Search results for "Marine boundary layer"

showing 8 items of 8 documents

Reply to a comment by R. Brown on ‘a numerical model of the cloud‐topped planetary boundary‐layer: Radiation, turbulence and spectral microphysics in…

1997

Atmospheric ScienceCloud microphysicsMarine boundary layerMeteorologyMicrophysicsTurbulencePlanetary boundary layerbusiness.industryCloud computingRadiationAtmospheric sciencesbusinessGeologyQuarterly Journal of the Royal Meteorological Society
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Search for Microphysical Signatures of Stochastic Condensation in Marine Boundary Layer Clouds Using Airborne Digital Holography

2019

Atmospheric ScienceGeophysicsMarine boundary layerSpace and Planetary ScienceCondensationEarth and Planetary Sciences (miscellaneous)Environmental scienceDigital holographyComputational physicsJournal of Geophysical Research: Atmospheres
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Airborne survey of trace gases and aerosols over the Southern Baltic Sea: from clean marine boundary layer to shipping corridor effect

2020

The influence of shipping on air quality over the Southern Baltic Sea was investigated by characterizing the horizontal and vertical distribution of aerosols and trace gases using airborne measurements in the summer of 2015. Generally, continental and anthropogenic emissions affected the vertical distribution of atmospheric pollutants, leading to pronounced stratification in and above the marine boundary layer and controlling the aerosol extinction. Marine traffic along the shipping corridor “Kadet Fairway” in the Arkona Basin is shown to influence the presence and properties of both trace gases and aerosol particles in the lowest atmospheric layer. Total particle number concentration and N…

Atmospheric ScienceMarine boundary layer010504 meteorology & atmospheric sciencescoastal regionlcsh:QC851-999black carbonAtmospheric sciencesmarine trafficair quality01 natural scienceshumanitiesTrace gasBaltic sea13. Climate actionship emissionddc:550Environmental sciencelcsh:Meteorology. Climatology14. Life underwaterAir quality index0105 earth and related environmental sciences
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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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Iodine Speciation in Marine Boundary Layer

2007

Marine boundary layerEnvironmental chemistryIodine speciationEnvironmental science
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The sea–air exchange of mercury (Hg) in the marine boundary layer of the Augusta basin (southern Italy): Concentrations and evasion flux

2013

Abstract The first attempt to systematically investigate the atmospheric mercury (Hg) in the MBL of the Augusta basin (SE Sicily, Italy) has been undertaken. In the past the basin was the receptor for Hg from an intense industrial activity which contaminated the bottom sediments of the Bay, making this area a potential source of pollution for the surrounding Mediterranean. Three oceanographic cruises have been thus performed in the basin during the winter and summer 2011/2012, where we estimated averaged Hg atm concentrations of about 1.5 ± 0.4 (range 0.9–3.1) and 2.1 ± 0.98 (range 1.1–3.1) ng m −3 for the two seasons, respectively. These data are somewhat higher than the background Hg atm …

Mediterranean climatePollutionBiogeochemical cycleEnvironmental EngineeringMercury evasion flux Atmospheric mercury concentrations Gaseous elemental mercury Sea–air evasion Marine boundary layer Augusta basinHealth Toxicology and Mutagenesismedia_common.quotation_subjectchemistry.chemical_elementStructural basinFlux (metallurgy)Sea airEnvironmental ChemistrySeawatermedia_commonAir PollutantsAtmospherePublic Health Environmental and Occupational HealthMercuryGeneral MedicineGeneral ChemistryPollutionMercury (element)OceanographyItalychemistryEnvironmental scienceSeasonsBayWater Pollutants ChemicalEnvironmental MonitoringChemosphere
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Unexpected vertical structure of the Saharan Air Layer and giant dust particles during AER-D

2018

The Saharan Air Layer (SAL) in the summertime eastern Atlantic is typically well mixed and 3–4 km deep, overlying the marine boundary layer (MBL). In this paper, we show experimental evidence that at times a very different structure can be observed. During the AERosol properties – Dust (AER-D) airborne campaign in August 2015, the typical structure described above was observed most of the time, and was associated with a moderate dust content yielding an aerosol optical depth (AOD) of 0.3–0.4 at 355 nm. In an intense event, however, an unprecedented vertical structure was observed close to the eastern boundary of the basin, displaying an uneven vertical distribution and a very …

Termodinàmica atmosfèricaAtmospheric ScienceMarine boundary layerSaharan Air Layer010504 meteorology & atmospheric sciencesDust particles010502 geochemistry & geophysicsAtmospheric sciences01 natural scienceslcsh:ChemistryAtmosphereRadiative TransferRadiative transferDust transportGiant dust particlesAER-D0105 earth and related environmental sciencesSaharan Air LayerAerosol Optical DepthLightninglcsh:QC1-999Aerosollcsh:QD1-999Environmental scienceShortwavelcsh:PhysicsAtmospheric Chemistry and Physics
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Aircraft measurements of aerosol particles and trace gases over the Southern Baltic Sea during the BALTIC'15 campaign in 2015

2019

During the BALTIC'15 campaign, conducted in August 2015 over the Southern Baltic Sea, trace gasses (CO2/O3/NOy/SO2) and aerosol particles (number concentration of total/non-volatile/Aitken mode/ Accumulation mode/Coarse mode/refractory black carbon, aerosol extinction coefficient, mass concentration of refractory black carbon were measured). Observations were performed on board of the Alfred Wegener Institute research aircraft Polar 5 during 4 flights: - Scientific flight 1 (SF1) 26 August 2015 - Scientific flight 2 (SF2) 28 August 2015 - Scientific flight 3 (SF3) 28 August 2015 - Scientific flight 4 (SF4) 30 August 2015

particleBaltic Seaextinctionair pollutionO3SO2NOyblack carbonmarine trafficAtmospheric Physics @ AWI (AWI_AtmoPhy)marine boundary layerShip emissionBALTIC'15CO2
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