Atmospheric chemistry: Difference between revisions
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Notes: the [[concentration]] of CO<sub>2</sub> and CH<sub>4</sub> vary by season and location. ppmv represents parts per million by volume.<br> | Notes: the [[concentration]] of CO<sub>2</sub> and CH<sub>4</sub> vary by season and location. ppmv represents parts per million by volume.<br> | ||
The mean molecular mass of air is 28.97 g/mole. | The mean molecular mass of air is 28.97 g/mole. | ||
== References == | |||
* Wayne, Richard P (2000). Chemistry of Atmospheres (3rd Ed.). Oxford University Press. ISBN 0-19-850375-X | |||
* Seinfeld, John H.; Pandis, Spyros N (1998). Atmospheric Chemistry and Physics - From Air Pollution to Climate Change. John Wiley and Sons, Inc. ISBN 0-471-17816-0 | |||
== External links == | |||
http://www.igac.noaa.gov/ IGAC The International Global Atmospheric Chemistry Project | |||
{{chem-stub}}{{climate-stub}} | |||
[[Category:Environmental chemistry]] | |||
[[Category:Atmosphere]] | |||
[[ja:大気化学]] | |||
[[zh:大气化学]] | |||
Revision as of 15:38, 19 August 2005
Atmospheric chemistry is a branch of atmospheric science in which the chemistry of the Earth's atmosphere and that of other planets is studied. It is a multidisciplinary field of research and draws on chemistry, physics, meteorology, computer modeling, oceanography, geology and volcanology and other disciplines. Research is increasingly connected with other areas of study such as climatology.
The composition and chemistry of the atmosphere is of importance for several reasons, but primarily because of the interactions between the atmosphere and living organisms. The composition of the Earth's atmosphere has been changed by human activity and some of these changes are harmful to human health, crops and ecosystems. Examples of problems which have been addressed by atmospheric chemistry include acid rain, photochemical smog and global warming. Atmospheric chemistry seeks to understand the causes of these problems, and by obtaining a theoretical understanding of them, allow possible solutions to be tested and the effects of changes in government policy evaluated.
Atmospheric Composition
| Average composition of dry atmosphere, by volume | ||
|---|---|---|
| Gas | per NASA | |
| Nitrogen | 78.084% | |
| Oxygen | 20.946% | |
| Argon | 0.934% | |
| Minor constituents in ppmv. | ||
| Carbon Dioxide | 350 | |
| Neon | 18.18 | |
| Helium | 5.24 | |
| Methane | 1.7 | |
| Krypton | 1.14 | |
| Hydrogen | 0.55 | |
| Water vapor | Highly variable; typically makes up about 1% | |
Notes: the concentration of CO2 and CH4 vary by season and location. ppmv represents parts per million by volume.
The mean molecular mass of air is 28.97 g/mole.
References
- Wayne, Richard P (2000). Chemistry of Atmospheres (3rd Ed.). Oxford University Press. ISBN 0-19-850375-X
- Seinfeld, John H.; Pandis, Spyros N (1998). Atmospheric Chemistry and Physics - From Air Pollution to Climate Change. John Wiley and Sons, Inc. ISBN 0-471-17816-0
External links
http://www.igac.noaa.gov/ IGAC The International Global Atmospheric Chemistry Project