Search Results - "Rutter, A.P."
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Oxidation of gaseous elemental mercury in the presence of secondary organic aerosols
Published in Atmospheric environment (1994) (01-11-2012)“…Gaseous elemental mercury (GEM; Hg0(g)) was oxidized by ozone and secondary hydroxyl radicals generated by the chemistry associated with the formation of…”
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The reduction of HNO3 by volatile organic compounds emitted by motor vehicles
Published in Atmospheric environment (1994) (01-04-2014)“…Nitric acid (HNO3) was reduced in a flow tube by volatile organic carbon compounds (VOCs) generated from engine oil vapor. The primary reaction product was…”
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Speciation of Mercury (Ⅱ) and Methylmercury in Cloud and Fog Water
Published in Aerosol and Air Quality Research (01-04-2011)“…The fate of oxidized mercury (Hg) in clouds and fogs is affected by the complexation of oxidized Hg(II) with other chemical species present in cloud and fog…”
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Airmass aging metrics derived from particle and other measurements near Fort Worth
Published in Atmospheric environment (1994) (01-02-2016)“…The composition, concentration, and size of submicron particulate matter (PM1) were measured at five-minute resolution by an Aerodyne high-resolution…”
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Impact of environmental variables on the reduction of nitric acid by proxies for volatile organic compounds emitted by motor vehicles
Published in Atmospheric pollution research (01-03-2016)“…Recent work has identified nitric acid (HNO3) as a potential precursor of nitrous acid (HONO), which is an important source of oxidants that regulate ozone and…”
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Atmospheric mercury speciation in Yellowstone National Park
Published in The Science of the total environment (15-08-2006)“…Atmospheric concentrations of elemental mercury (Hg 0), reactive gaseous Hg (RGM), and particulate Hg (pHg) concentrations were measured in Yellowstone…”
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Photodecomposition of Methylmercury in Atmospheric Waters
Published in Aerosol and Air Quality Research (01-06-2011)“…Experiments were conducted to empirically examine net changes in methylmercury concentration of atmospheric waters as function of irradiance. Methods were…”
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