0000000001036384

AUTHOR

Jos Lelieveld

showing 43 related works from this author

Inappropriate evaluation of methodology and biases by P. Morfeld and T.C. Erren.

2020

Physiologybusiness.industryFossil fuelAir pollutionmedicine.disease_causeLife ExpectancyBiasPhysiology (medical)Environmental healthGreenhouse gasAir PollutionLife expectancyMedicineCardiology and Cardiovascular MedicinebusinessCause of deathCardiovascular research
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Global health burden of PM2.5, black and organic carbon aerosols

2021

Total organic carbonEnvironmental protectionGlobal healthGeneral Earth and Planetary SciencesEnvironmental scienceGeneral Environmental ScienceISEE Conference Abstracts
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Direct measurement of NO3 reactivity in a boreal forest

2017

Atmospheric Chemistry and Physics Discussions
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Regional and global contributions of air pollution to risk of death from COVID-19

2020

Abstract Aims The risk of mortality from the coronavirus disease that emerged in 2019 (COVID-19) is increased by comorbidity from cardiovascular and pulmonary diseases. Air pollution also causes excess mortality from these conditions. Analysis of the first severe acute respiratory syndrome coronavirus (SARS-CoV-1) outcomes in 2003, and preliminary investigations of those for SARS-CoV-2 since 2019, provide evidence that the incidence and severity are related to ambient air pollution. We estimated the fraction of COVID-19 mortality that is attributable to the long-term exposure to ambient fine particulate air pollution. Methods and results We characterized global exposure to fine particulates…

Fine particulate matterAsiaTime FactorsPhysiologyAir pollutionAir pollution030204 cardiovascular system & hematology010501 environmental sciencesmedicine.disease_causeGlobal Health01 natural sciencesRisk Assessment03 medical and health sciences0302 clinical medicineRisk FactorsEnvironmental healthPhysiology (medical)Risk of mortalitymedicineGlobal healthHumansEast AsiaAcademicSubjects/MED002000105 earth and related environmental sciencesAir PollutantsIncidence (epidemiology)COVID-19Environmental exposureOriginal ArticlesEnvironmental ExposureParticulatesModels TheoreticalmortalityEuropeEditor's ChoicecomorbidityNorth AmericaEnvironmental scienceParticulate MatterRisk assessmentCardiology and Cardiovascular MedicineCardiovascular Research
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Loss of life expectancy from air pollution compared to other risk factors: a worldwide perspective

2020

Abstract Aims Long-term exposure of humans to air pollution enhances the risk of cardiovascular and respiratory diseases. A novel Global Exposure Mortality Model (GEMM) has been derived from many cohort studies, providing much-improved coverage of the exposure to fine particulate matter (PM2.5). We applied the GEMM to assess excess mortality attributable to ambient air pollution on a global scale and compare to other risk factors. Methods and results We used a data-informed atmospheric model to calculate worldwide exposure to PM2.5 and ozone pollution, which was combined with the GEMM to estimate disease-specific excess mortality and loss of life expectancy (LLE) in 2015. Using this model, …

Lung DiseasesMaleFine particulate matterTime Factors010504 meteorology & atmospheric sciencesPhysiologyAnthropogenic emissionsFossil fuel emissionsAir pollution010501 environmental sciencesGlobal Healthmedicine.disease_cause01 natural sciencesRisk FactorsGlobal healthAcademicSubjects/MED00200Childmedia_commonAged 80 and overExposure to ViolenceExpectancy theoryAir PollutantsMortality rateMiddle AgedParticulatesCardiovascular DiseasesChild PreschoolPublic health risksFemaleCardiology and Cardiovascular MedicineLoss of lifeAdultPollutionAdolescentRisk in Cardiovascular Diseasemedia_common.quotation_subjectAir pollutionViolenceRisk AssessmentYoung AdultOzoneLife ExpectancyPhysiology (medical)Environmental healthTobacco SmokingmedicineHumansReview Series from the Naples 2019 Joint Meeting of the ESC Working Groups on Myocardial Function and Cellular Biology of the HeartAged0105 earth and related environmental sciencesInfant NewbornLoss of life expectancyInfantEnvironmental ExposureOriginal ArticlesNatural emissionsEditor's ChoiceLife expectancyEnvironmental scienceParticulate MatterTobacco Smoke PollutionCardiovascular Research
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The Palaeoanthropocene – The beginnings of anthropogenic environmental change

2013

Abstract As efforts to recognize the Anthropocene as a new epoch of geological time are mounting, the controversial debate about the time of its beginning continues. Here, we suggest the term Palaeoanthropocene for the period between the first, barely recognizable, anthropogenic environmental changes and the industrial revolution when anthropogenically induced changes of climate, land use and biodiversity began to increase very rapidly. The concept of the Palaeoanthropocene recognizes that humans are an integral part of the Earth system rather than merely an external forcing factor. The delineation of the beginning of the Palaeoanthropocene will require an increase in the understanding and …

Global and Planetary Changeeducation.field_of_studyEcologyEnvironmental changeLand useEcologyEarth sciencePopulationBiodiversitySubsistence agricultureDemiseEarth system scienceGeographyAnthropoceneEarth and Planetary Sciences (miscellaneous)educationAnthropocene
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Aerosol physicochemical effects on CCN activation simulated with the chemistry-climate model EMAC

