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On the variable effects of climate change on Pacific salmon

Author

Listed:
  • Zhang, Xiao
  • Li, Hong-Yi
  • Deng, Zhiqun D.
  • Leung, L. Ruby
  • Skalski, John R.
  • Cooke, Steven J.

Abstract

Water temperature has manifold effects on the biology of Pacific salmon. Thermal optima enable Pacific salmon to maximize growth while temperatures above thermal optima can induce stress and lead to mortality. This study investigated the impacts of climatic changes and water management practices on Chinook and Steelhead smolts in the Columbia River Basin using an integrated earth system model and a multiple regression model that incorporated nonlinear survival responses to water temperature. Results revealed that the effects would vary significantly with the species, location, and climate change scenario. Mean survival rates may increase by more than 10% in Upper Columbia River, while reduce by 1˜13% and 2˜35% for Chinook and Steelhead smolts respectively, in the Lower Columbia River by 2080s. This study highlights the importance of integrating the nonlinear response of survival rate to river temperature and water management effects in climate change vulnerability analysis for salmonid stocks.

Suggested Citation

  • Zhang, Xiao & Li, Hong-Yi & Deng, Zhiqun D. & Leung, L. Ruby & Skalski, John R. & Cooke, Steven J., 2019. "On the variable effects of climate change on Pacific salmon," Ecological Modelling, Elsevier, vol. 397(C), pages 95-106.
  • Handle: RePEc:eee:ecomod:v:397:y:2019:i:c:p:95-106
    DOI: 10.1016/j.ecolmodel.2019.02.002
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    1. Sternberg, R., 2010. "Hydropower's future, the environment, and global electricity systems," Renewable and Sustainable Energy Reviews, Elsevier, vol. 14(2), pages 713-723, February.
    2. Buob, Seraina & Stephan, Gunter, 2011. "To mitigate or to adapt: How to confront global climate change," European Journal of Political Economy, Elsevier, vol. 27(1), pages 1-16, March.
    3. Detlef Vuuren & Jae Edmonds & Mikiko Kainuma & Keywan Riahi & Allison Thomson & Kathy Hibbard & George Hurtt & Tom Kram & Volker Krey & Jean-Francois Lamarque & Toshihiko Masui & Malte Meinshausen & N, 2011. "The representative concentration pathways: an overview," Climatic Change, Springer, vol. 109(1), pages 5-31, November.
    4. Edmonds, Jae & Reilly, John, 1983. "A long-term global energy- economic model of carbon dioxide release from fossil fuel use," Energy Economics, Elsevier, vol. 5(2), pages 74-88, April.
    5. John R. Morrongiello & Ronald E. Thresher & David C. Smith, 2012. "Aquatic biochronologies and climate change," Nature Climate Change, Nature, vol. 2(12), pages 849-857, December.
    6. Keywan Riahi & Shilpa Rao & Volker Krey & Cheolhung Cho & Vadim Chirkov & Guenther Fischer & Georg Kindermann & Nebojsa Nakicenovic & Peter Rafaj, 2011. "RCP 8.5—A scenario of comparatively high greenhouse gas emissions," Climatic Change, Springer, vol. 109(1), pages 33-57, November.
    7. Lu Liu & Mohamad Hejazi & Hongyi Li & Barton Forman & Xiao Zhang, 2017. "Vulnerability of US thermoelectric power generation to climate change when incorporating state-level environmental regulations," Nature Energy, Nature, vol. 2(8), pages 1-5, August.
    8. B. Arheimer & C. Donnelly & G. Lindström, 2017. "Regulation of snow-fed rivers affects flow regimes more than climate change," Nature Communications, Nature, vol. 8(1), pages 1-9, December.
    9. Michelle Vliet & Fulco Ludwig & Pavel Kabat, 2013. "Global streamflow and thermal habitats of freshwater fishes under climate change," Climatic Change, Springer, vol. 121(4), pages 739-754, December.
    Full references (including those not matched with items on IDEAS)

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