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  Spatial and temporal patterns of pore water chemistry in the inter-tidal zone of a high energy beach

Waska, H., Greskowiak, J., Ahrens, J., Beck, M., Ahmerkamp, S., Böning, P., et al. (2019). Spatial and temporal patterns of pore water chemistry in the inter-tidal zone of a high energy beach. Frontiers in marine science.

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Waska, Hannelore1, 2, Autor           
Greskowiak, J. , Autor
Ahrens, J. , Autor
Beck, M. , Autor
Ahmerkamp, Soeren3, Autor           
Böning, P. , Autor
Brumsack, H. J. , Autor
Degenhardt, J. , Autor
Ehlert, C. , Autor
Engelen, B. , Autor
Grünenbaum, N., Autor
Holtappels, M. , Autor
Pahnke, K. , Autor
Marchant, H. K. , Autor
Massmann, G. , Autor
Meier, D. , Autor
Schnetger, B. , Autor
Schwalfenberg, K. , Autor
Simon, Heike2, Autor           
Vandieken, V., Autor
Zielinski, O. , AutorDittmar, Thorsten1, 2, Autor            mehr..
Affiliations:
1Marine Geochemistry Group, Max Planck Institute for Marine Microbiology, Max Planck Society, ou_2481705              
2ICBM MPI Bridging Group for Marine Geochemistry, Max Planck Institute for Marine Microbiology, Max Planck Society, Celsiusstraße 1, 28359 Bremen, DE, ou_2481703              
3Department of Biogeochemistry, Max Planck Institute for Marine Microbiology, Max Planck Society, ou_2481693              

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 Zusammenfassung: Submarine groundwater discharge (SGD) is a ubiquitous source of meteoric fresh groundwater and recirculating seawater to the coastal ocean. Due to the hidden distribution of SGD, as well as the hydraulic- and stratigraphy-driven spatial and temporal heterogeneities, one of the biggest challenges to date is the correct assessment of SGD-driven constituent fluxes. Here, we present results from a 3-dimensional seasonal sampling campaign of a shallow subterranean estuary in a high-energy, meso-tidal beach, Spiekeroog Island, Northern Germany. We determined beach topography and analyzed physico-chemical and biogeochemical parameters such as salinity, temperature, dissolved oxygen, Fe(II) and dissolved organic matter fluorescence (FDOM). Overall, the highest gradients in pore water chemistry were found in the cross-shore direction. In particular, a strong physico-chemical differentiation between the tidal high water and low water line was found and reflected relatively stable in- and exfiltrating conditions in these areas. Contrastingly, in between, the pore water compositions in the existing foreshore ridge and runnel system were very heterogeneous on a spatial and temporal scale. The reasons for this observation may be the strong morphological changes that occur throughout the entire year, which affect the exact locations and heights of the ridge and runnel structures and associated flow paths. Further, seasonal changes in temperature and inland hydraulic head, and the associated effect on microbial mediated redox reactions likely overprint these patterns. In the long-shore direction the pore water chemistry varied less than the along the cross-shore direction. Variation in long-shore direction was probably occurring due to topography changes of the ridge-runnel structure and a physical heterogeneity of the sediment, which produced non-uniform groundwater flow conditions. We conclude that on meso-tidal high energy beaches, the rapidly changing beach morphology produces zones with different approximations to steady-state conditions. Therefore, we suggest that zone-specific endmember sampling is the optimal strategy to reduce uncertainties of SGD-driven constituent fluxes.

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Sprache(n): eng - English
 Datum: 2019-04-02
 Publikationsstatus: Online veröffentlicht
 Seiten: 16
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Titel: Frontiers in marine science
Genre der Quelle: Zeitschrift
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Ort, Verlag, Ausgabe: Lausanne : Frontiers Media
Seiten: - Band / Heft: - Artikelnummer: - Start- / Endseite: - Identifikator: DOI: 10.3389/fmars
CoNE: https://pure.mpg.de/cone/journals/resource/10.3389