0000000000146759

AUTHOR

Klaus Klingmüller

showing 5 related works from this author

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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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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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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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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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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