2017

Abstract This study uses the EMAC atmospheric chemistry-climate model to simulate cloud properties with a prognostic cloud droplet nucleation scheme. We present modeled global distributions of cloud condensation nuclei (CCN) number concentrations and CCN activation rates, together with the effective hygroscopicity parameter κ, to describe the aerosol chemical composition effect on CCN activation. Large particles can easily activate into cloud droplets, even at low κ values due to the dominant size effect in cloud droplet formation. Small particles are less efficiently activated as CCN, and are more sensitive to aerosol composition and supersaturation. Since the dominant fraction of small pa…

Atmospheric ScienceSupersaturation010504 meteorology & atmospheric sciencesChemistrybusiness.industryNorthern HemisphereNucleationCloud computing010502 geochemistry & geophysicsAtmospheric sciences01 natural sciencesAerosolAtmosphereClimatologyCloud condensation nucleibusinessChemical composition0105 earth and related environmental sciencesGeneral Environmental ScienceAtmospheric Environment
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Sensitivity of aerosol extinction to new mixing rules in the AEROPT submodel of the ECHAM5/MESSy1.9 atmospheric chemistry (EMAC) model

2014

Abstract. The modelling of aerosol radiative forcing is a major cause of uncertainty in the assessment of global and regional atmospheric energy budgets and climate change. One reason is the strong dependence of the aerosol optical properties on the mixing state of aerosol components like black carbon and sulphates. Using a new column version of the aerosol optical properties and radiative transfer code of the atmospheric chemistry-climate model EMAC, we study the radiative transfer applying various mixing states. The aerosol optics code builds on the AEROPT submodel which assumes homogeneous internal mixing utilising the volume average refractive index mixing rule. We have extended the sub…

MeteorologyChemistryAtmospheric chemistryAerosol extinctionSensitivity (control systems)Atmospheric sciencesPhysics::Atmospheric and Oceanic PhysicsMixing (physics)
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Identification of Tropical‐Extratropical Interactions and Extreme Precipitation Events in the Middle East Based On Potential Vorticity and Moisture T…

2018

The authors wish to thank CRED, ECMWF, NASA, JAXA, and APHRODITE for providing their data sets, which are available under the following links; EM-DAT (http://www.emdat.be/), ERA-Interim (https://www.ecmwf.int/en/research/climate-reanalysis/era-interim), TRMM (https://pmm.nasa.gov/data-access/downloads/trmm), and Aphrodite (http://www.chikyu.ac.jp/precip/english/). We acknowledge the Israeli Atmospheric and Climatic Data Centre (IACDC), supported by the Israeli Ministry of Science, Technology and Space, for providing the Israel Meteorological Service (IMS) daily rainfall records as well as the Ministry of Environment, Water and Agriculture (MEWA) in the Kingdom of Saudi Arabia for providing …

Atmospheric ScienceMiddle East010504 meteorology & atmospheric sciencesMeteorology0208 environmental biotechnology02 engineering and technology01 natural sciencesAtmospheric research020801 environmental engineeringClimatic dataIdentification (information)GeophysicsGeographySpace and Planetary SciencePotential vorticityEarth and Planetary Sciences (miscellaneous)Extratropical cycloneChristian ministryPrecipitation0105 earth and related environmental sciencesJournal of Geophysical Research: Atmospheres
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Contribution of airborne desert dust to air quality and cardiopulmonary disease

2019

business.industryEnvironmental healthMedicineParticulatesCardiology and Cardiovascular MedicinebusinessAir quality indexDesert dustCardiopulmonary diseaseEuropean Heart Journal
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Aerosol Health Effects from Molecular to Global Scales.

2017

Poor air quality is globally the largest environmental health risk. Epidemiological studies have uncovered clear relationships of gaseous pollutants and particulate matter (PM) with adverse health outcomes, including mortality by cardiovascular and respiratory diseases. Studies of health impacts by aerosols are highly multidisciplinary with a broad range of scales in space and time. We assess recent advances and future challenges regarding aerosol effects on health from molecular to global scales through epidemiological studies, field measurements, health-related properties of PM, and multiphase interactions of oxidants and PM upon respiratory deposition. Global modeling combined with epide…

medicine.medical_specialty010504 meteorology & atmospheric sciencesIndoor bioaerosolAir pollution010501 environmental sciencesmedicine.disease_cause01 natural sciencesAir PollutionmedicineEnvironmental ChemistryAir quality index0105 earth and related environmental sciencesAerosolsAir PollutantsPublic healthGeneral ChemistryParticulates3. Good healthAerosolEpidemiologic StudiesDeposition (aerosol physics)13. Climate actionEnvironmental chemistryAtmospheric pollutantsEnvironmental scienceParticulate MatterEnvironmental sciencetechnology
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NATO ARW on Clouds — Session Summaries

1996

The two papers presented in this session focused on the role of dynamics in the water vapor distribution of the tropics and its implications to climate.

