Search results for "Atmospheric chemistry"

showing 10 items of 93 documents

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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Quantum Dynamics of the 17O + 32O2 Collision Process

2016

We report full quantum integral and differential cross sections and rate constants for the 17O + 32O2 reactive process. This constitutes the first quantum scattering study of the 17O16O16O system. We emphasize the comparison with the 18O + 32O2 collision in close connection to the mass-independent fractionation (hereafter referred to as MIF) puzzle for ozone in atmospheric chemistry. We find similar general trends in the cross sections and rate constants for both rare isotopes, but we note some singular behaviors peculiar to the use of 17O isotope, particularly at the lowest collision energies.

010304 chemical physicsIsotopeChemistryQuantum dynamics010402 general chemistryCollision01 natural sciences0104 chemical sciencesConnection (mathematics)Reaction rate constantAtmospheric chemistry0103 physical sciencesScattering theoryPhysical and Theoretical ChemistryAtomic physicsQuantumThe Journal of Physical Chemistry A
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Ocean acidification at a coastal CO2 vent induces expression of stress-related transcripts and transposable elements in the sea anemone Anemonia viri…

2019

Published version, available at: https://doi.org/10.1371/journal.pone.0210358 Ocean acidification threatens to disrupt interactions between organisms throughout marine ecosystems. The diversity of reef-building organisms decreases as seawater CO2 increases along natural gradients, yet soft-bodied animals, such as sea anemones, are often resilient. We sequenced the polyA-enriched transcriptome of adult sea anemone Anemonia viridis and its dinoflagellate symbiont sampled along a natural CO2 gradient in Italy to assess stress levels in these organisms. We found that about 1.4% of the anemone transcripts, but only ~0.5% of the Symbiodinium sp. transcripts were differentially expressed. Processe…

0106 biological sciences0301 basic medicineAtmospheric ScienceMolecular biologyMarine and Aquatic SciencesGene ExpressionRetrotransposonSea anemone01 natural sciencesAnemoniaSequencing techniquesMobile Genetic ElementsMultidisciplinarybiologyQREukaryotaOcean acidificationAnemoneRNA sequencingGenomicsChemistryRetrotransposonsPhysical SciencesMedicineTranscriptome AnalysisResearch ArticleScienceZoology010603 evolutionary biology03 medical and health sciencesGreenhouse GasesCnidariaGenetic ElementsSea WaterGeneticsVDP::Matematikk og Naturvitenskap: 400::Basale biofag: 470Environmental ChemistryAnimalsMarine ecosystemBiology and life sciencesEcology and Environmental SciencesDinoflagellateChemical CompoundsOrganismsTransposable ElementsCorrectionAquatic EnvironmentsComputational BiologyCarbon Dioxidebiology.organism_classificationGenome AnalysisMarine EnvironmentsInvertebratesVDP::Mathematics and natural science: 400::Basic biosciences: 470Research and analysis methods:Genetikk og genomikk: 474 VDP::Marinbiologi:497 VDP::Økologi:488 [VDP]030104 developmental biologySea AnemonesMolecular biology techniquesAtmospheric ChemistryEarth SciencesSeawater
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Microbiology and atmospheric processes: research challenges concerning the impact of airborne micro-organisms on the atmosphere and climate

2011

 Cet article a fait l'objet d'une discussion dans "Morris, C. E., Sands, D. C., Bardin, M., Jaenicke, R., Vogel, B., Leyronas, C., Ariya, P. A., and Psenner, R.: Microbiology and atmospheric processes: an upcoming era of research on bio-meteorology, Biogeosciences Discuss., 5, 191-212, doi:10.5194/bgd-5-191-2008, 2008."; International audience; For the past 200 years, the field of aerobiology has explored the abundance, diversity, survival and transport of micro-organisms in the atmosphere. Micro-organisms have been explored as passive and severely stressed riders of atmospheric transport systems. Recently, an interest in the active roles of these micro-organisms has emerged along with prop…

AIRBORNE DISSEMINATION010504 meteorology & atmospheric sciencesMeteorologyAEROBIOLOGY;BIOLOGICAL AEROSOLS;BIO-METEOROLOGY;TRANSPORT;AIRBORNE DISSEMINATION;BIOLOGICAL PROPERTIES;ATMOSPHERIC PROCESSES;BIOSPHERE;CLIMATE CHANGEEarth scienceBiomeCLIMATE CHANGEBiological particleslcsh:Lifemodélisation spatialeBIOSPHERE010501 environmental sciencesBiologyAtmosphere (architecture and spatial design)01 natural sciencesBIO-METEOROLOGYATMOSPHERIC PROCESSESBIOLOGICAL AEROSOLSlcsh:QH540-549.5AEROBIOLOGYddc:550microbiologieEcology Evolution Behavior and Systematics0105 earth and related environmental sciencesEarth-Surface Processeschangement climatiquemicroorganismeBIOLOGICAL PROPERTIESclimatlcsh:QE1-996.5microorganisme aerienRadiative forcingTRANSPORT[SDV.BBM.BC]Life Sciences [q-bio]/Biochemistry Molecular Biology/Biomolecules [q-bio.BM]lcsh:GeologyEarth sciencesatmosphèrelcsh:QH501-53113. Climate actionAtmospheric chemistrylcsh:EcologyMetabolic activityBiogeosciences
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A theoreticalab initiostudy on the H2NO + O3reaction

