Thomas Neumann
Leibniz Institute for Baltic Sea Research
82 Papers
343 Citations
Thomas Neumann is an academic researcher from Leibniz Institute for Baltic Sea Research. The author has contributed to research in topics: Eutrophication & Climate change. The author has an hindex of 33, co-authored 80 publications. Previous affiliations of Thomas Neumann include Klaipėda University & University of Rostock.
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Papers
Reconstructing the Development of Baltic Sea Eutrophication 1850–2006
Bo G. Gustafsson,Frederik Schenk,Thorsten Blenckner,Kari Eilola,H. E. Markus Meier,Bärbel Müller-Karulis,Thomas Neumann,Tuija Ruoho-Airola,Oleg P. Savchuk,Eduardo Zorita +9 more
TL;DR: The simulation indicates that no improvement in water quality of the Baltic Sea compared to its present state can be expected from the decrease in nutrient loads in recent decades.
Towards a 3D-ecosystem model of the Baltic Sea
TL;DR: In this article, the preliminary results of a coupled chemical-biological and circulation model of the Baltic Sea are described. But the model is limited to the Pomeranian Bight area and only 15% of the Oder river nitrogen load has left the Bight into the sea.
221
Hypoxia in future climates : a model ensemble study for the Baltic Sea
H. E. M. Meier,Helén Andersson,Kari Eilola,Bo G. Gustafsson,Ivan Kuznetsov,Bärbel Müller-Karulis,Thomas Neumann,Oleg P. Savchuk +7 more
TL;DR: In this article, an ensemble of coupled physical-biogeochemical models driven with regionalized data from global climate simulations is used to quantify the influence of changing climate upon oxygen condi...
198
Trophic status of the south-eastern Baltic Sea: A comparison of coastal and open areas
Norbert Wasmund,A. Andrushaitis,Elżbieta Łysiak-Pastuszak,Bärbel Müller-Karulis,Günther Nausch,Thomas Neumann,Henn Ojaveer,Irina Olenina,L. Postel,Zbigniew Witek +9 more
TL;DR: In this paper, a scheme for trophic classification of the Baltic Sea, based on phytoplankton primary production and biomass, chlorophyll a (chl a) concentration, turbidity and primary production were calculated in the plumes of the rivers Oder, Vistula and Daugava and Klaipeda Strait as well as the open waters of the Arkona Sea, Bornholm Sea, eastern Gotland Sea and the Gulf of Riga.
188
Evaluation of biogeochemical cycles in an ensemble of three state-of-the-art numerical models of the Baltic Sea
TL;DR: In this article, three coupled physical-biogeochemical models, the BAltic sea Long-Term large-scale Eutrophication Model (BALTSEM), the Ecological Regional Ocean Model (ERGOM), and the Swedish Coastal and Ocean Biogeochemical model coupled to the Rossby Centre Ocean circulation model (RCO-SCOBI), are used to calculate changing nutrient and oxygen dynamics in the Baltic Sea.
180