MeteorologyEnvironmental scienceSession (computer science)Cirrus cloudData science
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Dynamics of tropical–extratropical interactions and extreme precipitation events in Saudi Arabia in autumn, winter and spring

2016

Atmospheric Sciencegeographygeography.geographical_feature_category010504 meteorology & atmospheric sciences0208 environmental biotechnologySocial impactTropics02 engineering and technology01 natural sciences020801 environmental engineeringClimatologySpring (hydrology)Extratropical cycloneFlash floodEnvironmental sciencePrecipitation0105 earth and related environmental sciencesQuarterly Journal of the Royal Meteorological Society
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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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Isoprene and monoterpene simulations using the chemistry-climate model EMAC (v2.55) with interactive vegetation from LPJ-GUESS (v4.0)

2023

Earth system models (ESMs) integrate previously separate models of the ocean, atmosphere and vegetation into one comprehensive modelling system enabling the investigation of interactions between different components of the Earth system. Global isoprene and monoterpene emissions from terrestrial vegetation, which represent the most important source of volatile organic compounds (VOCs) in the Earth system, need to be included in global and regional chemical transport models given their major chemical impacts on the atmosphere. Due to the feedback of vegetation activity involving interactions with weather and climate, a coupled modelling system between vegetation and atmospheric chemistry is r…

General Medicine
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Towards an advanced atmospheric chemistry-enabled ESM with dynamic land surface processes: Part I - Linking LPJ-GUESS (v4.0) with EMAC modelling syst…

2018

Earth System Models (ESMs) are invaluable tools that have emerged from decades of research modelling the earth system. Central to this development has been the coupling of previously separate model types, such as ocean, atmospheric and vegetation models, to provide interactive feedbacks between these earth system components. Here we present the initial steps of coupling LPJ-GUESS, a dynamic global vegetation model, to EMAC, an atmospheric chemistry enabled atmosphere-ocean general circulation model. The LPJ-GUESS framework includes a comparatively detailed tree-individual based model of vegetation dynamics, a crop and managed-land scheme, a nitrogen cycle and a choice of fire models; and he…

Earth system scienceAtmosphereAtmospheric chemistryCloud condensation nucleiEnvironmental scienceBiosphereVegetationDynamic global vegetation modelAtmospheric sciencesNitrogen cycle
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Heart healthy cities : Genetics loads the gun but the environment pulls the trigger

2021

Abstract The world’s population is estimated to reach 10 billion by 2050 and 75% of this population will live in cities. Two-third of the European population already live in urban areas and this proportion continues to grow. Between 60% and 80% of the global energy use is consumed by urban areas, with 70% of the greenhouse gas emissions produced within urban areas. The World Health Organization states that city planning is now recognized as a critical part of a comprehensive solution to tackle adverse health outcomes. In the present review, we address non-communicable diseases with a focus on cardiovascular disease and the urbanization process in relation to environmental risk exposures inc…

Exposomemedicine.medical_specialtyHot Temperatureheart healthy cityPopulationair pollutionnoise pollution030204 cardiovascular system & hematology03 medical and health sciences0302 clinical medicineUrban planningUrbanizationHumansState of the Art ReviewMedicineAcademicSubjects/MED00200030212 general & internal medicineCitiesCity PlanningUrban heat islandeducationEnvironmental planningenvironmental stressorseducation.field_of_studyurban and transport planning and design interventionsbusiness.industryPublic healthlight pollutionUrban HealthEpidemiology and PreventionEnvironmental ExposureEnvironmental exposureEditor's ChoiceSustainabilityheat islands effectsCardiology and Cardiovascular Medicinebusiness
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Direct measurement of NO<sub>3</sub> reactivity in a boreal forest

2017

Abstract. We present the first direct measurements of NO3 reactivity (or inverse lifetime, s−1) in the Finnish boreal forest. The data were obtained during the IBAIRN campaign (Influence of Biosphere-Atmosphere Interactions on the Reactive Nitrogen budget) which took place in Hyytiälä, Finland during the summer/autumn transition in September 2016. The NO3 reactivity was generally very high with a maximum value of 0.94 s−1 and displayed a strong diel variation with a campaign-averaged nighttime mean value of 0.11 s−1 compared to a daytime value of 0.04 s−1. The highest nighttime NO3-reactivity was accompanied by major depletion of canopy level ozone and was associated with strong temperature…

CanopyForest floorDaytimeOzone010504 meteorology & atmospheric sciencesReactive nitrogen04 agricultural and veterinary sciences15. Life on landAtmospheric sciences01 natural sciencesTrace gaschemistry.chemical_compoundchemistry13. Climate actionClimatology040103 agronomy & agriculture0401 agriculture forestry and fisheriesReactivity (chemistry)Diel vertical migration0105 earth and related environmental sciences
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Cold cloud microphysical process rates in a global chemistry–climate model

2021

Microphysical processes in cold clouds which act as sources or sinks of hydrometeors below 0 ∘C control the ice crystal number concentrations (ICNCs) and in turn the cloud radiative effects. Estimating the relative importance of the cold cloud microphysical process rates is of fundamental importance to underpin the development of cloud parameterizations for weather, atmospheric chemistry, and climate models and to compare the output with observations at different temporal resolutions. This study quantifies and investigates the ICNC rates of cold cloud microphysical processes by means of the chemistry–climate model EMAC (ECHAM/MESSy Atmospheric Chemistry) and defines the hierarchy of sources…

Atmospheric Science010504 meteorology & atmospheric sciences0208 environmental biotechnology02 engineering and technologyAtmospheric sciences01 natural sciencesPhysics::GeophysicsTropospherelcsh:Chemistryddc:550Physics::Atmospheric and Oceanic Physics0105 earth and related environmental sciencesAccretion (meteorology)Ice crystalsGlobal warmingLongwavelcsh:QC1-999020801 environmental engineeringEarth scienceslcsh:QD1-99913. Climate action[SDU]Sciences of the Universe [physics]Atmospheric chemistryIce nucleusEnvironmental scienceClimate modellcsh:Physics
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Direct measurement of NO<sub>3</sub> radical reactivity in a boreal forest

