Search results for "Arctic"

showing 10 items of 565 documents

2014

Abstract. In January 2010 and December 2011, synoptic-scale polar stratospheric cloud (PSC) fields were probed during seven flights of the high-altitude research aircraft M-55 Geophysica within the RECONCILE (Reconciliation of essential process parameters for an enhanced predictability of Arctic stratospheric ozone loss and its climate interaction) and the ESSenCe (ESSenCe: ESA Sounder Campaign) projects. Particle size distributions in a diameter range between 0.46 and 40μm were recorded by four different optical in situ instruments. Three of these particle instruments are based on the detection of forward-scattered light by single particles. The fourth instrument is a grayscale optical arr…

Atmospheric ScienceRange (particle radiation)LidarParticle numberArcticEnvironmental scienceParticleParticle sizeAtmospheric sciencesWater vaporAerosolAtmospheric Chemistry and 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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Predicting dengue fever outbreaks in French Guiana using climate indicators

2016

Background Dengue fever epidemic dynamics are driven by complex interactions between hosts, vectors and viruses. Associations between climate and dengue have been studied around the world, but the results have shown that the impact of the climate can vary widely from one study site to another. In French Guiana, climate-based models are not available to assist in developing an early warning system. This study aims to evaluate the potential of using oceanic and atmospheric conditions to help predict dengue fever outbreaks in French Guiana. Methodology/Principal Findings Lagged correlations and composite analyses were performed to identify the climatic conditions that characterized a typical e…

Atmospheric ScienceViral DiseasesEl Niño-Southern OscillationEpidemiologyClimateRainMarine and Aquatic SciencesLogistic regressionOceanographyDengue feverDisease OutbreaksDengue FeverDengue0302 clinical medicine[SDV.MHEP.MI]Life Sciences [q-bio]/Human health and pathology/Infectious diseasesOceansMedicine and Health Sciences030212 general & internal medicineClimatology[SDV.MHEP.ME]Life Sciences [q-bio]/Human health and pathology/Emerging diseasesEcologylcsh:Public aspects of medicine3. Good healthFrench Guiana[ SDV.MHEP.MI ] Life Sciences [q-bio]/Human health and pathology/Infectious diseases[ SDE.MCG ] Environmental Sciences/Global ChangesGeographyInfectious Diseases[SDU.STU.CL]Sciences of the Universe [physics]/Earth Sciences/ClimatologyEpidemiological Methods and StatisticsEquatorial Ocean RegionsSeasons[ SDU.STU.CL ] Sciences of the Universe [physics]/Earth Sciences/ClimatologyOceans Ocean temperature Seasons El Niño-Southern Oscillation Rain Dengue fever Epidemiology Equatorial ocean regionsResearch ArticleNeglected Tropical Diseasesmedicine.medical_specialtylcsh:Arctic medicine. Tropical medicinelcsh:RC955-962[SDE.MCG]Environmental Sciences/Global Changes030231 tropical medicine03 medical and health sciencesMeteorologyEnvironmental healthmedicineHumansOcean TemperatureAzores HighModels StatisticalPublic healthPublic Health Environmental and Occupational HealthOutbreaklcsh:RA1-1270Bodies of Watermedicine.diseaseTropical DiseasesSea surface temperature13. Climate actionEarth SciencesEarly warning systemClimate model[SDV.SPEE]Life Sciences [q-bio]/Santé publique et épidémiologieEpidemiologic MethodsForecastingClimate Modeling
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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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Concentrations, composition, and sources of ice-nucleating particles in the Canadian High Arctic during spring 2016

2019

Modelling studies suggest that the climate and the hydrological cycle are sensitive to the concentrations of ice-nucleating particles (INPs). However, the concentrations, composition, and sources of INPs in the atmosphere remain uncertain. Here, we report daily concentrations of INPs in the immersion freezing mode and tracers of mineral dust (Al, Fe, Ti, and Mn), sea spray aerosol (Na+ and Cl−), and anthropogenic aerosol (Zn, Pb, NO3-, NH4+, and non-sea-salt SO42-) at Alert, Canada, during a 3-week campaign in March 2016. In total, 16 daily measurements of INPs are reported. The average INP concentrations measured in the immersion freezing mode were 0.005±0.002, 0.020±0.004, and 0.186±0.040…

Atmospheric Scienceeducation.field_of_study010504 meteorology & atmospheric sciencesChemistryPopulation010501 environmental sciencesMineral dustSea spray01 natural scienceslcsh:QC1-999AerosolAtmospherelcsh:ChemistryArcticlcsh:QD1-999Environmental chemistryParticleeducationSea levellcsh:Physics0105 earth and related environmental sciencesAtmospheric Chemistry and Physics
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Temporally delineated sources of major chemical species in high Arctic snow

2018

Long-range transport of aerosol from lower latitudes to the high Arctic may be a significant contributor to climate forcing in the Arctic. To identify the sources of key contaminants entering the Canadian High Arctic an intensive campaign of snow sampling was completed at Alert, Nunavut, from September 2014 to June 2015. Fresh snow samples collected every few days were analyzed for black carbon, major ions, and metals, and this rich data set provided an opportunity for a temporally refined source apportionment of snow composition via positive matrix factorization (PMF) in conjunction with FLEXPART (FLEXible PARTicle dispersion model) potential emission sensitivity analysis. Seven source fac…

