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  • 1
    Keywords: Hochschulschrift
    Type of Medium: Online Resource
    Pages: 1 Online-Ressource (VI, 84 Seiten = 5 MB) , Graphen, Karten, Illustrationen
    Edition: 2020
    Language: German
    Note: Zusammenfassung in Deutscher und Englischer Sprache
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  • 2
    Keywords: Hochschulschrift ; Kieler Bucht ; Denitrifikation ; Meeressediment
    Type of Medium: Online Resource
    Pages: Online-Ressource (96 Seiten, 4 MB) , Diagramme
    Series Statement: Berichte aus dem Institut für Meereskunde an der Christian-Albrechts-Universität Kiel 199
    Language: German
    Note: Zusammenfassung in deutscher und englischer Sprache
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  • 3
    In: Ocean dynamics, Berlin : Springer, 2001, 54(2004), 1, Seite 1-7, 1616-7341
    In: volume:54
    In: year:2004
    In: number:1
    In: pages:1-7
    Type of Medium: Online Resource
    Pages: graph. Darst
    ISSN: 1616-7341
    Language: English
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  • 4
    In: Global biogeochemical cycles, Hoboken, NJ : Wiley, 1987, 18(2004), 1944-9224
    In: volume:18
    In: year:2004
    In: extent:20
    Description / Table of Contents: The contribution of the marine biota to air-sea fluxes of CO2 and O2 is often described in terms of biological production concepts, such as new production, export production, and net community production. We evaluate these three quantities using a basin-scale ecosystem-circulation model of the North Atlantic Ocean based on Redfield stoichiometry into which we introduce an artificial tracer which records the biotic contribution to air-sea exchange of gases like O2 and CO2. It is found that on average the biological production rates overestimate the biotically effected air-sea flux by some 20% and, in some regions, even predict the wrong direction. With primary production restricted to the euphotic zone, but respiration extending to farther below, the discrepancy can largely be attributed to the different integration depths used in the different concepts (euphotic zone, surface mixed layer), and on annual and longer timescales, all rates converge when using the base of the winter mixed layer rather than that of the euphotic zone as the reference depth. For the surface carbon budget, which ultimately controls air-sea exchange of CO2, it is irrelevant whether carbon atoms cross this boundary in organic or inorganic speciation. Hence the transports of biotically generated surpluses or deficits of dissolved inorganic matter must also be accounted for. While their contribution amounts to only a few percent on the basin scale, the subduction of newly remineralized inorganic matter can locally account for about half of the biotically effected air-sea flux, for example, in regions of mode-water formation.
    Type of Medium: Online Resource
    Pages: 20 , graph. Darst
    ISSN: 1944-9224
    Language: English
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  • 5
    Book
    Book
    Kiel : Inst. für Meereskunde an der Christian-Albrechts-Univ., Abt. Marine Mikrobiologie
    Keywords: Hochschulschrift ; Kieler Bucht ; Denitrifikation ; Meeressediment
    Type of Medium: Book
    Pages: 89 S. , graph. Darst.
    Series Statement: Berichte aus dem Institut für Meereskunde an der Christian-Albrechts-Universität Kiel 199
    Language: German
    Note: Literaturverz. S. 78 - 89 , Zugl.: Kiel., Univ., Diss. : 1990
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  • 6
    Publication Date: 2022-06-07
    Description: Denitrification rates were measured by the acetylene blockage method in the various sediment types occurring in Kiel Bight, namely sand, muddy sand, and mud, during the course of almost two years. Nitrate concentration in the sediments was found to be the major factor controlling denitrification. The source of the nitrate is nitrification in the sediments themselves. Nitrification there is mainly controlled by oxygen supply. In this way, the anaerobic process of denitrification indirectly requires oxygen. Anoxic muds have hence the lowest, oxic sands the highest denitrification rates. Effects of eutrophication like increased supply of nitrogen and organic matter to the sediments and the increased incidence of anoxia in the bottom water tend to reduce denitrification in such a situation.
    Type: Article , NonPeerReviewed
    Format: text
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  • 7
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    Frontiers
    In:  Frontiers in Microbiology, 9 . Art.Nr. 2112.
