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53 results on '"Riebesell U"'

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1. The influence of plankton community structure on sinking velocity and remineralization rate of marine aggregates

2. SCOR WG149 Handbook to support the SCOR Best Practice Guide for Multiple Drivers Marine Research

3. Influence of temperature and CO2 on the strontium and magnesium composition of coccolithophore calcite

4. Influence of elevated CO2 concentrations on cell division and nitrogen fixation rates in the bloom-forming cyanobacterium Nodularia spumigena

5. Availability of phosphate for phytoplankton and bacteria and of glucose for bacteria at different pCO2 levels in a mesocosm study

6. A mathematical modelling of bloom of the coccolithophore Emiliania huxleyi in a mesocosm experiment

7. A 13C labelling study on carbon fluxes in Arctic plankton communities under elevated CO2 levels

8. Quantifying the time lag between organic matter production and export in the surface ocean: Implications for estimates of export efficiency

9. Meeresatlas. Daten und Fakten über unseren Umgang mit dem Ozean

10. Alterations in microbial community composition with increasing fCO2: a mesocosm study in the eastern Baltic Sea

11. Ocean acidification impacts bacteria – phytoplankton coupling at low-nutrient conditions

12. Effect of elevated CO2 on the dynamics of particle-attached and free-living bacterioplankton communities in an Arctic fjord

13. Effect of ocean acidification and elevated fCO2 on trace gas production by a Baltic Sea summer phytoplankton community

14. Influence of changing carbonate chemistry on morphology and weight of coccoliths formed by Emiliania huxleyi

15. Effects of changes in carbonate chemistry speciation on Coccolithus braarudii: a discussion of coccolithophorid sensitivities

16. Mesocosm CO2 perturbation studies: from organism to community level

17. Dynamics of dimethylsulphoniopropionate and dimethylsulphide under different CO2 concentrations during a mesocosm experiment

18. C : N : P stoichiometry at the Bermuda Atlantic Time-series Study station in the North Atlantic Ocean

19. Combined effects of CO2 and temperature on carbon uptake and partitioning by the marine diatoms Thalassiosira weissflogii and Dactyliosolen fragilissimus

20. Effect of increased pCO2 on the planktonic metabolic balance during a mesocosm experiment in an Arctic fjord

21. Arctic ocean acidification: pelagic ecosystem and biogeochemical responses during a mesocosm study

22. Arctic microbial community dynamics influenced by elevated CO2 levels

23. Rising Arctic Ocean temperatures cause gas hydrate destabilization and ocean acidification

25. Phytoplankton-bacteria coupling under elevated CO2 levels: a stable isotope labelling study

26. Availability of phosphate for phytoplankton and bacteria and of glucose for bacteria at different pCO2 levels in a mesocosm study

27. Effects of CO2 on particle size distribution and phytoplankton abundance during a mesocosm bloom experiment (PeECE II)

29. Primary production during nutrient-induced blooms at elevated CO2 concentrations

30. Availability of phosphate for phytoplankton and bacteria and of labile organic carbon for bacteria at different pCO2 levels in a mesocosm study

31. Couplings Between Changes in the Climate System and Biogeochemistry

32. Couplings between changes in the climate system and biogeochemistry

33. Species-specific responses of calcifying algae to changing seawater carbonate chemistry

34. Testing the direct effect of CO2 concentration on a bloom of the coccolithophorid Emiliania huxleyi in mesocosm experiments

35. Response of primary production and calcification to changes of pCO2 during experimental blooms of the coccolithophorid Emiliania huxleyi

37. Transparent exopolymer particles and dissolved organic carbon production by Emiliania huxleyi exposed to different CO2 concentrations: a mesocosm experiment

38. Chromophoric dissolved organic matter in experimental mesocosms maintained under different pCO2 levels

39. Growth-rate dependence of Sr incorporation during calcification of Emiliania huxleyi

47. Rheological properties of marine organic aggregates: Importance for vertical flux, turbulence and microzones

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