Importance of the surface reaction OH + Cl− on sea salt aerosol for the chemistry of the marine boundary layer – a model study
Item
Title (Dublin Core)
Importance of the surface reaction OH + Cl− on sea salt aerosol for the chemistry of the marine boundary layer – a model study
Description (Dublin Core)
The reaction of the hydroxyl radical with chloride on the surface of sea salt aerosol producing gas phase Cl<sub>2</sub> and particulate OH<sup>−</sup> and its implications for the chemistry of the marine boundary layer under coastal, remote, and very remote conditions have been investigated with a numerical model. This reaction had been suggested by Laskin et al. (2003) to play a major role in the sulfur cycle in the marine boundary layer by increasing the sulfate production in sea salt by O<sub>3</sub> oxidation due to the additional production of alkalinity in the particle. Based on literature data a new "best estimate" for the rate coefficient of the reaction was deduced and applied, showing that the additional initial sulfate production by this reaction is less than 1%, therefore having only a minor impact on sulfate production. Even though the gas phase concentration of Cl<sub>2</sub> increased strongly in the model, the concentration of Cl radicals increased by less than 5% for the "best guess" case. Additional feedbacks between the cycles of chlorine and sulfur in the marine boundary layer are discussed as well as a two-stage acidification of large fresh sea salt aerosol.
Creator (Dublin Core)
Glasow, R.
Date (Dublin Core)
2018-06-28
Type (Dublin Core)
Text
Format (Dublin Core)
application/pdf
Identifier (Dublin Core)
10.5194/acp-6-3571-2006
https://acp.copernicus.org/articles/6/3571/2006/
Source (Dublin Core)
eISSN: 1680-7324
Language (Dublin Core)
eng



