Oxidation of Atmospheric Organic Carbon

Oxidation of Atmospheric Organic Carbon
Author: James Freeman Hunter
Publisher:
Total Pages: 110
Release: 2015
Genre:
ISBN:


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.Organic molecules have many important roles in the atmosphere, acting as climate and biogeochemical forcers, and in some cases as toxic pollutants. The lifecycle of atmospheric organic carbon is extremely complex, with reaction in multiple phases (gas, particle, aqueous) and at multiple timescales. The details of the lifecycle chemistry (especially the amount and properties of particles) have important implications for air quality, climate, and human and ecosystem health, and need to be understood better. Much of the chemical complexity and uncertainty lies in the reactions and properties of low-volatility oxidized intermediates that result from the oxidation of volatile organic precursors, and which have received comparatively little study thus far. This thesis describes three projects that link together the entire chain of oxidation (volatile to intermediate to condensed) in an effort to improve our understanding of carbon lifecycle and aerosol production. Laboratory studies of atmospherically relevant aerosol precursors show that the slow oxidation of intermediates is critical to explaining the yield and properties of aerosol under highly oxidized ("aged") conditions, and that the production of organic particles is significantly increased when intermediates are fully oxidized. This aging process is a strong function of molecular structure, and depends on aerosol concentration through the phenomenon of condensational trapping. Further laboratory studies of a series of (poly)cyclic 10 carbon alkanes show that structural effects are largely explained through fragmentation reactions, and that more generally, carbon-carbon bond scission is a ubiquitous and important reaction channel for oxidized intermediates. Finally, direct measurement of oxidized intermediate compounds in field studies shows that these compounds are abundant and important in the ambient atmosphere, with concentrations and properties in between those of volatile and particulate organic compounds. Together with other co-located measurements and complementary techniques, this enables estimates of emission, oxidation, and deposition to be constructed. The results from this thesis can be used to inform more sophisticated models of atmospheric organic carbon cycling, and to improve prediction of organic particulate matter concentrations.


Oxidation of Atmospheric Organic Carbon
Language: en
Pages: 110
Authors: James Freeman Hunter
Categories:
Type: BOOK - Published: 2015 - Publisher:

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.Organic molecules have many important roles in the atmosphere, acting as climate and biogeochemical forcers, and in some cases as toxic pollutants. The lifecyc
Carbon Oxidation State as a Metric for Describing the Chemistry of Atmospheric Organic Aerosol
Language: en
Pages:
Authors:
Categories:
Type: BOOK - Published: 2010 - Publisher:

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A detailed understanding of the sources, transformations, and fates of organic species in the environment is crucial because of the central roles that organics
Volatile Organic Compounds in the Atmosphere
Language: en
Pages: 512
Authors: Ralf Koppmann
Categories: Science
Type: BOOK - Published: 2008-04-15 - Publisher: John Wiley & Sons

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Every day, large quantities of volatile organic compounds (VOCs) are emitted into the atmosphere from both anthropogenic and natural sources. The formation of g
Advances In Atmospheric Chemistry - Volume 2: Organic Oxidation And Multiphase Chemistry
Language: en
Pages: 616
Authors: John R Barker
Categories: Science
Type: BOOK - Published: 2019-01-07 - Publisher: World Scientific

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This series presents authoritative invited summaries of research on atmospheric chemistry in a changing world. These range from comprehensive reviews of major s
Organic geochemistry of natural waters
Language: en
Pages: 524
Authors: E.M. Thurman
Categories: Science
Type: BOOK - Published: 1985-04-30 - Publisher: Springer Science & Business Media

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This book is written as a reference on organic substances in natural waters and as a supplementary text for graduate students in water chemistry. The chapters a