Nuclear power and coastal birds: predicting the ecological consequences of warm-water outflows

Local alteration of species abundance in natural communities due to anthropogenic impacts may have secondary, cascading effects on species at higher trophic levels. Such effects are typically hard to single out due to their ubiquitous nature and, therefore, may render impact assessment exercises dif...

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Main Authors: Garcia, C., Stillman, Richard A., Forster, R.M., Silva, T., Bremner, J.
Format: Article in Journal/Newspaper
Language:English
Published: 2016
Subjects:
Online Access:http://eprints.bournemouth.ac.uk/24853/
https://eprints.bournemouth.ac.uk/24853/3/Garcia%20et%20al%20submission%20V02.0.pdf
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spelling ftunivbournem:oai:eprints.bournemouth.ac.uk:24853 2023-06-11T04:11:20+02:00 Nuclear power and coastal birds: predicting the ecological consequences of warm-water outflows Garcia, C. Stillman, Richard A. Forster, R.M. Silva, T. Bremner, J. 2016-12-24 application/pdf http://eprints.bournemouth.ac.uk/24853/ https://eprints.bournemouth.ac.uk/24853/3/Garcia%20et%20al%20submission%20V02.0.pdf en eng https://eprints.bournemouth.ac.uk/24853/3/Garcia%20et%20al%20submission%20V02.0.pdf Garcia, C., Stillman, R. A., Forster, R.M., Silva, T. and Bremner, J., 2016. Nuclear power and coastal birds: predicting the ecological consequences of warm-water outflows. Ecological Modelling, 342 (Dec), 60 - 81. cc_by_nc_nd_4 Article PeerReviewed 2016 ftunivbournem 2023-05-28T05:41:51Z Local alteration of species abundance in natural communities due to anthropogenic impacts may have secondary, cascading effects on species at higher trophic levels. Such effects are typically hard to single out due to their ubiquitous nature and, therefore, may render impact assessment exercises difficult to undertake. Here we describe how we used empirical knowledge together with modelling tools to predict the indirect trophic effects of a future warm-water outflow on populations of shorebirds and wildfowl. Of the main potential benthic prey used by the birds in this instance, the clam Macoma balthica was the only species suspected to be adversely affected by a future increase of temperature. Various scenarios of decreases in prey energy content, simulating various degrees of temperature increase, were tested using an individual-based model, MORPH, in order to assess the effects on birds. The survival and body condition of eight of the 10 bird species modelled, dunlin, ringed plover, turnstone, redshank, grey plover, black-tailed godwit, oystercatcher and shelduck were shown to be not influenced even by the most conservative prey reduction scenarios. Most of these species are known to feed primarily on polychaete worms. For the few bivalve-feeding species, the larger size-classes of polychaete worms were predicted to be a sufficient alternative food. Only knot was predicted to have a lower survival under the two worst case scenario of decreased M. balthica energy content. We believe that this is the first time such predicted cascade effects from a future warm-water outflow have been shown. Article in Journal/Newspaper Dunlin Ringed Plover black-tailed godwit Bournemouth University Research Online (BURO)
institution Open Polar
collection Bournemouth University Research Online (BURO)
op_collection_id ftunivbournem
language English
description Local alteration of species abundance in natural communities due to anthropogenic impacts may have secondary, cascading effects on species at higher trophic levels. Such effects are typically hard to single out due to their ubiquitous nature and, therefore, may render impact assessment exercises difficult to undertake. Here we describe how we used empirical knowledge together with modelling tools to predict the indirect trophic effects of a future warm-water outflow on populations of shorebirds and wildfowl. Of the main potential benthic prey used by the birds in this instance, the clam Macoma balthica was the only species suspected to be adversely affected by a future increase of temperature. Various scenarios of decreases in prey energy content, simulating various degrees of temperature increase, were tested using an individual-based model, MORPH, in order to assess the effects on birds. The survival and body condition of eight of the 10 bird species modelled, dunlin, ringed plover, turnstone, redshank, grey plover, black-tailed godwit, oystercatcher and shelduck were shown to be not influenced even by the most conservative prey reduction scenarios. Most of these species are known to feed primarily on polychaete worms. For the few bivalve-feeding species, the larger size-classes of polychaete worms were predicted to be a sufficient alternative food. Only knot was predicted to have a lower survival under the two worst case scenario of decreased M. balthica energy content. We believe that this is the first time such predicted cascade effects from a future warm-water outflow have been shown.
format Article in Journal/Newspaper
author Garcia, C.
Stillman, Richard A.
Forster, R.M.
Silva, T.
Bremner, J.
spellingShingle Garcia, C.
Stillman, Richard A.
Forster, R.M.
Silva, T.
Bremner, J.
Nuclear power and coastal birds: predicting the ecological consequences of warm-water outflows
author_facet Garcia, C.
Stillman, Richard A.
Forster, R.M.
Silva, T.
Bremner, J.
author_sort Garcia, C.
title Nuclear power and coastal birds: predicting the ecological consequences of warm-water outflows
title_short Nuclear power and coastal birds: predicting the ecological consequences of warm-water outflows
title_full Nuclear power and coastal birds: predicting the ecological consequences of warm-water outflows
title_fullStr Nuclear power and coastal birds: predicting the ecological consequences of warm-water outflows
title_full_unstemmed Nuclear power and coastal birds: predicting the ecological consequences of warm-water outflows
title_sort nuclear power and coastal birds: predicting the ecological consequences of warm-water outflows
publishDate 2016
url http://eprints.bournemouth.ac.uk/24853/
https://eprints.bournemouth.ac.uk/24853/3/Garcia%20et%20al%20submission%20V02.0.pdf
genre Dunlin
Ringed Plover
black-tailed godwit
genre_facet Dunlin
Ringed Plover
black-tailed godwit
op_relation https://eprints.bournemouth.ac.uk/24853/3/Garcia%20et%20al%20submission%20V02.0.pdf
Garcia, C., Stillman, R. A., Forster, R.M., Silva, T. and Bremner, J., 2016. Nuclear power and coastal birds: predicting the ecological consequences of warm-water outflows. Ecological Modelling, 342 (Dec), 60 - 81.
op_rights cc_by_nc_nd_4
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