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Declining oxygen in the global ocean and coastal waters

  • Denise Breitburg
  • , Lisa A. Levin
  • , Andreas Oschlies
  • , Marilaure Grégoire
  • , Francisco P. Chavez
  • , Daniel J. Conley
  • , Véronique Garçon
  • , Denis Gilbert
  • , Dimitri Gutiérrez
  • , Kirsten Isensee
  • , Gil S. Jacinto
  • , Karin E. Limburg
  • , Ivonne Montes
  • , S. W.A. Naqvi
  • , Grant C. Pitcher
  • , Nancy N. Rabalais
  • , Michael R. Roman
  • , Kenneth A. Rose
  • , Brad A. Seibel
  • , Maciej Telszewski
  • Moriaki Yasuhara, Jing Zhang
  • Smithsonian Environmental Research Center
  • Center for Marine Biodiversity and Conservation
  • GEOMAR Helmholtz Center for Ocean Research Kiel
  • Université de Liège
  • Monterey Bay Aquarium Research Institute
  • Lund University
  • Laboratoire d'Etudes en Géophysique et Océanographie Spatiales
  • Fisheries and Oceans Canada
  • Direcció N de Investigaciones Oceanográ Ficas, Instituto Del Mar Del Perú (IMARPE)
  • Intergovernmental Oceanographic Commission of UNESCO
  • University of the Philippines
  • State University of New York College of Environmental Science and Forestry
  • Instituto Geofísico del Perú
  • Kuwait Institute for Scientific Research
  • Council of Scientific and Industrial Research India
  • Fisheries Research and Development
  • University of Cape Town
  • Louisiana State University
  • University of Maryland Center for Environmental Science
  • University of South Florida St. Petersburg
  • Institute of Oceanology of Polish Academy of Sciences
  • The University of Hong Kong, Swire Institute of Marine Science
  • State Key Laboratory of Estuarine and Coastal Research

Research output: Contribution to journalReview articlepeer-review

2609 Scopus citations

Abstract

Oxygen is fundamental to life. Not only is it essential for the survival of individual animals, but it regulates global cycles of major nutrients and carbon. The oxygen content of the open ocean and coastal waters has been declining for at least the past half-century, largely because of human activities that have increased global temperatures and nutrients discharged to coastal waters. These changes have accelerated consumption of oxygen by microbial respiration, reduced solubility of oxygen in water, and reduced the rate of oxygen resupply from the atmosphere to the ocean interior, with a wide range of biological and ecological consequences. Further research is needed to understand and predict long-term, global-and regional-scale oxygen changes and their effects on marine and estuarine fisheries and ecosystems.

Original languageEnglish
Article numbereaam7240
JournalScience
Volume359
Issue number6371
DOIs
StatePublished - 5 Jan 2018

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