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Decrease in CO2 efflux from northern hardwater lakes with increasing atmospheric warming

Author

Listed:
  • Kerri Finlay

    (Limnology Laboratory, University of Regina, Regina, Saskatchewan, Canada S4S 0A2)

  • Richard J. Vogt

    (Limnology Laboratory, University of Regina, Regina, Saskatchewan, Canada S4S 0A2
    Present addresses: Department of Biology, Trent University, Peterborough, Ontario, Canada K9J 7B8 (R.J.V.); Département des Sciences Biologiques, Université du Québec à Montréal, Montréal, Québec, Canada H3C 3P8 (M.J.B.).)

  • Matthew J. Bogard

    (Limnology Laboratory, University of Regina, Regina, Saskatchewan, Canada S4S 0A2
    Present addresses: Department of Biology, Trent University, Peterborough, Ontario, Canada K9J 7B8 (R.J.V.); Département des Sciences Biologiques, Université du Québec à Montréal, Montréal, Québec, Canada H3C 3P8 (M.J.B.).)

  • Björn Wissel

    (Institute of Environmental Change and Society, University of Regina, Regina, Saskatchewan, Canada S4S 0A2)

  • Benjamin M. Tutolo

    (University of Minnesota)

  • Gavin L. Simpson

    (Institute of Environmental Change and Society, University of Regina, Regina, Saskatchewan, Canada S4S 0A2)

  • Peter R. Leavitt

    (Limnology Laboratory, University of Regina, Regina, Saskatchewan, Canada S4S 0A2
    Institute of Environmental Change and Society, University of Regina, Regina, Saskatchewan, Canada S4S 0A2)

Abstract

Atmospheric warming may reduce CO2 emissions from hardwater lakes by reducing the duration of ice cover, increasing lake water pH and favouring CO2 sequestration.

Suggested Citation

  • Kerri Finlay & Richard J. Vogt & Matthew J. Bogard & Björn Wissel & Benjamin M. Tutolo & Gavin L. Simpson & Peter R. Leavitt, 2015. "Decrease in CO2 efflux from northern hardwater lakes with increasing atmospheric warming," Nature, Nature, vol. 519(7542), pages 215-218, March.
  • Handle: RePEc:nat:nature:v:519:y:2015:i:7542:d:10.1038_nature14172
    DOI: 10.1038/nature14172
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