2018

Abstract. We present the first direct measurements of NO3 reactivity (or inverse lifetime, s−1) in the Finnish boreal forest. The data were obtained during the IBAIRN campaign (Influence of Biosphere-Atmosphere Interactions on the Reactive Nitrogen budget) which took place in Hyytiälä, Finland during the summer/autumn transition in September 2016. The NO3 reactivity was generally very high with a maximum value of 0.94 s−1 and displayed a strong diel variation with a campaign-averaged nighttime mean value of 0.11 s−1 compared to a daytime value of 0.04 s−1. The highest nighttime NO3 reactivity was accompanied by major depletion of canopy level ozone and was associated with strong temperature…

Forest floorAtmospheric ScienceDaytimeOzone010504 meteorology & atmospheric sciencesReactive nitrogen15. Life on land010501 environmental sciencesSeasonalityAtmospheric sciencesmedicine.disease01 natural sciencesTrace gaschemistry.chemical_compoundchemistry13. Climate actionAtmospheric chemistrymedicineEnvironmental scienceReactivity (chemistry)0105 earth and related environmental sciencesAtmospheric Chemistry and Physics
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Traffic-related environmental risk factors and their impact on oxidative stress and cardiovascular health

2020

Abstract The adverse effects of the environment on health are increasingly recognized. The WHO estimates that noise accounts for 1 million annually lost healthy life years in Western Europe due to increased incidence of hypertension, heart failure, myocardial infarction, and stroke. An even more severe health impact was reported for air pollution (e.g., PM2.5) accounting for up to 800,000 annual excess deaths in Europe. Adverse effects of air pollution are mechanistically better characterized, but there is still a great need to understand the pathophysiology of air pollution-induced cardiovascular disease, especially the potential synergistic effects together with noise. With the present bo…

business.industryHealthy Life YearsDiseasemedicine.diseasemedicine.disease_causeEnvironmental healthHeart failureHeart rateMedicineMyocardial infarctionbusinessAdverse effectStrokeOxidative stress
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Stratospheric sulfur and its implications for radiative forcing simulated by the chemistry climate model EMAC

2015

Multiyear simulations with the atmospheric chemistry general circulation model EMAC with a microphysical modal aerosol module at high vertical resolution demonstrate that the sulfur gases COS and SO2, the latter from low-latitude and midlatitude volcanic eruptions, predominantly control the formation of stratospheric aerosol. Marine dimethyl sulfide (DMS) and other SO2 sources, including strong anthropogenic emissions in China, are found to play a minor role except in the lowermost stratosphere. Estimates of volcanic SO2 emissions are based on satellite observations using Total Ozone Mapping Spectrometer and Ozone Monitoring Instrument for total injected mass and Michelson Interferometer fo…

Ozone Monitoring InstrumentAtmospheric Scienceradiative forcingTotal Ozone Mapping SpectrometervolcanoesRadiative forcingAtmospheric sciences7. Clean energyAerosolchemistry climate modelchemistry.chemical_compoundGeophysicschemistrystratospheric sulfur13. Climate actionSpace and Planetary ScienceAtmospheric chemistryClimatologyEarth and Planetary Sciences (miscellaneous)Radiative transferEnvironmental scienceSulfate aerosolStratosphereResearch ArticlesJournal of Geophysical Research: Atmospheres
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Evaluation of the coupled high-resolution atmospheric chemistry model system MECO(n) using in situ and MAX-DOAS NO2 measurements

2021

We present high spatial resolution (up to 2.2×2.2 km2) simulations focussed over south-west Germany using the online coupled regional atmospheric chemistry model system MECO(n) (MESSy-fied ECHAM and COSMO models nested n times). Numerical simulation of nitrogen dioxide (NO2) surface volume mixing ratios (VMRs) are compared to in situ measurements from a network with 193 locations including background, traffic-adjacent and industrial stations to investigate the model's performance in simulating the spatial and temporal variability of short-lived chemical species. We show that the use of a high-resolution and up-to-date emission inventory is crucial for reproducing the spatial variability and…

Earthwork. FoundationsEmissionen Luftqualität NO2TA715-787ddc:550Environmental engineeringTA170-171
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Modeling the aerosol chemical composition of the tropopause over the Tibetan Plateau during the Asian summer monsoon

2019

Enhanced aerosol abundance in the upper troposphere and lower stratosphere (UTLS) associated with the Asian summer monsoon (ASM) is referred to as the Asian Tropopause Aerosol Layer (ATAL). The chemical composition, microphysical properties, and climate effects of aerosols in the ATAL have been the subject of discussion over the past decade. In this work, we use the ECHAM/MESSy Atmospheric Chemistry (EMAC) general circulation model at a relatively fine grid resolution (about 1.1×1.1∘) to numerically simulate the emissions, chemistry, and transport of aerosols and their precursors in the UTLS within the ASM anticyclone during the years 2010–2012. We find a pronounced maximum of aerosol extin…

ECHAMAtmospheric SciencegeographyPlateaugeography.geographical_feature_category010504 meteorology & atmospheric sciences010501 environmental sciencesMineral dustrespiratory systemAtmospheric sciences01 natural scienceslcsh:QC1-999Aerosollcsh:ChemistryTropospherelcsh:QD1-999Anticycloneddc:550TropopauseStratospherelcsh:Physics0105 earth and related environmental sciences
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Luftverschmutzung als wichtiger Kofaktor bei COVID-19-Sterbefällen

