GSTDTAP  > 气候变化
DOI10.1029/2021GL092826
Ammonium in Antarctic aerosol:Marine biological activity versus long-range transport of biomass burning
M. Legrand; R. Weller; S. Preunkert; B. Jourdain
2021-06-01
发表期刊Geophysical Research Letters
出版年2021
英文摘要

Year-round records of the ionic composition of Antarctic aerosol were obtained at the inland Dome C (DC) and coastal Neumayer (NM) sites, with additional observations of black carbon at NM. Discussions focus on the origin of ammonium in Antarctica. This first Antarctic atmospheric study of several species emitted by biomass burning indicates that black carbon and oxalate reach a maximum in October in relation to biomass burning activity in the southern hemisphere. Ammonium reaches a maximum two months later, suggesting that biomass burning remains a minor ammonium source there. The ammonium maximum in December coincides with the occurrence of diatom blooms in the austral ocean, suggesting that oceanic ammonia emissions are the main source of ammonium in Antarctica. The ammonium to sulfur-derived biogenic species molar ratio of 0.15 in summer suggests far lower ammonia emissions from the Antarctic oceans than mid-latitude southern oceans.

领域气候变化
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文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/329732
专题气候变化
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M. Legrand,R. Weller,S. Preunkert,et al. Ammonium in Antarctic aerosol:Marine biological activity versus long-range transport of biomass burning[J]. Geophysical Research Letters,2021.
APA M. Legrand,R. Weller,S. Preunkert,&B. Jourdain.(2021).Ammonium in Antarctic aerosol:Marine biological activity versus long-range transport of biomass burning.Geophysical Research Letters.
MLA M. Legrand,et al."Ammonium in Antarctic aerosol:Marine biological activity versus long-range transport of biomass burning".Geophysical Research Letters (2021).
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