2006

2009

Vertical profiles of the linear particle depolarization ratio of pure dust clouds were measured during the Saharan Mineral Dust Experiment (SAMUM) at Ouarzazate, Morocco (30.9°N, –6.9°E), close to source regions in May–June 2006, with four lidar systems at four wavelengths (355, 532, 710 and 1064 nm). The intercomparison of the lidar systems is accompanied by a discussion of the different calibration methods, including a new, advanced method, and a detailed error analysis. Over the whole SAMUM periode pure dust layers show a mean linear particle depolarization ratio at 532 nm of 0.31, in the range between 0.27 and 0.35, with a mean Ångström exponent (AE, 440–870 nm) of 0.18 (range 0.04–0.34…

Atmospheric ScienceLidarMaterials science010504 meteorology & atmospheric sciencesSaharan dustbusiness.industryAnalytical chemistry010501 environmental sciencesMineral dust01 natural sciencesAerosolTroposphereSAMUMWavelengthOpticsLidardepolarizationExtinction (optical mineralogy)Depolarization ratioParticlebusiness0105 earth and related environmental sciences
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Potential of airborne lidar measurements for cirrus cloud studies

2014

Abstract. Aerosol and water vapour measurements were performed with the lidar system WALES of Deutsches Zentrum für Luft- und Raumfahrt (DLR) in October and November 2010 during the first mission with the new German research aircraft G55-HALO. Curtains composed of lidar profiles beneath the aircraft show the vertical and horizontal distribution and variability of water vapour mixing ratio and backscatter ratio above Germany. Two missions on 3 and 4 November 2010 were selected to derive the water vapour mixing ratio inside cirrus clouds from the lidar instrument. A good agreement was found with in situ observations performed on a second research aircraft flying below HALO. ECMWF analysis tem…

Atmospheric ScienceLidarMeteorologyBackscatterlcsh:TA715-787lcsh:Earthwork. FoundationsHumiditycirrusAtmospheric sciencesrelative humidityAerosollcsh:Environmental engineeringLidarMixing ratioEnvironmental sciencedialRelative humidityCirruslcsh:TA170-171Water vapor
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2008

Abstract. Measurements of the submicron fraction of the atmospheric aerosol in the marine boundary layer were performed from January to March 2007 (Southern Hemisphere summer) onboard the French research vessel Marion Dufresne in the Southern Atlantic and Indian Ocean (20° S–60° S, 70° W–60° E). We used an Aerodyne High-Resolution-Time-of-Flight AMS to characterize the chemical composition and to measure species-resolved size distributions of non-refractory aerosol components in the submicron range. Within the "standard" AMS compounds (ammonium, chloride, nitrate, sulfate, organics) "sulfate" is the dominant species in the marine boundary layer with concentrations ranging between 50 ng m−3 …

Atmospheric ScienceMarine boundary layerSulfuric acidAtmospheric sciencesMass spectrometryResearch vesselAerosolchemistry.chemical_compoundOceanographyNitratechemistrySulfateSouthern HemisphereGeologyAtmospheric Chemistry and Physics
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The Fifth International Workshop on Ice Nucleation phase 2 (FIN-02): Laboratory intercomparison of ice nucleation measurements

2018

The second phase of the Fifth International Ice Nucleation Workshop (FIN-02) involved the gathering of a large number of researchers at the Karlsruhe Institute of Technology's Aerosol Interactions and Dynamics of the Atmosphere (AIDA) facility to promote characterization and understanding of ice nucleation measurements made by a variety of methods used worldwide. Compared to the previous workshop in 2007, participation was doubled, reflecting a vibrant research area. Experimental methods involved sampling of aerosol particles by direct processing ice nucleation measuring systems from the same volume of air in separate experiments using different ice nucleating particle (INP) types, and coll…

Atmospheric ScienceMaterials science010504 meteorology & atmospheric sciencesAnalytical chemistry010501 environmental sciences01 natural scienceslaw.inventionlawddc:550Intercomparisonlcsh:TA170-171Physics::Atmospheric and Oceanic Physics0105 earth and related environmental sciencesIce nucleilcsh:TA715-787lcsh:Earthwork. FoundationsHumiditylcsh:Environmental engineeringAerosolEarth sciences13. Climate actionParticle-size distributionIce nucleusParticleParticle sizeCloud chamberWater vapor
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In situ measurements of optical properties at Tinfou (Morocco) during the Saharan Mineral Dust Experiment SAMUM 2006

2009

In situ measurements of optical and physical properties of mineral dust were performed at the outskirts of the Saharan Desert in the framework of the Saharan Mineral Dust Experiment part 1 (SAMUM-1). Goals of the field study were to achieve information on the extent and composition of the dust particle size distribution and the optical properties of dust at the ground. For the particle number size distribution, measured with a DMPS/APS, a size dependent dynamic shape factor was considered. The mean refractive index of the particles in this field study is 1.53–4.1 × 10 -3 i at 537 nm wavelength and 1.53–3.1 × 10 -3 i at 637 nm wavelength derived from measurements of scattering and absorption…