2021

Zusammenfassung Hintergrund Die Sterblichkeit bei COVID-19 ist in Anwesenheit kardiopulmonaler Komorbiditäten erhöht. Luftverschmutzung ist ebenfalls mit einer erhöhten Sterblichkeit assoziiert, v. a. vermittelt durch kardiopulmonale Erkrankungen. Beobachtungen zu Beginn der COVID-19-Pandemie zeigten, dass die Sterblichkeit bei COVID-19 v. a. in Regionen mit stärkerer Luftverschmutzung erhöht ist. Ungeklärt ist der Einfluss von Luftverschmutzung für den Krankheitsverlauf bei COVID-19. Methode Es wurde eine selektive Literaturrecherche von Studien bis Anfang April 2021 in PubMed zum Zusammenhang von Luftverschmutzung und der COVID-19-Mortalität mit den Suchbegriffen „air pollution AND/OR COV…

Gynecologymedicine.medical_specialty2019-20 coronavirus outbreakCoronavirus disease 2019 (COVID-19)business.industrySevere acute respiratory syndrome coronavirus 2 (SARS-CoV-2)610 MedizinOriginalienFeinstaubEndotheliale DysfunktionMortalitätEmissionenSARS-CoV‑2Emissions610 Medical sciencesmedicineEndothelial dysfunctionMortalityCardiology and Cardiovascular MedicinebusinessParticulate matterDer Kardiologe
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Calibration of an airborne HO<sub><i>x</i></sub> instrument using the All Pressure Altitude-b…

2020

Abstract. Laser-induced fluorescence (LIF) is a widely used technique for both laboratory-based and ambient atmospheric chemistry measurements. However, LIF instruments require calibrations in order to translate instrument response into concentrations of chemical species. Calibration of LIF instruments measuring OH and HO2 ( HOx ) typically involves the photolysis of water vapor by 184.9 nm light, thereby producing quantitative amounts of OH and HO2 . For ground-based HOx instruments, this method of calibration is done at one pressure (typically ambient pressure) at the instrument inlet. However, airborne HOx instruments can experience varying cell pressures, internal residence times, tempe…

010302 applied physicsAtmospheric ScienceMaterials science010504 meteorology & atmospheric sciencesNozzleDetectorAnalytical chemistryHumidity01 natural sciencesAtmospheric chemistry0103 physical sciencesCalibrationPressure altitudeWater vapor0105 earth and related environmental sciencesAmbient pressureAtmospheric Measurement Techniques
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Global impact of monocyclic aromatics on tropospheric composition

2017

Abstract. Aromatic compounds are reactive species influencing ozone formation, OH concentrations and organic aerosol formation. An assessment of their impacts on the gas-phase composition at a global scale has been performed using a general circulation atmospheric-chemistry model. Globally, we found a small annual average net decrease (less than 3 %) in global OH, ozone, and NOx mixing ratios when aromatic compounds are included in the chemical mechanism. This inclusion of aromatics also results in CO mixing ratio increases, which cause a general decrease in OH concentrations. The largest changes are found in glyoxal and NO3, with increases in the atmospheric burden of 10 % and 6 %, respect…

Ozone010504 meteorology & atmospheric sciencesFormaldehyde010501 environmental sciences01 natural sciencesAerosolTropospherechemistry.chemical_compoundchemistryAtmospheric chemistryEnvironmental chemistryddc:550Mixing ratioGlyoxalNOx0105 earth and related environmental sciences
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Intercomparison and evaluation of global aerosol microphysical properties among AeroCom models of a range of complexity

2014

Many of the next generation of global climate models will include aerosol schemes which explicitly simulate the microphysical processes that determine the particle size distribution. These models enable aerosol optical properties and cloud condensation nuclei (CCN) concentrations to be determined by fundamental aerosol processes, which should lead to a more physically based simulation of aerosol direct and indirect radiative forcings. This study examines the global variation in particle size distribution simulated by 12 global aerosol microphysics models to quantify model diversity and to identify any common biases against observations. Evaluation against size distribution measurements from…

Atmospheric Science010504 meteorology & atmospheric sciencesParticle numbergeneral-circulation modelmixing state010501 environmental sciencesEnvironmentclimate modelblack carbonAtmospheric sciences01 natural sciencesTropospherelcsh:ChemistryZeppelinobservatorietUrban Developmentddc:550Cloud condensation nucleiBuilt Environmentnumber size distributionsPhysics::Atmospheric and Oceanic Physics0105 earth and related environmental sciencesMicrophysicsparticle formationEarth / EnvironmentalCloud physicsatmospheric aerosolCAS - Climate Air and SustainabilityRadiative forcinglcsh:QC1-999Aerosolcloud condensation nucleimarine boundary-layerlcsh:QD1-99913. Climate actionClimatologyEnvironmental scienceClimate modelELSS - Earth Life and Social Sciencesoff-line modellcsh:Physics
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Cardiovascular disease burden from ambient air pollution in Europe reassessed using novel hazard ratio functions

