Reactions at interfaces as a source of sulfate formation in sea-salt particles.
نویسندگان
چکیده
Understanding the formation of sulfate particles in the troposphere is critical because of their health effects and their direct and indirect effects on radiative forcing, and hence on climate. Laboratory studies of the chemical and physical changes in sodium chloride, the major component of sea-salt particles, show that sodium hydroxide is generated upon reaction of deliquesced sodium chloride particles with gas-phase hydroxide. The increase in alkalinity will lead to an increase in the uptake and oxidation of sulfur dioxide to sulfate in sea-salt particles. This chemistry is missing from current models but is consistent with a number of previously unexplained field study observations.
منابع مشابه
Sulfate Formation in Sea-Salt Aerosols: Constraints from Oxygen Isotopes
[1] We use observations of the mass-independent oxygen isotopic composition (DO) of sulfate in the marine boundary layer (MBL) to quantify the sulfate source from aqueous SO2 (S(IV)) oxidation by O3 in alkaline sea-salt aerosols. Oxidation by O3 imparts a large DO signature to the resulting sulfate (8.8%) relative to oxidation by H2O2 (0.9%) or by OH or O2 (0%). Ship data from two Indian Ocean ...
متن کاملComment on "Reactions at interfaces as a source of sulfate formation in sea-salt particles" (II).
Interfaces As a Source of Sulfate Formation in Sea-Salt Particles” (II) In the laboratory, Laskin et al. (1) studied the role of the surface reaction OH Cl 3 OH Cl for influencing the pH and oxidation of S(IV) in the marine boundary layer. They concluded that it increases the sulfate production rate in tropospheric sea-salt particles. However, in their extrapolation to atmospheric conditions th...
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عنوان ژورنال:
- Science
دوره 301 5631 شماره
صفحات -
تاریخ انتشار 2003