Possible future changes in Baltic Sea acid-base (pH) and oxygen balances were studied using a catchment-sea coupled model system and numerical experiments based on meteorological and hydrological forcing datasets and scenarios. By using objective statistical methods, climate runs for present climate conditions were examined and evaluated using Baltic Sea modelling. The results indicate that increased nutrient loads will not inhibit future Baltic Sea acidification; instead, the seasonal pH cycle will be amplified by increased biological production and mineralization. All examined scenarios indicate future acidification of the whole Baltic Sea that is insensitive to the chosen global climate model. The main factor controlling the direction an...
It is of common consensus in the ocean acidification community that the increase of atmospheric CO2...
Surface waters in the world oceans have already experienced a pH reduction of about 0.1 units (OSPAR...
Climate change is likely to have large effects on the Baltic Sea ecosystem. Simulations indicate 2-4...
Possible future changes in Baltic Sea acid–base (pH) and oxygen balances were studied using a...
Past, present, and possible future changes in the Baltic Sea acid–base and oxygen balances were stud...
Abstract Increasing atmospheric CO2 drives ocean acidification globally. In coastal seas, acidificat...
Abstract Past, present, and possible future changes in the Baltic Sea acid–base and oxygen balances ...
Using calculations based on the marine carbon system and on modelling, the sensitivity of Baltic Sea...
Oceans are capable of storing part of the emitted anthropogenic carbon dioxide (CO2) due to the form...
Future acidification of coastal seas will depend not only on the development of atmospheric CO2 part...
The Baltic Sea is a shallow, semi-enclosed brackish sea suffering like many other coastal seas from ...
Many coastal seas worldwide are affected by human impacts such as eutrophication causing, inter alia...
[1] Using an ensemble of coupled physical-biogeochemical models driven with regionalized data from g...
Many coastal seas worldwide are affected by human impacts such as eutrophication causing, inter alia...
The environmental state of the Baltic Sea system is influenced by both natural and anthropogenic fac...
It is of common consensus in the ocean acidification community that the increase of atmospheric CO2...
Surface waters in the world oceans have already experienced a pH reduction of about 0.1 units (OSPAR...
Climate change is likely to have large effects on the Baltic Sea ecosystem. Simulations indicate 2-4...
Possible future changes in Baltic Sea acid–base (pH) and oxygen balances were studied using a...
Past, present, and possible future changes in the Baltic Sea acid–base and oxygen balances were stud...
Abstract Increasing atmospheric CO2 drives ocean acidification globally. In coastal seas, acidificat...
Abstract Past, present, and possible future changes in the Baltic Sea acid–base and oxygen balances ...
Using calculations based on the marine carbon system and on modelling, the sensitivity of Baltic Sea...
Oceans are capable of storing part of the emitted anthropogenic carbon dioxide (CO2) due to the form...
Future acidification of coastal seas will depend not only on the development of atmospheric CO2 part...
The Baltic Sea is a shallow, semi-enclosed brackish sea suffering like many other coastal seas from ...
Many coastal seas worldwide are affected by human impacts such as eutrophication causing, inter alia...
[1] Using an ensemble of coupled physical-biogeochemical models driven with regionalized data from g...
Many coastal seas worldwide are affected by human impacts such as eutrophication causing, inter alia...
The environmental state of the Baltic Sea system is influenced by both natural and anthropogenic fac...
It is of common consensus in the ocean acidification community that the increase of atmospheric CO2...
Surface waters in the world oceans have already experienced a pH reduction of about 0.1 units (OSPAR...
Climate change is likely to have large effects on the Baltic Sea ecosystem. Simulations indicate 2-4...