Atmospheric Sciencefood.ingredient010504 meteorology & atmospheric sciences010501 environmental sciences01 natural scienceslcsh:Chemistrychemistry.chemical_compoundfoodNitrateSulfate0105 earth and related environmental sciencesSea salt15. Life on landRadiative forcingSnowlcsh:QC1-999AerosolArctic geoengineeringOceanographychemistryArcticlcsh:QD1-99913. Climate actionEnvironmental chemistryEnvironmental sciencelcsh:PhysicsAtmospheric Chemistry and Physics
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Aircraft-based measurements of High Arctic springtime aerosol show evidence for vertically varying sources, transport and composition

2019

The sources, chemical transformations and removal mechanisms of aerosol transported to the Arctic are key factors that control Arctic aerosol–climate interactions. Our understanding of sources and processes is limited by a lack of vertically resolved observations in remote Arctic regions. We present vertically resolved observations of trace gases and aerosol composition in High Arctic springtime, made largely north of 80∘ N, during the NETCARE campaign. Trace gas gradients observed on these flights defined the polar dome as north of 66–68∘ 30′ N and below potential temperatures of 283.5–287.5 K. In the polar dome, we observe evidence for vertically varying source…

Atmospheric Sciencefood.ingredient010504 meteorology & atmospheric sciencesSea salt010501 environmental sciencesAtmospheric sciences01 natural scienceslcsh:QC1-999Trace gasAerosollcsh:ChemistryTroposphereDome (geology)foodlcsh:QD1-999Arctic13. Climate actionPotential temperaturePolarlcsh:Physics0105 earth and related environmental sciencesAtmospheric Chemistry and Physics
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Frequent ultrafine particle formation and growth in Canadian Arctic marine and coastal environments

2017

The source strength and capability of aerosol particles in the Arctic to act as cloud condensation nuclei have important implications for understanding the indirect aerosol–cloud effect within the polar climate system. It has been shown in several Arctic regions that ultrafine particle (UFP) formation and growth is a key contributor to aerosol number concentrations during the summer. This study uses aerosol number size distribution measurements from shipboard expeditions aboard the research icebreaker CCGS Amundsen in the summers of 2014 and 2016 throughout the Canadian Arctic to gain a deeper understanding of the drivers of UFP formation and growth within this marine boundary layer. UFP nu…

Atmospheric Sciencegeographygeography.geographical_feature_category010504 meteorology & atmospheric sciences010501 environmental sciences01 natural scienceslcsh:QC1-999Sink (geography)AerosolLatitudelcsh:ChemistryOceanographylcsh:QD1-999Arctic13. Climate actionUltrafine particleSea iceEnvironmental scienceCloud condensation nuclei14. Life underwaterlcsh:PhysicsPolar climate0105 earth and related environmental sciencesAtmospheric Chemistry and Physics
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Meteorological conditions during the ACLOUD/PASCAL field campaign near Svalbard in early summer 2017

2018

Abstract. The two concerted field campaigns, Arctic CLoud Observations Using airborne measurements during polar Day (ACLOUD) and the Physical feedbacks of Arctic planetary boundary level Sea ice, Cloud and AerosoL (PASCAL), took place near Svalbard from 23 May to 26 June 2017. They were focused on studying Arctic mixed-phase clouds and involved observations from two airplanes (ACLOUD), an icebreaker (PASCAL) and a tethered balloon, as well as ground-based stations. Here, we present the synoptic development during the 35-day period of the campaigns, using near-surface and upper-air meteorological observations, as well as operational satellite, analysis, and reanalysis data. Over the campaign…

Atmospheric Sciencegeographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesAdvectionCloud cover010502 geochemistry & geophysics01 natural scienceslcsh:QC1-999Aerosollcsh:ChemistryWarm frontArcticlcsh:QD1-99913. Climate actionClimatologyPeriod (geology)Sea iceEnvironmental scienceSatelliteInstitut für Geowissenschaftenlcsh:Physics0105 earth and related environmental sciences
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2018

Abstract. Low planetary wave activity led to a stable vortex with exceptionally cold temperatures in the 2015–2016 Arctic winter. Extended areas with temperatures below the ice frost point temperature Tice persisted over weeks in the Arctic stratosphere as derived from the 36-year temperature climatology of the ERA-Interim reanalysis data set of the European Centre for Medium-Range Weather Forecasts (ECMWF). These extreme conditions promoted the formation of widespread polar stratospheric ice clouds (ice PSCs). The space-borne Cloud-Aerosol Lidar with Orthogonal Polarization (CALIOP) instrument on board the CALIPSO (Cloud-Aerosol Lidar and Infrared Pathfinder Satellite Observation) satellit…

Atmospheric Sciencegeographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesAtmospheric sciences01 natural sciencesArctic ice pack010309 opticsArctic0103 physical sciencesFrostIce nucleusDepolarization ratioEnvironmental scienceHaloStratosphereWater vapor0105 earth and related environmental sciencesAtmospheric Chemistry and Physics
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