2003

The deviation of the NH2 pseudo-first-order decay Arrhenius plots of the NH2 + O3 reaction at high ozone pressures measured by experimentalists, has been attributed to the regeneration of NH2 radicals due to the subsequent reactions of the products of this reaction with ozone. Although these products have not yet been characterized experimentally, the radical H2NO has been postulated, because it can regenerate NH2 radicals through the reactions: H2NO + O3 NH2 + O2 and H2NO + O3 HNO + OH + O2. With the purpose of providing a reasonable explanation from a theoretical point of view to the kinetic observed behaviour of the NH2 + O3 system, we have carried ab initio electronic structure calculat…

Arrhenius equationReaction mechanismChemistryRadicalAb initioGeneral ChemistryElectronic structureKinetic energyComputational Mathematicssymbols.namesakeAb initio quantum chemistry methodsComputational chemistryAtmospheric chemistrysymbolsJournal of Computational Chemistry
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Implementation of the chemistry module MECCA (v2.5) in the modal aerosol version of the Community Atmosphere Model component (v3.6.33) of the Communi…

2013

Abstract. A coupled atmospheric chemistry and climate system model was developed using the modal aerosol version of the National Center for Atmospheric Research Community Atmosphere Model (modal-CAM; v3.6.33) and the Max Planck Institute for Chemistry's Module Efficiently Calculating the Chemistry of the Atmosphere (MECCA; v2.5) to provide enhanced resolution of multiphase processes, particularly those involving inorganic halogens, and associated impacts on atmospheric composition and climate. Three Rosenbrock solvers (Ros-2, Ros-3, RODAS-3) were tested in conjunction with the basic load-balancing options available to modal-CAM (1) to establish an optimal configuration of the implicitly-sol…

Atmosphere (unit)MeteorologyChemistrybusiness.industrylcsh:QE1-996.5Atmospheric modelAtmospheric researchAerosollcsh:GeologyModalCommunity earth system modelAtmospheric chemistryComponent (UML)Aerospace engineeringbusinessGeoscientific Model Development
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Hidden information within series of measurements ? four examples from atmospheric science

1985

Whether in classical networks such as meteorological networks of in more recent ones of atmospheric chemistry, a wealth of data is at hand. These data have been evaluated in a manner depending on the purpose of the network. However, much more information is hidden in these time series and waits for discovery. Only the imagination of scientists is needed. Four examples are given which lead to new information about the atmospheric aerosol and the behaviour of the atmosphere. These examples are: “Atmospheric turbidity from sunshine recordings”, “Meteorological drainage area from the variance of observations”, “Location of point sources from air mass trajectories”, and “Total vertical ozone fro…

AtmosphereAtmospheric ScienceData processingAir mass (astronomy)MeteorologySeries (mathematics)Atmospheric chemistryVariance (land use)Environmental ChemistryEnvironmental scienceAtmospheric sciencesAerosolJournal of Atmospheric Chemistry
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Simulation of organics in the atmosphere: evaluation of EMACv2.54 with the Mainz Organic Mechanism (MOM) coupled to the ORACLE (v1.0) submodel

2021

Abstract. An updated and expanded representation of organics in the chemistry general circulation model EMAC (ECHAM5/MESSy for Atmospheric Chemistry) has been evaluated. First, the comprehensive Mainz Organic Mechanism (MOM) in the submodel MECCA (Module Efficiently Calculating the Chemistry of the Atmosphere) was activated with explicit degradation of organic species up to five carbon atoms and a simplified mechanism for larger molecules. Second, the ORACLE submodel (version 1.0) considers now condensation on aerosols for all organics in the mechanism. Parameterizations for aerosol yields are used only for the lumped species that are not included in the explicit mechanism. The simultaneous…

AtmospherechemistryOrganic mechanismAtmospheric chemistryCondensationMoleculeThermodynamicschemistry.chemical_elementCarbonOracleddc:910Aerosol
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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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Biogenic and biomass burning organic aerosol in a boreal forest at Hyytiälä, Finland, during HUMPPA-COPEC 2010

2013

Abstract. Submicron aerosol particles were collected during July and August 2010 in Hyytiälä, Finland, to determine the composition and sources of aerosol at that boreal forest site. Submicron particles were collected on Teflon filters and analyzed by Fourier transform infrared (FTIR) spectroscopy for organic functional groups (OFGs). Positive matrix factorization (PMF) was applied to aerosol mass spectrometry (AMS) measurements and FTIR spectra to identify summertime sources of submicron aerosol mass at the sampling site. The two largest sources of organic mass (OM) in particles identified at Hyytiälä were (1) biogenic aerosol from surrounding local forest and (2) biomass burning aerosol, …

Atmospheric Science010504 meteorology & atmospheric sciencesChemistryTaiga15. Life on land010501 environmental sciencesMass spectrometry01 natural scienceslcsh:QC1-999Aerosollcsh:Chemistrylcsh:QD1-99913. Climate actionAtmospheric chemistryEnvironmental chemistryMass spectrumAerosol mass spectrometryGas chromatography–mass spectrometryBiomass burninglcsh:Physics0105 earth and related environmental sciences
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