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Light changes the atmospheric reactivity of soot
by
Monge, Maria Eugenia
, Mazri, Linda
, Ammann, Markus
, D'Anna, Barbara
, Donaldson, D.J
, George, Christian
, Giroir-Fendler, Anne
in
Aerosols
/ Air Pollutants - chemistry
/ Air Pollution
/ Atmosphere
/ Atmospheric chemistry
/ ATMOSPHERIC CHEMISTRY SPECIAL FEATURE
/ Atmospherics
/ Catalysis
/ chemical composition
/ Chemical Sciences
/ Chemistry
/ Cities
/ Combustion
/ Environment and Society
/ Environmental Monitoring - methods
/ Environmental Sciences
/ Flames
/ Gases
/ Hexanes
/ Irradiation
/ Kinetics
/ Light
/ Models, Chemical
/ Nitrogen dioxide
/ Nitrogen Dioxide - chemistry
/ Nitrous Acid - chemistry
/ Particle Size
/ Particulate Matter
/ Photochemistry
/ Physical Sciences
/ Radiation
/ Reactivity
/ Solar radiation
/ Soot
/ Time Factors
/ Troposphere
/ Urban areas
2010
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Light changes the atmospheric reactivity of soot
by
Monge, Maria Eugenia
, Mazri, Linda
, Ammann, Markus
, D'Anna, Barbara
, Donaldson, D.J
, George, Christian
, Giroir-Fendler, Anne
in
Aerosols
/ Air Pollutants - chemistry
/ Air Pollution
/ Atmosphere
/ Atmospheric chemistry
/ ATMOSPHERIC CHEMISTRY SPECIAL FEATURE
/ Atmospherics
/ Catalysis
/ chemical composition
/ Chemical Sciences
/ Chemistry
/ Cities
/ Combustion
/ Environment and Society
/ Environmental Monitoring - methods
/ Environmental Sciences
/ Flames
/ Gases
/ Hexanes
/ Irradiation
/ Kinetics
/ Light
/ Models, Chemical
/ Nitrogen dioxide
/ Nitrogen Dioxide - chemistry
/ Nitrous Acid - chemistry
/ Particle Size
/ Particulate Matter
/ Photochemistry
/ Physical Sciences
/ Radiation
/ Reactivity
/ Solar radiation
/ Soot
/ Time Factors
/ Troposphere
/ Urban areas
2010
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Light changes the atmospheric reactivity of soot
by
Monge, Maria Eugenia
, Mazri, Linda
, Ammann, Markus
, D'Anna, Barbara
, Donaldson, D.J
, George, Christian
, Giroir-Fendler, Anne
in
Aerosols
/ Air Pollutants - chemistry
/ Air Pollution
/ Atmosphere
/ Atmospheric chemistry
/ ATMOSPHERIC CHEMISTRY SPECIAL FEATURE
/ Atmospherics
/ Catalysis
/ chemical composition
/ Chemical Sciences
/ Chemistry
/ Cities
/ Combustion
/ Environment and Society
/ Environmental Monitoring - methods
/ Environmental Sciences
/ Flames
/ Gases
/ Hexanes
/ Irradiation
/ Kinetics
/ Light
/ Models, Chemical
/ Nitrogen dioxide
/ Nitrogen Dioxide - chemistry
/ Nitrous Acid - chemistry
/ Particle Size
/ Particulate Matter
/ Photochemistry
/ Physical Sciences
/ Radiation
/ Reactivity
/ Solar radiation
/ Soot
/ Time Factors
/ Troposphere
/ Urban areas
2010
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Journal Article
Light changes the atmospheric reactivity of soot
2010
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Overview
Soot particles produced by incomplete combustion processes are one of the major components of urban air pollution. Chemistry at their surfaces lead to the heterogeneous conversion of several key trace gases; for example NO₂ interacts with soot and is converted into HONO, which rapidly photodissociates to form OH in the troposphere. In the dark, soot surfaces are rapidly deactivated under atmospheric conditions, leading to the current understanding that soot chemistry affects tropospheric chemical composition only in a minor way. We demonstrate here that the conversion of NO₂ to HONO on soot particles is drastically enhanced in the presence of artificial solar radiation, and leads to persistent reactivity over long periods. Soot photochemistry may therefore be a key player in urban air pollution.
Publisher
National Academy of Sciences,National Acad Sciences
Subject
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