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Decadal increase in Arctic dimethylsulfide emission
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2019
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Source: PNAS 116 (39) 19311-19317 https://doi.org/10.1073/pnas.1904378116
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Journal Title:Proceedings of the National Academy of Sciences of the United States of America
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Description:Dimethylsulfide (DMS), a gas produced by marine microbial food webs, promotes aerosol formation in pristine atmospheres, altering cloud radiative forcing and precipitation. Recent studies suggest that DMS controls aerosol formation in the summertime Arctic atmosphere and call for an assessment of pan-Arctic DMS emission (EDMS) in a context of dramatic ecosystem changes. Using a remote sensing algorithm, we show that summertime EDMS from ice-free waters increased at a mean rate of 13.3 +/- 6.7 Gg S decade(-1) (similar to 33% decade(-1)) north of 70 degrees N between 1998 and 2016. This trend, mostly explained by the reduction in sea-ice extent, is consistent with independent atmospheric measurements showing an increasing trend of methane sulfonic acid, a DMS oxidation product. Extrapolation to an ice-free Arctic summer could imply a 2.4-fold (+/- 1.2) increase in EDMS compared to present emission. However, unexpected regime shifts in Arctic geo- and ecosystems could result in future EDMS departure from the predicted range. Superimposed on the positive trend, EDMS shows substantial interannual changes and nonmonotonic multiyear trends, reflecting the interplay between physical forcing, ice retreat patterns, and phytoplankton productivity. Our results provide key constraints to determine whether increasing marine sulfur emissions, and resulting aerosol-cloud interactions, will moderate or accelerate Arctic warming in the context of seaice retreat and increasing low-level cloud cover.
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Source:PNAS 116 (39) 19311-19317 https://doi.org/10.1073/pnas.1904378116
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DOI:
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Pubmed ID:31501321
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Pubmed Central ID:PMC6765246
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Rights Information:Other
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Compliance:PMC
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