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1.
Ambio ; 45(6): 635-48, 2016 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-27075572

RESUMEN

In this study, we measured depth-dependent benthic microalgal primary production in a Bothnian Bay estuary to estimate the benthic contribution to total primary production. In addition, we compiled data on benthic microalgal primary production in the entire Baltic Sea. In the estuary, the benthic habitat contributed 17 % to the total annual primary production, and when upscaling our data to the entire Bothnian Bay, the corresponding value was 31 %. This estimated benthic share (31 %) is three times higher compared to past estimates of 10 %. The main reason for this discrepancy is the lack of data regarding benthic primary production in the northern Baltic Sea, but also that past studies overestimated the importance of pelagic primary production by not correcting for system-specific bathymetric variation. Our study thus highlights the importance of benthic communities for the northern Baltic Sea ecosystem in general and for future management strategies and ecosystem studies in particular.


Asunto(s)
Monitoreo del Ambiente/métodos , Sedimentos Geológicos , Microalgas/crecimiento & desarrollo , Agua de Mar , Países Bálticos , Ecosistema , Océanos y Mares , Estaciones del Año
2.
Ambio ; 42(4): 402-13, 2013 May.
Artículo en Inglés | MEDLINE | ID: mdl-23619798

RESUMEN

Understanding how long-term abiotic and biotic processes are linked at a landscape level is of major interest for analyzing future impact on humans and the environment from present-day societal planning. This article uses results derived from multidisciplinary work at a coastal site in Sweden, with the aim of describing future landscape development. First, based on current and historical data, we identified climate change, shoreline displacement, and accumulation/erosion processes as the main drivers of landscape development. Second, site-specific information was combined with data from the Scandinavian region to build models that describe how the identified processes may affect the site development through time. Finally, the process models were combined to describe a whole interglacial period. With this article, we show how the landscape and ecosystem boundaries are affected by changing permafrost conditions, peat formation, sedimentation, human land use, and shoreline displacement.


Asunto(s)
Ecosistema , Hielo , Modelos Teóricos
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