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May 28, 2026Journal of Hydrology0 citationsOpen Access

Climate-driven hydrological shifts generate nutrient-mobilization hotspots in northern catchments: evidence from the Vantaanjoki, Finland

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AOAbubaker OmerJBJoy BhattacharjeeAKAnttila Kati

Key Points

  • This research explores how climate-driven hydrological changes influence nutrient exports in catchments.
  • Utilized a cross-domain SWAT+-statistical framework to analyze climate–nutrient linkages.
  • Assessed nutrient uptake and export under varying hydroclimatic conditions.
  • Nutrient exports were shown to shift from spring to winter–autumn due to climate change.
  • Identified new nutrient-mobilization hotspots driven by hydroclimatic intensification.
  • Demonstrated that nutrient uptake-export coupling weakens under warmer, wetter conditions.

Abstract

• Climate change shifts nutrient exports from spring toward winter–autumn. • Hydroclimatic intensification drives new nutrient-mobilization hotspots. • Cross-domain SWAT+-statistical framework diagnoses climate–nutrient linkages. • Nutrient uptake–export coupling weakens under warmer, wetter conditions. • Mechanism-based targeting improves climate-resilient nutrient management.

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Cite This Study

Omer et al. (2026) studied this question.

synapsesocial.com/papers/6a17dd4e3fad632b0f9da0cahttps://doi.org/10.1016/j.jhydrol.2026.135755
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