western arctic ocean
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Author(s):  
Zhangxian Ouyang ◽  
Yun Li ◽  
Di Qi ◽  
Wenli Zhong ◽  
Akihiko Murata ◽  
...  

Author(s):  
Ruifeng Zhang ◽  
Laramie Jensen ◽  
Jessica Fitzsimmons ◽  
Robert M. Sherrell ◽  
Phoebe Lam ◽  
...  

2021 ◽  
Author(s):  
Akihiko M. Murata ◽  
Jun Inoue ◽  
Shigeto Nishino ◽  
Sayaka Yasunaka

Author(s):  
Melissa S. Schwab ◽  
Jörg D. Rickli ◽  
Robie W. Macdonald ◽  
H. Rodger Harvey ◽  
Negar Haghipour ◽  
...  

2021 ◽  
pp. 102639
Author(s):  
Yanpei Zhuang ◽  
Haiyan Jin ◽  
Yang Zhang ◽  
Hongliang Li ◽  
Tianzhen Zhang ◽  
...  

2021 ◽  
Vol 11 (1) ◽  
Author(s):  
Jang-Mu Heo ◽  
Seong-Su Kim ◽  
Sung-Ho Kang ◽  
Eun Jin Yang ◽  
Ki-Tae Park ◽  
...  

AbstractThe western Arctic Ocean (WAO) has experienced increased heat transport into the region, sea-ice reduction, and changes to the WAO nitrous oxide (N2O) cycles from greenhouse gases. We investigated WAO N2O dynamics through an intensive and precise N2O survey during the open-water season of summer 2017. The effects of physical processes (i.e., solubility and advection) were dominant in both the surface (0–50 m) and deep layers (200–2200 m) of the northern Chukchi Sea with an under-saturation of N2O. By contrast, both the surface layer (0–50 m) of the southern Chukchi Sea and the intermediate (50–200 m) layer of the northern Chukchi Sea were significantly influenced by biogeochemically derived N2O production (i.e., through nitrification), with N2O over-saturation. During summer 2017, the southern region acted as a source of atmospheric N2O (mean: + 2.3 ± 2.7 μmol N2O m−2 day−1), whereas the northern region acted as a sink (mean − 1.3 ± 1.5 μmol N2O m−2 day−1). If Arctic environmental changes continue to accelerate and consequently drive the productivity of the Arctic Ocean, the WAO may become a N2O “hot spot”, and therefore, a key region requiring continued observations to both understand N2O dynamics and possibly predict their future changes.


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