0000000001038436

AUTHOR

M. Kundel

showing 5 related works from this author

Application of time-of-flight aerosol mass spectrometry for the online measurement of gaseous molecular iodine.

2012

Here we present a new application of a time-of-flight aerosol mass spectrometer (TOF-AMS) for the measurement of atmospheric trace gases in real-time. Usually, TOF-AMS instruments are not sensitive to gas-phase species due to the aerodynamic particle focusing inlet system which reduces the gas phase species by a factor of about 10(7) relative to the particle phase. This efficient removal of the gas phase and the resulting high relative enrichment of particles is one reason for the very high sensitivity of TOF-AMS instruments for particle phase compounds (detection limits in the sub-μg/m(3)-range for online measurements with 1 min integration time), which allows application of the instrument…

Aerosolsalpha-CyclodextrinsPhysics::Instrumentation and DetectorsChemistryAnalytical chemistryIodidesMass spectrometryPhaeophytaGas Chromatography-Mass SpectrometryAnalytical ChemistryTrace gasAerosolTime of flightOzonePhase (matter)ParticleAerosol mass spectrometryGasesGas chromatography–mass spectrometryAnalytical chemistry
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The seaweeds <i>Fucus vesiculosus</i> and <i>Ascophyllum nodosum</i> are significant contribu…

2013

Abstract. Based on the results of a pilot study in 2007, which found high mixing ratios of molecular iodine (I2) above the intertidal macroalgae (seaweed) beds at Mweenish Bay (Ireland), we extended the study to nine different locations in the vicinity of Mace Head Atmospheric Research Station on the west coast of Ireland during a field campaign in 2009. The mean values of I2 mixing ratio found above the macroalgae beds at nine different locations ranged from 104 to 393 ppt, implying a high source strength of I2. Such mixing ratios are sufficient to result in photochemically driven coastal new-particle formation events. Mixing ratios above the Ascophyllum nodosum and Fucus vesiculosus beds …

i-2Atmospheric Science010504 meteorology & atmospheric sciencesFucus vesiculosusIntertidal zone010501 environmental scienceschemistry01 natural sciencesAtmosphereAlgaeMixing ratiomolecular-iodine14. Life underwater0105 earth and related environmental sciencesbiologyparticle formationlaminaria-digitataiobiology.organism_classificationLaminaria digitataquantificationmarine boundary-layerOceanographyin-situ13. Climate actionchamber experimentsEnvironmental scienceBayAscophyllumAtmospheric Chemistry and Physics
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<i>Fucus</i> and <i>Ascophyllum</i> seaweeds are significant contributors to coastal iodine e…

2012

Abstract. Based on the results of a pilot study in 2007, which found high mixing ratios of molecular iodine (I2) above the intertidal macroalgae (seaweed) beds at Mweenish Bay (Ireland), we extended the study to nine different locations in the vicinity of Mace Head Atmospheric Research Station on the west coast of Ireland during a field campaign in 2009. I2 mixing ratios from 104 to 393 ppt were found above the macroalgae beds, implying a high source strength of I2. Such mixing ratios are sufficient to result in photochemically-driven coastal new-particle formation events. Mixing ratios above the Ascophyllum nodosum and Fucus vesiculosus beds increased with exposure time – after 6 h exposur…

chemistrybiologyEnvironmental chemistryFucuschemistry.chemical_elementEnvironmental scienceIodinebiology.organism_classificationAscophyllum
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Emission of iodine-containing volatiles by selected microalgae species

2014

In this study we present the results of an emission study of different phytoplankton samples in aqueous media treated with elevated ozone levels. Halocarbon measurements show that the samples tested released bromoform and different iodocarbons, including iodomethane, iodochloromethane and diiodomethane. Iodide and iodate levels in the liquid phase were representative of concentrations of surface water in a natural environment. Measurement of volatile iodine (I2) emissions from two diatom samples (Mediopyxis helysia and Porosira glacialis) and the background sample (F/2 medium from filtered natural seawater) showed that the quantity of evolved I2 depends on the ozone concentration in the air…

Atmospheric ScienceOzoneInorganic chemistryIodidechemistry.chemical_elementcoastalIodinegas chromatography/mass spectrometrylcsh:Chemistrychemistry.chemical_compounddiatom culturesmolecular-iodineDiiodomethanenorth-seaIodateatlantic-oceanchemistry.chemical_classificationparticle formationfungiHalocarbonlcsh:QC1-999marine boundary-layerlcsh:QD1-999chemistrygerman bightEnvironmental chemistryphytoplanktonSeawaterBromoformlcsh:Physics
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The seaweeds Fucus vesiculosus and Ascophyllum nodosum are significant contributors to coastal iodine emissions

2013

Based on the results of a pilot study in 2007, which found high mixing ratios of molecular iodine (I2) above the intertidal macroalgae (seaweed) beds at Mweenish Bay (Ireland), we extended the study to nine different locations in the vicinity of Mace Head Atmospheric Research Station on the west coast of Ireland during a field campaign in 2009. The mean values of I2 mixing ratio found above the macroalgae beds at nine different locations ranged from 104 to 393 ppt, implying a high source strength of I2. Such mixing ratios are sufficient to result in photochemically driven coastal new-particle formation events. Mixing ratios above the Ascophyllum nodosum and Fucus vesiculosus beds increased …

lcsh:ChemistryMarine algaeMacroalgaelcsh:QD1-999AtmosphereAscophyllum nodosumFucus vesiculosusSeaweedlcsh:Physicslcsh:QC1-999IodineAtmospheric Chemistry and Physics
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