2019

Abstract Aims Ambient air pollution is a major health risk, leading to respiratory and cardiovascular mortality. A recent Global Exposure Mortality Model, based on an unmatched number of cohort studies in many countries, provides new hazard ratio functions, calling for re-evaluation of the disease burden. Accordingly, we estimated excess cardiovascular mortality attributed to air pollution in Europe. Methods and results The new hazard ratio functions have been combined with ambient air pollution exposure data to estimate the impacts in Europe and the 28 countries of the European Union (EU-28). The annual excess mortality rate from ambient air pollution in Europe is 790 000 [95% confidence i…

Fine particulate matterPrevention and EpidemiologyAir pollutionAir pollutionFast Track Clinical Research030204 cardiovascular system & hematologymedicine.disease_cause03 medical and health sciences0302 clinical medicineEnvironmental healthPer capitaMedicinemedia_common.cataloged_instanceHumansEuropean unionDisease burdenmedia_commonExcess mortality ratebusiness.industryMortality rateHazard ratioLoss of life expectancyUncertainty030229 sport sciencesEnvironmental ExposureCardiovascular riskConfidence intervalEuropeEditor's ChoiceCardiovascular DiseasesLife expectancyCardiology and Cardiovascular MedicinebusinessHealth promotion interventionEuropean Heart Journal
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Direct measurement of NO3 radical reactivity in a boreal forest

2018

We present the first direct measurements of NO3 reactivity (or inverse lifetime, s−1) in the Finnish boreal forest. The data were obtained during the IBAIRN campaign (Influence of Biosphere-Atmosphere Interactions on the Reactive Nitrogen budget) which took place in Hyytiälä, Finland during the summer/autumn transition in September 2016. The NO3 reactivity was generally very high with a maximum value of 0.94 s−1 and displayed a strong diel variation with a campaign-averaged nighttime mean value of 0.11 s−1 compared to a daytime value of 0.04 s−1. The highest nighttime NO3 reactivity was accompanied by major depletion of canopy level ozone and was associated with strong temperature inversion…

SESQUITERPENE EMISSIONSBIOGENIC EMISSIONSOXIDATION CAPACITYSEASONAL-VARIATIONIN-SITU MEASUREMENTSRURAL MOUNTAIN-SITENOCTURNAL BOUNDARY-LAYERVOLATILE ORGANIC-COMPOUNDS114 Physical scienceslcsh:QC1-999lcsh:Chemistrylcsh:QD1-999SCOTS PINEATMOSPHERIC CHEMISTRY1172 Environmental scienceslcsh:PhysicsAtmospheric Chemistry and Physics
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Evaluation of the coupled high-resolution atmospheric chemistry model system MECO(n) using in situ and MAX-DOAS NO<sub>2</sub&am…

2021

Abstract. We present high spatial resolution (up to 2.2×2.2 km2) simulations focussed over south-west Germany using the online coupled regional atmospheric chemistry model system MECO(n) (MESSy-fied ECHAM and COSMO models nested n times). Numerical simulation of nitrogen dioxide (NO2) surface volume mixing ratios (VMRs) are compared to in situ measurements from a network with 193 locations including background, traffic-adjacent and industrial stations to investigate the model's performance in simulating the spatial and temporal variability of short-lived chemical species. We show that the use of a high-resolution and up-to-date emission inventory is crucial for reproducing the spatial varia…

ECHAMAtmospheric Science010504 meteorology & atmospheric sciencesDifferential optical absorption spectroscopyElevation010501 environmental sciencesAtmospheric sciences01 natural sciencesAzimuthTroposphereBoundary layerAtmospheric chemistryEnvironmental scienceSpatial variability0105 earth and related environmental sciencesAtmospheric Measurement Techniques
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Effects of gaseous and solid constituents of air pollution on endothelial function

2018

Abstract Ambient air pollution is a leading cause of non-communicable disease globally. The largest proportion of deaths and morbidity due to air pollution is now known to be due to cardiovascular disorders. Several particulate and gaseous air pollutants can trigger acute events (e.g. myocardial infarction, stroke, heart failure). While the mechanisms by which air pollutants cause cardiovascular events is undergoing continual refinement, the preponderant evidence support rapid effects of a diversity of pollutants including all particulate pollutants (e.g. course, fine, ultrafine particles) and gaseous pollutants such as ozone, on vascular function. Indeed alterations in endothelial function…

0301 basic medicineClinical ReviewFine particulateAir pollutionAir pollution030204 cardiovascular system & hematologymedicine.disease_cause03 medical and health sciencesGreenhouse Gases0302 clinical medicineOzoneRisk FactorsEnvironmental healthMedicineAnimalsHumansEndothelial dysfunctionNitrogen dioxidePollutantInflammationAir PollutantsHuman studiesAmbient air pollutionbusiness.industryEnvironmental ExposureParticulates3. Good healthEditor's Choice030104 developmental biology13. Climate actionCardiovascular DiseasesOxidative stressEndothelium VascularCurrent (fluid)Cardiology and Cardiovascular MedicinebusinessVascular functionParticulate matterTranslational MedicineEuropean Heart Journal
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Daytime formation of nitrous acid at a coastal remote site in Cyprus indicating a common ground source of atmospheric HONO and NO

2016

Abstract. Characterization of daytime sources of nitrous acid (HONO) is crucial to understand atmospheric oxidation and radical cycling in the planetary boundary layer. HONO and numerous other atmospheric trace constituents were measured on the Mediterranean island of Cyprus during the CYPHEX campaign (CYPHEX = CYprus PHotochemical EXperiment) in summer 2014. Average volume mixing ratios of HONO were 35 pptv (±25 pptv) with a HONO/NOx ratio of 0.33, which was considerably higher than reported for most other rural and urban regions. Diel profiles of HONO showed peak values in the late morning (60±28 pptv around 09:00 local time), and persistently high mixing ratios during daytime (45±18 pptv…

ddc:550
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Environmental Factors Such as Noise and Air Pollution and Vascular Disease

