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1000 Titel
  • Dynamics of oxygen sources and sinks in the Baltic Sea under different nutrient inputs
1000 Autor/in
  1. Naumov, Lev |
  2. Meier, H. E. Markus |
  3. Neumann, Thomas |
1000 Erscheinungsjahr 2023
1000 LeibnizOpen
1000 Publikationstyp
  1. Artikel |
1000 Online veröffentlicht
  • 2023-08-11
1000 Erschienen in
1000 Quellenangabe
  • 10:1233324
1000 FRL-Sammlung
1000 Copyrightjahr
  • 2023
1000 Lizenz
1000 Verlagsversion
  • https://doi.org/10.3389/fmars.2023.1233324 |
1000 Ergänzendes Material
  • https://www.frontiersin.org/articles/10.3389/fmars.2023.1233324/full#h12 |
1000 Publikationsstatus
1000 Begutachtungsstatus
1000 Sprache der Publikation
1000 Abstract/Summary
  • The Baltic Sea is one of the marine systems suffering from pronounced man-made hypoxia due to the elevated nutrient loads from land. To mitigate hypoxia expansion and to return the Baltic Sea to a good environmental state, the Baltic Sea Action Plan (BSAP), regulating the waterborne and airborne nutrient input, was adopted by all states surrounding the Baltic Sea. However, at the moment, no significant shrinking of the hypoxic area is observed. In this study, two scenario simulations of the future state of the deep parts of the central Baltic Sea (deeper than 70 meters) were carried out, utilizing a 3-dimensional numerical model. Climate change effects on meteorology, hydrology, and oceanic state were not included. We focused on O2 and H2S sources and sinks under different nutrient input scenarios. We found that under the BSAP scenario, all subbasins in the central Baltic Sea, especially the northern and western Gotland Basin, show significant improvement, namely, oxygenation and oxidation of the deposited reduced material, ceasing its advection to the upper layers and neighboring basins. We found that the nutrient loads are responsible for more than 60% and 80% of the O2 and H2S sources and sinks variability, respectively, at the interannual time scale. We showed that the Baltic Sea could return to the initial state in 1948, but under the more rigorous 0.5 BSAP scenario (nutrient input is halved compared to the BSAP). However, since we observed no hysteresis effect, the system would probably reach the initial state but over a timeframe longer than the 71-year future simulation period.
1000 Sacherschließung
lokal O 2 and H 2 S sources and sinks
lokal nutrient reduction
lokal modeling
lokal Baltic Sea Action Plan
lokal Baltic Sea
1000 Fächerklassifikation (DDC)
1000 Liste der Beteiligten
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  1. Leibniz-Gemeinschaft |
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    1000 Förderer Leibniz-Gemeinschaft |
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