Photodegradation of (CH3CH2)2S and CH3CH2SCH3 initiated by OH radicals at atmospheric pressure. Product yields and mechanism in NOx free air
Author:
Publisher
Elsevier BV
Subject
Atmospheric Science,General Environmental Science
Reference43 articles.
1. Atmospheric aerosols: biogeochemical sources and role in atmospheric chemistry;Andreae;Science,1997
2. FT-IR product study on the photo- oxidation of dimethyl sulphide in the presence of NOx: temperature dependence;Arsene;Atmospheric Environment,2001
3. FT-IR product study of the photooxidation of dimethyl sulfide: temperature and O2 partial pressure dependence;Arsene;Physical Chemistry and Chemical Physics,1999
4. Evaluated kinetic and photochemical data for atmospheric chemistry: volume II gas phase reactions of organic species;Atkinson;Atmospheric Chemistry and Physics,2006
5. Gas chromatographic identification of sulfur gases in soil atmospheres;Banwart;Soil Biology and Biochemistry,1974
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