Nighttime radical observations and chemistry

Brown, SS; Stutz, J

HERO ID

1508500

Reference Type

Journal Article

Year

2012

Language

English

PMID

22907130

HERO ID 1508500
In Press No
Year 2012
Title Nighttime radical observations and chemistry
Authors Brown, SS; Stutz, J
Journal Chemical Society Reviews
Volume 41
Issue 19
Page Numbers 6405-6447
Abstract The nitrate radical, NO(3), is photochemically unstable but is one of the most chemically important species in the nocturnal atmosphere. It is accompanied by the presence of dinitrogen pentoxide, N(2)O(5), with which it is in rapid thermal equilibrium at lower tropospheric temperatures. These two nitrogen oxides participate in numerous atmospheric chemical systems. NO(3) reactions with VOCs and organic sulphur species are important, or in some cases even dominant, oxidation pathways, impacting the budgets of these species and their degradation products. These oxidative reactions, together with the ozonolysis of alkenes, are also responsible for the nighttime production and cycling of OH and peroxy (HO(2) + RO(2)) radicals. In addition, reactions of NO(3) with biogenic hydrocarbons are particularly efficient and are responsible for the production of organic nitrates and secondary organic aerosol. Heterogeneous chemistry of N(2)O(5) is one of the major processes responsible for the atmospheric removal of nitrogen oxides as well as the cycling of halogen species though the production of nitryl chloride, ClNO(2). The chemistry of NO(3) and N(2)O(5) is also important to the regulation of both tropospheric and stratospheric ozone. Here we review the essential features of this atmospheric chemistry, along with field observations of NO(3), N(2)O(5), nighttime peroxy and OH radicals, and related compounds. This review builds on existing reviews of this chemistry, and encompasses field, laboratory and modelling work spanning more than three decades.
Doi 10.1039/c2cs35181a
Pmid 22907130
Wosid WOS:000308559100008
Is Certified Translation No
Dupe Override No
Comments Source: Web of Science WOS:000308559100008
Is Public Yes
Language Text English