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      Simulated changes in vegetation distribution, land carbon storage, and atmospheric CO2 in response to a collapse of the North Atlantic thermohaline circulation

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      Climate Dynamics
      Springer Nature

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          Collapse and rapid resumption of Atlantic meridional circulation linked to deglacial climate changes.

          The Atlantic meridional overturning circulation is widely believed to affect climate. Changes in ocean circulation have been inferred from records of the deep water chemical composition derived from sedimentary nutrient proxies, but their impact on climate is difficult to assess because such reconstructions provide insufficient constraints on the rate of overturning. Here we report measurements of 231Pa/230Th, a kinematic proxy for the meridional overturning circulation, in a sediment core from the subtropical North Atlantic Ocean. We find that the meridional overturning was nearly, or completely, eliminated during the coldest deglacial interval in the North Atlantic region, beginning with the catastrophic iceberg discharge Heinrich event H1, 17,500 yr ago, and declined sharply but briefly into the Younger Dryas cold event, about 12,700 yr ago. Following these cold events, the 231Pa/230Th record indicates that rapid accelerations of the meridional overturning circulation were concurrent with the two strongest regional warming events during deglaciation. These results confirm the significance of variations in the rate of the Atlantic meridional overturning circulation for abrupt climate changes.
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            Long-Term Variations of Daily Insolation and Quaternary Climatic Changes

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              Origin and consequences of cyclic ice rafting in the Northeast Atlantic Ocean during the past 130,000 years

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                Author and article information

                Journal
                Climate Dynamics
                Clim Dyn
                Springer Nature
                0930-7575
                1432-0894
                December 2005
                September 2005
                : 25
                : 7-8
                : 689-708
                Article
                10.1007/s00382-005-0058-8
                eb1da7f4-fd5a-4648-90c6-070e33714696
                © 2005
                History

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