The uptake of SO2 on Saharan dust: a flow tube study
Item
Title (Dublin Core)
The uptake of SO2 on Saharan dust: a flow tube study
Description (Dublin Core)
The uptake of SO<sub>2</sub> onto Saharan mineral dust from the Cape Verde Islands was investigated using a coated wall flow tube coupled to a mass spectrometer. The rate of loss of SO<sub>2</sub> to the dust coating was measured and uptake coefficients were determined using the measured BET surface area of the sample. The uptake of SO<sub>2</sub>, with an initial concentration between (2-40)x10<sup>10</sup>molecule cm<sup>-3</sup> (0.62-12 µTorr), was found to be strongly time dependent over the first few hundred seconds of an experiment, with an initial uptake γ<sub>0,BET</sub> of (6.6±0.8)x10<sup>-5</sup> (298 K), declining at longer times. The amount of SO<sub>2</sub> adsorbed on the dust samples was measured over a range of SO<sub>2</sub> concentrations and mineral dust loadings. The uptake of SO<sub>2</sub> was found to be up to 98% irreversible over the timescale of these investigations. Experiments were also performed at 258 K, at a relative humidity of 27% and at 298 K in the presence of ozone. The initial uptake and the amount of SO<sub>2</sub> taken up per unit area of BET dust surface was the same within error, irrespective of the conditions used; however the presence of ozone reduced the amount of SO<sub>2</sub> released back into the gas-phase per unit area once exposure of the surface ended. Multiple uptakes to the same surface revealed a loss of surface reactivity, which did not return if the samples were exposed to gas-phase water, or left under vacuum overnight. A mechanism which accounts for the observed uptake behaviour is proposed and numerically modelled, allowing quantitative estimates of the rate and amount of SO<sub>2</sub> removal in the atmosphere to be estimated. Removal of SO<sub>2</sub> by mineral dust is predicted to be significant at high dust loadings.
Creator (Dublin Core)
Adams, J. W.
Rodriguez, D.
Cox, R. A.
Date (Dublin Core)
2018-06-28
Type (Dublin Core)
Text
Format (Dublin Core)
application/pdf
Identifier (Dublin Core)
10.5194/acp-5-2679-2005
https://acp.copernicus.org/articles/5/2679/2005/
Source (Dublin Core)
eISSN: 1680-7324
Language (Dublin Core)
eng



