Dimethyl sulfide (DMS), a gas produced by phytoplankton, is the largest source of atmospheric sulfur over marine areas. DMS undergoes oxidation in the atmosphere to form a range of oxidation products, out of which sulfuric acid (SA) is well known for participating in the formation and growth of atmospheric aerosol particles, and the same is also presumed for methanesulfonic acid (MSA). Recently, a new oxidation product of DMS, hydroperoxymethyl thioformate (HPMTF), was discovered and later also measured in the atmosphere. Little is still known about the fate of this compound and its potential to partition into the particle phase. In this study, we present a full year (2020) of concurrent gas- and particle-phase observations of HPMTF, MSA, S...
Dimethyl sulfide (DMS) is the dominant biogenic sulfur compound in the ambient marine atmosphere. Lo...
Dimethyl sulfide (DMS) is produced by plankton in oceans and constitutes the largest natural emissio...
Abstract One year of aerosol particle observations from Alert, Nunavut shows that new particle forma...
6 pags., 5 figs.Dimethyl sulfide (DMS), emitted from the oceans, is the most abundant biological sou...
The connection between marine biogenic dimethyl sulfide (DMS) and the formation of aerosol particles...
DoctorAtmospheric new particle formation and growth significantly influence climate by supplying new...
Seasonal to interannual variations in the concentrations of sulfur aerosols (< 2.5 µm in diameter; n...
Atmospheric aerosol particles have important yet highly uncertain impacts on the Earth’s climate, wi...
Dimethyl sulfide, produced as a result of the metabolism of marine phytoplankton, is emitted into th...
Seasonal to interannual variations in the concentrations of sulfur aerosols (< 2.5 µm in diameter...
Dimethylsulfide (DMS) is a semi-volatile sulfur component and under discussion to be climate active,...
Dimethyl sulfide (DMS) produced by marine algae represents the largest natural emission of sulfur to...
Dimethyl sulfide (DMS) influences climate via cloud condensation nuclei (CCN) formation resulting fr...
The remote central Arctic during summertime has a pristine atmosphere with very low aerosol particle...
Abstract Dimethyl sulfide (DMS) is produced by plankton in oceans and constitutes the largest natur...
Dimethyl sulfide (DMS) is the dominant biogenic sulfur compound in the ambient marine atmosphere. Lo...
Dimethyl sulfide (DMS) is produced by plankton in oceans and constitutes the largest natural emissio...
Abstract One year of aerosol particle observations from Alert, Nunavut shows that new particle forma...
6 pags., 5 figs.Dimethyl sulfide (DMS), emitted from the oceans, is the most abundant biological sou...
The connection between marine biogenic dimethyl sulfide (DMS) and the formation of aerosol particles...
DoctorAtmospheric new particle formation and growth significantly influence climate by supplying new...
Seasonal to interannual variations in the concentrations of sulfur aerosols (< 2.5 µm in diameter; n...
Atmospheric aerosol particles have important yet highly uncertain impacts on the Earth’s climate, wi...
Dimethyl sulfide, produced as a result of the metabolism of marine phytoplankton, is emitted into th...
Seasonal to interannual variations in the concentrations of sulfur aerosols (< 2.5 µm in diameter...
Dimethylsulfide (DMS) is a semi-volatile sulfur component and under discussion to be climate active,...
Dimethyl sulfide (DMS) produced by marine algae represents the largest natural emission of sulfur to...
Dimethyl sulfide (DMS) influences climate via cloud condensation nuclei (CCN) formation resulting fr...
The remote central Arctic during summertime has a pristine atmosphere with very low aerosol particle...
Abstract Dimethyl sulfide (DMS) is produced by plankton in oceans and constitutes the largest natur...
Dimethyl sulfide (DMS) is the dominant biogenic sulfur compound in the ambient marine atmosphere. Lo...
Dimethyl sulfide (DMS) is produced by plankton in oceans and constitutes the largest natural emissio...
Abstract One year of aerosol particle observations from Alert, Nunavut shows that new particle forma...