Atmospheric ScienceMaterials science010504 meteorology & atmospheric sciencesParticle numberSingle-scattering albedoScatteringMineralogy010501 environmental sciencesMineral dustAlbedo01 natural sciencesAerosolWavelengthParticle-size distribution0105 earth and related environmental sciencesTellus B: Chemical and Physical Meteorology
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Approximation for the absorption coefficient of airborne atmospheric aerosol particles in terms of measurable bulk properties

1977

The absorption coefficient of airborne atmospheric aerosol particles can be approximated by where λ is the wavelength of radiation, n — ik is the mean complex refractive index, ρ the mean bulk density, and M / V k the mass of the particles per unit volume of air. This approximation gives good results at relative humidities between 0 and 0.95 for the wavelengths of radiation between 0.55 μm and 2.0 μm and between 9.25 μm and 12.0 μm. Basing on this approximation it is possible to determine the single scattering albedo of airborne atmospheric aerosol particles with known measuring techniques. DOI: 10.1111/j.2153-3490.1977.tb00711.x

Atmospheric ScienceMaterials science010504 meteorology & atmospheric sciencesSingle-scattering albedobusiness.industryMie scatteringAnalytical chemistryGeneral MedicineRadiationOceanography01 natural sciencesAerosolWavelengthOpticsAttenuation coefficientAbsorptanceAtmospheric refractionbusiness0105 earth and related environmental sciencesTellus A
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The real part of the mean complex refractive index and the mean density of samples of atmospheric aerosol particles

1968

The computation and the physical explanation of the spectral extinction of light in the atmosphere are mainly influenced by some specific prerequisites such as the number and the size of the atmospheric aerosol particles as well as their complex refractive index. Both size and complex refractive index are functions of the relative humidity. During the last years quite a number of investigations into the size distribution of the atmospheric aerosol particles have been carried out. Their refractive index, however is hardly known. An attempt has been made to overcome this deficiency with a new quantitative method for the simultaneous measurement of the real part of the mean complex refractive …

Atmospheric ScienceMaterials science010504 meteorology & atmospheric sciencesbusiness.industryGeneral MedicineSpectral extinctionOceanography01 natural sciencesComputational physicsAerosolAtmosphereOpticsRelative humiditybusinessRefractive index0105 earth and related environmental sciencesTellus A: Dynamic Meteorology and Oceanography
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Hygroscopic properties and extinction of aerosol particles at ambient relative humidity in South-Eastern China

2008

Abstract During the “Program of Regional Integrated Experiments of Air Quality over Pearl River Delta 2004 (PRIDE-PRD2004)” hygroscopic properties of particles in the diameter range 22 nm to 10 μ m were determined. For that purpose, a Humidifying Differential Mobility Particle Sizer (H-DMPS) and a Micro-Orifice Uniform Deposition Impactor (MOUDI) were operated. The derived size-dependent particle hygroscopic growth factors were interpolated to ambient relative humidity (RH) and used to calculate the particle number size distributions (PNSDs) at ambient conditions. A comparison between the modeled particle extinction coefficients ( σ ext , Mie ) and those observed with a Raman lidar was made…

Atmospheric ScienceMaterials scienceDeposition (aerosol physics)Particle numberExtinction (optical mineralogy)Ultrafine particleParticle-size distributionAnalytical chemistryMineralogyParticleRelative humidityGeneral Environmental ScienceAerosolAtmospheric Environment
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Arctic low-level boundary layer clouds: in situ measurements and simulations of mono- and bimodal supercooled droplet size distributions at the top l…

2015

Abstract. Aircraft borne optical in situ size distribution measurements were performed within Arctic boundary layer clouds with a special emphasis on the cloud top layer during the VERtical Distribution of Ice in Arctic clouds (VERDI) campaign in April and May 2012. An instrumented Basler BT-67 research aircraft operated out of Inuvik over the Mackenzie River delta and the Beaufort Sea in the Northwest Territories of Canada. Besides the cloud particle and hydrometeor size spectrometers the aircraft was equipped with instrumentation for aerosol, radiation and other parameters. Inside the cloud, droplet size distributions with monomodal shapes were observed for predominantly liquid-phase Arct…

Atmospheric ScienceMaterials scienceIce crystalsCondensationEvaporationAtmospheric scienceslcsh:QC1-999Aerosollcsh:ChemistryBoundary layerArcticlcsh:QD1-99913. Climate actionLiquid water contentddc:550Particlelcsh:Physics
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