0000000000977202

AUTHOR

R. J. Huang

showing 2 related works from this author

<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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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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