Laukert Georgi, Bauch Dorothea, Rabe Benjamin, Krumpen Thomas, Damm Ellen, Kienast Markus, Hathorne Ed, Vredenborg Myriel, Tippenhauer Sandra, Andersen Nils, Meyer Hanno, Mellat Moein, D'Angelo Alessandra, Simões Pereira Patric, Nomura Daiki, Horner Tristan J, Hendry Katharine, Kienast Stephanie S
School of Earth Sciences, University of Bristol, Bristol, UK.
Department of Marine Chemistry & Geochemistry, Woods Hole Oceanographic Institution, Woods Hole, USA.
Nat Commun. 2025 Apr 14;16(1):3172. doi: 10.1038/s41467-025-57881-9.
The Transpolar Drift (TPD) plays a crucial role in regulating Arctic climate and ecosystems by transporting fresh water and key substances, such as terrestrial nutrients and pollutants, from the Siberian Shelf across the Arctic Ocean to the North Atlantic. However, year-round observations of the TPD remain scarce, creating significant knowledge gaps regarding the influence of sea ice drift and ocean surface circulation on the transport pathways of Siberian fresh water and associated matter. Using geochemical provenance tracer data collected over a complete seasonal cycle, our study reveals substantial spatiotemporal variability in the dispersal pathways of Siberian matter along the TPD. This variability reflects dynamic shifts in contributions of individual Siberian rivers as they integrate into a large-scale current system, followed by their rapid and extensive redistribution through a combination of seasonal ice-ocean exchanges and divergent ice drift. These findings emphasize the complexity of Arctic ice-ocean transport pathways and highlight the challenges of forecasting their dynamics in light of anticipated changes in sea ice extent, river discharge, and surface circulation patterns.
跨极漂流(TPD)通过将淡水以及陆地养分和污染物等关键物质从西伯利亚大陆架跨北冰洋输送到北大西洋,在调节北极气候和生态系统方面发挥着至关重要的作用。然而,对跨极漂流的全年观测仍然稀少,这在海冰漂移和海洋表面环流对西伯利亚淡水及相关物质输送路径的影响方面造成了重大的知识空白。利用在一个完整季节周期内收集的地球化学溯源示踪数据,我们的研究揭示了西伯利亚物质沿跨极漂流扩散路径存在显著的时空变异性。这种变异性反映了各个西伯利亚河流在融入大规模洋流系统时贡献的动态变化,随后通过季节性海冰 - 海洋交换和不同的冰漂移组合实现快速而广泛的重新分布。这些发现强调了北极海冰 - 海洋输送路径的复杂性,并突出了鉴于海冰范围、河流流量和表面环流模式的预期变化来预测其动态的挑战。