2020

Significance: According to the World Health Organization, noncommunicable diseases are the globally leading cause of mortality. Recent Advances: About 71% of 56 million deaths that occurred worldwide are due to noncommunicable cardiovascular risk factors, including tobacco smoking, unhealthy diets, lack of physical activity, overweight, arterial hypertension, diabetes, and hypercholesterolemia, which can be either avoided or substantially reduced. Critical Issues: Thus, it is estimated that 80% of premature heart disease, stroke, and diabetes can be prevented. More recent evidence indicates that environmental stressors such as noise and air pollution contribute significantly to the global b…

0301 basic medicineHeart diseasePhysiologyClinical BiochemistryDiseaseOverweightRisk AssessmentBiochemistry03 medical and health sciencesRisk FactorsAir PollutionDiabetes mellitusEnvironmental healthmedicineAnimalsHumansEndotheliumVascular DiseasesEndothelial dysfunctionMolecular BiologyGeneral Environmental Science030102 biochemistry & molecular biologybusiness.industryNoise pollutionVascular diseaseStressorEnvironmental ExposureCell Biologymedicine.diseaseOxidative Stress030104 developmental biologyCardiovascular DiseasesGeneral Earth and Planetary SciencesDisease Susceptibilitymedicine.symptomNoisebusinessAntioxidants & Redox Signaling
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Sensitivity of aerosol radiative effects to different mixing assumptions in the AEROPT 1.0 submodel of the EMAC atmospheric-chemistry–climate model

2014

Abstract. The modelling of aerosol radiative forcing is a major cause of uncertainty in the assessment of global and regional atmospheric energy budgets and climate change. One reason is the strong dependence of the aerosol optical properties on the mixing state of aerosol components, such as absorbing black carbon and, predominantly scattering sulfates. Using a new column version of the aerosol optical properties and radiative-transfer code of the ECHAM/MESSy atmospheric-chemistry–climate model (EMAC), we study the radiative transfer applying various mixing states. The aerosol optics code builds on the AEROPT (AERosol OPTical properties) submodel, which assumes homogeneous internal mixing …

lcsh:GeologyECHAMChemistryAtmospheric chemistrylcsh:QE1-996.5Radiative transferClimate modelRadiative forcingAtmospheric sciencesAbsorption (electromagnetic radiation)Physics::Atmospheric and Oceanic PhysicsMixing (physics)AerosolGeoscientific Model Development
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Air pollution, chronic smoking, and mortality.

2019

business.industryProportional hazards modelSmokingAir pollutionMEDLINEmedicine.disease_causeEuropeCardiovascular DiseasesEnvironmental healthAir PollutionmedicineHumansCardiology and Cardiovascular MedicinebusinessProportional Hazards ModelsEuropean heart journal
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Ambient Air Pollution Increases the Risk of Cerebrovascular and Neuropsychiatric Disorders through Induction of Inflammation and Oxidative Stress

2020

Exposure to ambient air pollution is a well-established determinant of health and disease. The Lancet Commission on pollution and health concludes that air pollution is the leading environmental cause of global disease and premature death. Indeed, there is a growing body of evidence that links air pollution not only to adverse cardiorespiratory effects but also to increased risk of cerebrovascular and neuropsychiatric disorders. Despite being a relatively new area of investigation, overall, there is mounting recent evidence showing that exposure to multiple air pollutants, in particular to fine particles, may affect the central nervous system (CNS) and brain health, thereby contributing to …

air pollutionneurological disordersAir pollutionReviewDisease010501 environmental sciencesGlobal Healthmedicine.disease_cause01 natural scienceslcsh:Chemistry0302 clinical medicineMedicineStrokelcsh:QH301-705.5SpectroscopyDepression (differential diagnoses)media_commonAir Pollutantscerebrovascular disordersGeneral MedicinestrokeComputer Science ApplicationsDisease Susceptibilitycerebrovascular disorders ; dementia ; oxidative stress ; mental disorders ; air pollution ; particulate matter ; inflammation ; neurological disorders ; strokePollutionmedicine.medical_specialtymedia_common.quotation_subjectCatalysisInorganic Chemistry03 medical and health sciencesEnvironmental healthAnimalsHumansDementiaPhysical and Theoretical ChemistryMolecular Biology0105 earth and related environmental sciencesInflammationparticulate matterbusiness.industryPublic healthOrganic ChemistryCOVID-19medicine.diseasemental disordersDisease Models AnimalOxidative Stresslcsh:Biology (General)lcsh:QD1-999business030217 neurology & neurosurgeryOxidative stressdementiaInternational Journal of Molecular Sciences
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The "exposome" concept - how environmental risk factors influence cardiovascular health.

