Biogeosciences · 2008 · 118 citations · 61 references
Marine GeologyLittle Ice AgeOcean BiogeochemistryOcean Ecosystem VariabilityEngineeringRapid ReorganizationPaleoenvironmental ChangePaleoceanographyMarine ChemistryOceanic ForcingCryosphereOceanographyPaleoecologyWalker CirculationMarine BiologyPaleoclimatologyEarth ScienceClimate Dynamics
Abstract. Climate and ocean ecosystem variability has been well recognized during the twentieth century but it is unclear if modern ocean biogeochemistry is susceptible to the large, abrupt shifts that characterized the Late Quaternary. Time series from marine sediments off Peru show an abrupt centennial-scale biogeochemical regime shift in the early nineteenth century, of much greater magnitude and duration than present day multi-decadal variability. A rapid expansion of the subsurface nutrient-rich, oxygen-depleted waters resulted in higher biological productivity, including pelagic fish. The shift was likely driven by a northward migration of the Intertropical Convergence Zone and the South Pacific Subtropical High to their present day locations, coupled with a strengthening of Walker circulation, towards the end of the Little Ice Age. These findings reveal the potential for large reorganizations in tropical Pacific climate with immediate effects on ocean biogeochemical cycling and ecosystem structure.
61
Southward Migration of the Intertropical Convergence Zone Through the Holocene
Gerald H. Haug, Konrad A Hughen, Daniel M. Sigman et al. · Science · 2001 · 2.4K citations
Historical Geography, Engineering, Iron Concentration Data +20
Expanding Oxygen-Minimum Zones in the Tropical Oceans
Lothar Stramma, Gregory C. Johnson, Janet Sprintall et al. · Science · 2008 · 1.6K citations