header-photos-1.jpg

Bibliography

Marine emissions of methanethiol increase aerosol cooling in the Southern Ocean

Wohl, C.; Villamayor, J.; Galí, M.; Mahajan, A. S.; Fernández, R. P.; Cuevas, C. A.; Bossolasco, A.; Li, Q.; Kettle, A. J.; Williams, T.; Sarda-Esteve, R.; Gros, V.; Simó, R.; Saiz-Lopez, A.
2024
Science Advances
10
48
eadq2465
November
Ocean-emitted dimethyl sulfide (DMS) is a major source of climate-cooling aerosols. However, most of the marine biogenic sulfur cycling is not routed to DMS but to methanethiol (MeSH), another volatile whose reactivity has hitherto hampered measurements. Therefore, the global emissions and climate impact of MeSH remain unexplored. We compiled a database of seawater MeSH concentrations, identified their statistical predictors, and produced monthly fields of global marine MeSH emissions adding to DMS emissions. Implemented into a global chemistry-climate model, MeSH emissions increase the sulfate aerosol burden by 30 to 70% over the Southern Ocean and enhance the aerosol cooling effect while depleting atmospheric oxidants and increasing DMS lifetime and transport. Accounting for MeSH emissions reduces the radiative bias of current climate models in this climatically relevant region. Methanethiol is a significant contributor to global ocean sulfur emissions and to sulfate aerosol cooling over the Southern Ocean.
[ Back ]