Abstract
Year-round atmospheric precipitation samples from King George Island (“maritime climate,” Great Wall Station (GWS)) and East Antarctica (“continental climate,” Zhongshan Station (ZS)) were examined to investigate atmospheric nitrate (NO3−) sources and production in different Antarctic climates. In general, the seasonal trends in both concentrations and isotopic composition of NO3− are weaker at GWS than at ZS. The seasonal variations in δ15N-NO3− at both sites suggest shifts in the main sources of NO3−. During the light period (October–April), δ15N-NO3− is significantly lower at ZS than at GWS, indicating a primary origin of NO3− from snow nitrogen oxides emissions driven by NO3− photolysis. In contrast, midlatitude tropospheric transport and oceanic emissions of alkyl nitrates may play a prominent role at GWS. In the dark period (May–September), stratospheric inputs persist for a shorter time at GWS than at ZS, resulting in lower δ15N-NO3− at GWS. Oxygen isotopes (δ18O and Δ17O) in precipitation NO3− are also higher during the dark period than during the light period at both sites. In the light period, NO3− production is mainly influenced by hydroxyl radicals and peroxyl radicals at GWS, resulting in lower δ18O- and Δ17O-NO3− values than at ZS, where ozone (O3) plays a more important role in NO3− formation. In the dark period, significantly higher oxygen isotopic values of NO3− at ZS than at GWS suggest the more important role of O3, especially stratospheric O3, on NO3− production at ZS. The findings of this study suggest the distinct sources and formation chemistry of atmospheric NO3− in different Antarctic climates.
| Original language | English |
|---|---|
| Article number | e2024JD043082 |
| Journal | Journal of Geophysical Research Atmospheres |
| Volume | 130 |
| Issue number | 16 |
| DOIs | |
| State | Published - Aug 28 2025 |
Keywords
- Antarctic climates
- atmospheric nitrate
- formation chemistry
- sources
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