Multiple year-round (2006–2015) records of the bulk and size-segregated composition of aerosol were obtained at the inland site of Concordia located in East Antarctica. The well-marked maximum of non-sea-salt sulfate (nssSO4) in January (100 ± 28 ng m−3 versus 4.4 ± 2.3 ng m−3 in July) is consistent with observations made at the coast (280 ± 78 ng m−3 in January versus 16 ± 9 ng m−3 in July at Dumont d'Urville, for instance). In contrast, the well-marked maximum of MSA at the coast in January (60 ± 23 ng m−3 at Dumont d'Urville) is not observed at Concordia (5.2 ± 2.0 ng m−3 in January). Instead, the MSA level at Concordia peaks in October (5.6 ± 1.9 ng m−3) and March (14.9 ± 5.7 ng m−3). As a result, a surprisingly low MSA-to-n...
International audience17O-excess (Δ17O = δ17O − 0.52 × δ18O) of sulfate trapped in Antarctic ice cor...
International audience17O-excess (Δ17O = δ17O − 0.52 × δ18O) of sulfate trapped in Antarctic ice cor...
The concentrations of sulfur-containing species (sulfate and methanesulfonate (MSA)) of aerosols col...
International audienceTo gain a better understanding of sulfate and methanesulfonate (MS−) signals r...
International audienceTo gain a better understanding of sulfate and methanesulfonate (MS−) signals r...
International audienceTo gain a better understanding of sulfate and methanesulfonate (MS−) signals r...
International audienceTo gain a better understanding of sulfate and methanesulfonate (MS−) signals r...
<p><strong>Abstract.</strong> Multiple year-round records ...
International audienceThe origin of sea-salt aerosol that reaches the high Antarctic plateau and is ...
International audienceThe origin of sea-salt aerosol that reaches the high Antarctic plateau and is ...
International audienceThe origin of sea-salt aerosol that reaches the high Antarctic plateau and is ...
International audience17O-excess (Δ17O = δ17O − 0.52 × δ18O) of sulfate trapped in Antarctic ice cor...
International audienceThe origin of sea-salt aerosol that reaches the high Antarctic plateau and is ...
International audienceThe origin of sea-salt aerosol that reaches the high Antarctic plateau and is ...
International audienceThe origin of sea-salt aerosol that reaches the high Antarctic plateau and is ...
International audience17O-excess (Δ17O = δ17O − 0.52 × δ18O) of sulfate trapped in Antarctic ice cor...
International audience17O-excess (Δ17O = δ17O − 0.52 × δ18O) of sulfate trapped in Antarctic ice cor...
The concentrations of sulfur-containing species (sulfate and methanesulfonate (MSA)) of aerosols col...
International audienceTo gain a better understanding of sulfate and methanesulfonate (MS−) signals r...
International audienceTo gain a better understanding of sulfate and methanesulfonate (MS−) signals r...
International audienceTo gain a better understanding of sulfate and methanesulfonate (MS−) signals r...
International audienceTo gain a better understanding of sulfate and methanesulfonate (MS−) signals r...
<p><strong>Abstract.</strong> Multiple year-round records ...
International audienceThe origin of sea-salt aerosol that reaches the high Antarctic plateau and is ...
International audienceThe origin of sea-salt aerosol that reaches the high Antarctic plateau and is ...
International audienceThe origin of sea-salt aerosol that reaches the high Antarctic plateau and is ...
International audience17O-excess (Δ17O = δ17O − 0.52 × δ18O) of sulfate trapped in Antarctic ice cor...
International audienceThe origin of sea-salt aerosol that reaches the high Antarctic plateau and is ...
International audienceThe origin of sea-salt aerosol that reaches the high Antarctic plateau and is ...
International audienceThe origin of sea-salt aerosol that reaches the high Antarctic plateau and is ...
International audience17O-excess (Δ17O = δ17O − 0.52 × δ18O) of sulfate trapped in Antarctic ice cor...
International audience17O-excess (Δ17O = δ17O − 0.52 × δ18O) of sulfate trapped in Antarctic ice cor...
The concentrations of sulfur-containing species (sulfate and methanesulfonate (MSA)) of aerosols col...