2019

There is general consensus that environmental pollution and non-chemical stressors contribute to the incidence and prevalence of chronic noncommunicable disease (e.g. cardiovascular, metabolic and mental). Clinical and epidemiological studies support that air pollution and traffic noise are associated with a higher risk for cardiovascular disease and significantly contribute to overall mortality. In this respect, the “exposome” provides a comprehensive description of lifelong exposure history. A recent publication using an updated global exposure-mortality model found that the global all-cause mortality rate attributable to ambient air pollution by PM2.5 and O3 was 8.79 (95% CI 7.11–10.41) …

AdultMaleExposomemedicine.medical_specialtyAdolescentAircraftAir pollutionEnvironmental pollutionDiseasemedicine.disease_causeGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciencesMiceYoung AdultRisk FactorsEnvironmental healthAir PollutionMetals HeavyEpidemiologyMedicineAnimalsHumansChildNoncommunicable DiseasesAgedAged 80 and over0303 health sciencesbusiness.industryMortality rate030302 biochemistry & molecular biologyTraffic noiseStressorInfant NewbornInfantMiddle AgedExposomeCardiovascular DiseasesChild PreschoolFemalebusinessNoiseStress PsychologicalActa biochimica Polonica
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Chemical aging of atmospheric mineral dust during transatlantic transport

2016

Abstract. Transatlantic dust transport has many implications for the atmosphere, ocean and climate. We present a modeling study on the impact of the key processes (dust emissions flux, convection and dust aging parameterizations) that control the transatlantic dust transport. Typically, the Inter-Tropical Convergence Zone (ITCZ) acts as a barrier for the meridional dust transport. To characterize the dust outflow over the Atlantic Ocean, we address two regional phenomena: (i) dust interactions with the ITCZ (DIZ) and (ii) the adjacent dust transport over the Atlantic Ocean (DTA). In the DTA zone, the dust loading shows a steep and linear gradient westward over the Atlantic Ocean where parti…

010504 meteorology & atmospheric sciencesEnvironmental science010501 environmental sciencesMineral dustAtmospheric sciencescomplex mixtures01 natural sciencesrespiratory tract diseases0105 earth and related environmental sciences
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Physical Activity in Polluted Air—Net Benefit or Harm to Cardiovascular Health? A Comprehensive Review

2021

Both exposure to higher levels of polluted air and physical inactivity are crucial risk factors for the development and progression of major noncommunicable diseases and, in particular, of cardiovascular disease. In this context, the World Health Organization estimated 4.2 and 3.2 million global deaths per year in response to ambient air pollution and insufficient physical activity, respectively. While regular physical activity is well known to improve general health, it may also increase the uptake and deposit of air pollutants in the lungs/airways and circulation, due to increased breathing frequency and minute ventilation, thus increasing the risk of cardiovascular disease. Thus, determi…

medicine.medical_specialtyPhysiologyCardiovascular healthair pollutionClinical BiochemistryAir pollutionPhysical activityphysical activityContext (language use)ReviewRM1-950DiseaseHealth benefitsmedicine.disease_causeBiochemistrycardiovascular diseaseEnvironmental healthmedicineoxidative stressMolecular Biologyantioxidant defensebusiness.industryPublic healthCell BiologyHarminflammationTherapeutics. PharmacologybusinessAntioxidants
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Environmental risk factors and cardiovascular diseases: a comprehensive expert review.

2021

Abstract Non-communicable diseases (NCDs) are fatal for more than 38 million people each year and are thus the main contributors to the global burden of disease accounting for 70% of mortality. The majority of these deaths are caused by cardiovascular disease (CVD). The risk of NCDs is strongly associated with exposure to environmental stressors such as pollutants in the air, noise exposure, artificial light at night, and climate change, including heat extremes, desert storms, and wildfires. In addition to the traditional risk factors for CVD such as diabetes, arterial hypertension, smoking, hypercholesterolaemia, and genetic predisposition, there is a growing body of evidence showing that …

medicine.medical_specialtyArtificial lightPhysiologybusiness.industryStressorDiseasemedicine.diseaseCardiovascular SystemEnvironmental riskCardiovascular DiseasesRisk FactorsPhysiology (medical)Environmental healthUrbanizationDiabetes mellitusEpidemiologyGenetic predispositionDiabetes MellitusMedicineHumansCardiology and Cardiovascular MedicinebusinessNoncommunicable DiseasesCardiovascular research
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Reduction of environmental pollutants for prevention of cardiovascular disease: it’s time to act

2020

Abstract

Pollutantbusiness.industryAir pollutionEpidemiology and PreventionDisease030204 cardiovascular system & hematologymedicine.disease_cause03 medical and health sciences0302 clinical medicineViewpointEnvironmental healthmedicineAcademicSubjects/MED00200030212 general & internal medicineCardiology and Cardiovascular MedicinebusinessEuropean Heart Journal
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Enhanced sulfur in the upper troposphere and lower stratosphere in spring 2020

2022

Sulfur compounds in the upper troposphere and lower stratosphere (UTLS) impact the atmosphere radiation budget, either directly as particles or indirectly as precursor gas for new particle formation. In situ measurements in the UTLS are rare but are important to better understand the impact of the sulfur budget on climate. The BLUESKY mission in May and June 2020 explored an unprecedented situation. (1) The UTLS experienced extraordinary dry conditions in spring 2020 over Europe, in comparison to previous years, and (2) the first lockdown of the COVID-19 pandemic caused major emission reductions from industry, ground, and airborne transportation. With the two research aircraft HALO and Falc…

624 Civil engineeringEarth sciences540 Chemistry and allied sciences550 Earth sciences540 Chemie624 Ingenieurbau und Umwelttechnikddc:550660 Technische Chemie550 Geowissenschaften660 Chemical engineering
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