    Publication Date: 2021-03-19
    Description: Fixed nitrogen (N) limits productivity across much of the low-latitude ocean. The magnitude of its inventory results from the balance of N input and N loss, the latter largely occurring in regionally well-defined low-oxygen waters and sediments (denitrification and anammox). The rate and distribution of N input by biotic N2 fixation, the dominant N source, is not well known. Here we compile N2 fixation estimates from experimental measurements, tracer-based geochemical and modelling approaches, and discuss their limitations and uncertainties. The lack of adequate experimental data coverage and the unsufficient understanding of the controls of marine N2 fixation result in high uncertainties, which make the assessment of the current N-balance a challenge. We suggest that a more comprehensive understanding of the environmental and ecological interaction of marine N2 fixers is required to advance the field towards robust N2 fixation rates estimates and predictions.
    Type: Article , PeerReviewed
    Format: text
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  • 8
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    Copernicus Publications (EGU)
    In:  Geoscientific Model Development, 8 . pp. 2079-2094.
    Publication Date: 2019-09-23
    Description: The natural abundance of 14C in total CO2 dissolved in seawater is a property applied to evaluate the water age structure and circulation in the ocean and in ocean models. In this study we use three different representations of the global ocean circulation augmented with a suite of idealised tracers to study the potential and limitations of using natural 14C to determine water age, the time elapsed since a body of water had contact with the atmosphere. We find that, globally, bulk 14C-age is dominated by two equally important components, one associated with aging, i.e. the time component of circulation and one associated with a "preformed 14C-age". This latter quantity exists because of the slow and incomplete atmosphere/ocean equilibration of 14C in particular in high latitudes where many water masses form. The relative contribution of the preformed component to bulk 14C-age varies regionally within a given model, but also between models. Regional variability, e.g. in the Atlantic Ocean is associated with the mixing of waters with very different end members of preformed 14C-age. In the Atlantic, variations in the preformed component over space and time mask the circulation component to an extent that its patterns are not detectable from bulk 14C-age alone. Between models the variability of age can also be considerable (factor of 2), related to the combinations of physical model parameters, which influence circulation dynamics, and gas exchange in the models. The preformed component was found to be very sensitive to gas exchange and moderately sensitive to ice cover. In our model evaluation exercise, the choice of the gas exchange constant from within the current range of uncertainty had such a strong influence on preformed and bulk 14C-age that if model evaluation would be based on bulk 14C-age it could easily impair the evaluation and tuning of a models circulation on global and regional scales. Based on the results of this study, we propose that considering preformed 14C-age is critical for a correct assessment of circulation in ocean models.
    Type: Article , PeerReviewed , info:eu-repo/semantics/article
    Format: text
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  • 9
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    AGU (American Geophysical Union) | Wiley
    In:  Geophysical Research Letters, 42 (11). pp. 4482-4489.
    Publication Date: 2020-06-29
    Description: Growing slowly, marine N2 fixers are generally expected to be competitive only where nitrogen (N) supply is low relative to that of phosphorus (P) with respect to the cellular N:P ratio (R) of non-fixing phytoplankton. This is at odds with observed high N2 fixation rates in the oligotrophic North Atlantic where the ratio of nutrients supplied to the surface is elevated in N relative to the average R (16:1). In this study, we investigate several mechanisms to solve this puzzle: iron limitation, phosphorus enhancement by preferential remineralization or stoichiometric diversity of phytoplankton, and dissolved organic phosphorus (DOP) utilization. Combining resource competition theory and a global coupled ecosystem-circulation model we find that the additional N and energy investments required for exo-enzymatic break-down of DOP gives N2 fixers a competitive advantage in oligotrophic P-starved regions. Accounting for this mechanism expands the ecological niche of N2-fixers also to regions where the nutrient supply is high in N relative to R, yielding, in our model, a pattern consistent with the observed high N2-fixation rates in the oligotrophic North Atlantic.
    Type: Article , PeerReviewed
    Format: text
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  • 10
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    Institut für Meereskunde Kiel
    In:  Kieler Meeresforschungen - Sonderheft, 56 (S8). pp. 112-116.
    Publication Date: 2018-07-24
    Type: Article , PeerReviewed
    Format: text
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