Potential future fisheries yields in shelf waters: a model study of the effects of climate change and ocean acidification
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Published:2016-01-21
Issue:2
Volume:13
Page:441-454
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ISSN:1726-4189
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Container-title:Biogeosciences
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language:en
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Short-container-title:Biogeosciences
Author:
van Leeuwen S. M.,Le Quesne W. F.,Parker E. R.
Abstract
Abstract. We applied a coupled marine water column model to three sites in the North Sea. The three sites represent different hydrodynamic regimes and are thus representative of a wider area. The model consists of a hydro-biogeochemical model (GOTM-ERSEM-BFM) coupled one way upwards to a size-structured model representing pelagic predators and detritivores (Blanchard et al., 2009). Thus, bottom-up pressures like changing abiotic environment (climate change, chemical cycling) will have an impact on fish biomass across the size spectrum. Here, we studied three different impacts of future conditions on fish yield: climatic impacts (medium emission scenario), abiotic ocean acidification impacts (reduced pelagic nitrification), and biotic ocean acidification impacts (reduced detritivore growth rate). The three impacts were studied separately and combined, and results showed that sites within different hydrodynamic regimes can respond very differently. The seasonally stratified site showed an increase in fish yields (occurring in winter and spring), with acidification effects of the same order of magnitude as climatic effects. The permanently mixed site also showed an increase in fish yield (increase in summer, decrease in winter), due to climatic effects moderated by acidification impacts. The third site, which is characterised by large inter-annual variability in thermal stratification duration, showed a decline in fish yields (occurring in winter) due to decline in the benthic system which forms an important carbon pathway at this site. All sites displayed a shift towards a more pelagic-oriented system.
Funder
Department for Environment, Food and Rural Affairs, UK Government
Publisher
Copernicus GmbH
Subject
Earth-Surface Processes,Ecology, Evolution, Behavior and Systematics
Reference45 articles.
1. Andersson, A. J. and Mackenzie, F. T.: Revisiting four scientific debates in ocean
acidification research, Biogeosciences, 9, 893–905, https://doi.org/10.5194/bg-9-893-2012, 2012. 2. Andersson, A. J., Mackenzie, F. T., and Gattuso, J.-P.: Ocean acidification:
effects of ocean acidification on benthic processes, organisms and ecosystems, 122–153, Oxford
University Press, Oxford, 2011. 3. Artioli, Y., Blackford, J. C., Nondal, G., Bellerby, R. G. J., Wakelin, S. L., Holt, J. T.,
Butenschön, M., and Allen, J. I.: Heterogeneity of impacts of high CO2
on the North Western European Shelf, Biogeosciences, 11, 601–612, https://doi.org/10.5194/bg-11-601-2014, 2014. 4. Baretta, J. W., Ebenhöh, W., and Ruardij, P.: The European Regional
Seas Ecosystem Model: a complex marine ecosystem model, J. Mar. Res.,
33, 233–246, 1995. 5. Beman, J. M., Chow, C.-E., King, A. L., Feng, Y., Fuhrman, J. A., Andersson,
A., Bates, N. R., Popp, B. N., and Hutchins, D. A.: Global declines in
oceanic nitrification rates as a consequence of ocean acidification,
P. Natl. Acad. Sci. USA, 108, 208–213,
https://doi.org/10.1073/pnas.1011053108, 2011.
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