The timing of the last deglaciation in North Atlantic climate records
To determine the mechanisms governing the last deglaciation and the sequence of events that lead to deglaciation, it is important to obtain a temporal framework that applies to both continental and marine climate records. Radiocarbon dating has been widely used to derive calendar dates for marine se...
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Published in | Nature (London) Vol. 412; no. 6848; pp. 724 - 727 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
Published |
London
Nature Publishing
16.08.2001
Nature Publishing Group |
Subjects | |
Online Access | Get full text |
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Abstract | To determine the mechanisms governing the last deglaciation and the sequence of events that lead to deglaciation, it is important to obtain a temporal framework that applies to both continental and marine climate records. Radiocarbon dating has been widely used to derive calendar dates for marine sediments, but it rests on the assumption that the 'apparent age' of surface water (the age of surface water relative to the atmosphere) has remained constant over time. Here we present new evidence for variation in the apparent age of surface water (or reservoir age) in the North Atlantic ocean north of 40 degrees N over the past 20,000 years. In two cores we found apparent surface-water ages to be larger than those of today by 1,230 +/- 600 and 1,940 +/- 750 years at the end of the Heinrich 1 surge event (15,000 years BP) and by 820 +/- 430 to 1,010 +/- 340 years at the end of the Younger Dryas cold episode. During the warm Bølling-Allerød period, between these two periods of large reservoir ages, apparent surface-water ages were comparable to present values. Our results allow us to reconcile the chronologies from ice cores and the North Atlantic marine records over the entire deglaciation period. Moreover, the data imply that marine carbon dates from the North Atlantic north of 40 degrees N will need to be corrected for these highly variable effects. |
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AbstractList | To determine the mechanisms governing the last deglaciation and the sequence of events that lead to deglaciation, it is important to obtain a temporal framework that applies to both continental and marine climate records. To determine the mechanisms governing the last deglaciation and the sequence of events that lead to deglaciation, it is important to obtain a temporal framework that applies to both continental and marine climate records. Radiocarbon dating has been widely used to derive calendar dates for marine sediments, but it rests on the assumption that the "apparent age" of surface water (the age of surface water relative to the atmosphere) has remained constant over time. Here we present new evidence for variation in the apparent age of surface water (or reservoir age) in the North Atlantic ocean north of 40 degree N over the past 20,000 years. In two cores we found apparent surface-water ages to be larger than those of today by 1,230 plus or minus 600 and 1,940 plus or minus 750 years at the end of the Heinrich 1 surge event (15,000 years BP) and by 820 plus or minus 430 to 1,010 plus or minus 340 years at the end of the Younger Dryas cold episode. During the warm Boelling-Alleroed period, between these two periods of large reservoir ages, apparent surface-water ages were comparable to present values. Our results allow us to reconcile the chronologies from ice cores and the North Atlantic marine records over the entire deglaciation period. Moreover, the data imply that marine carbon dates from the North Atlantic north of 40 degree N will need to be corrected for these highly variable effects. We present new evidence for variation in the apparent age of surface water (or reservoir age) in the North Atlantic ocean north of 40 deg N over the past 20,000 years. In two cores we found apparent surface-water ages to be larger than those of today by 1230 +/- 600 and 1940 +/- 750 years at the end of the Heinrich 1 surge event (15,000 years BP) and by 820 +/- 430 to 1010 +/- 340 years at the end of the Younger Dryas cold episode. During the warm Bolling-Allerod period, between these two periods of large reservoir ages, apparent surface-water ages were comparable to present values. Our results allow us to reconcile the chronologies from ice cores and the North Atlantic marine records over the entire deglaciation period. Moreover, the data imply that marine carbon dates from the North Atlantic north of 40 deg N will need to be corrected for these highly variable effects. (Author) To determine the mechanisms governing the last deglaciation and the sequence of events that lead to deglaciation, it is important to obtain a temporal framework that applies to both continental and marine climate records. Radiocarbon dating has been widely used to derive calendar dates for marine sediments, but it rests on the assumption that the 'apparent age' of surface water (the age of surface water relative to the atmosphere) has remained constant over time. Here we present new evidence for variation in the apparent age of surface water (or reservoir age) in the North Atlantic ocean north of 40 degrees N over the past 20,000 years. In two cores we found apparent surface-water ages to be larger than those of today by 1,230 +/- 600 and 1,940 +/- 750 years at the end of the Heinrich 1 surge event (15,000 years BP) and by 820 +/- 430 to 1,010 +/- 340 years at the end of the Younger Dryas cold episode. During the warm Bølling-Allerød period, between these two periods of large reservoir ages, apparent surface-water ages were comparable to present values. Our results allow us to reconcile the chronologies from ice cores and the North Atlantic marine records over the entire deglaciation period. Moreover, the data imply that marine carbon dates from the North Atlantic north of 40 degrees N will need to be corrected for these highly variable effects. To determine the mechanisms governing the last deglaciation and the sequence of events that lead to deglaciation, it is important to obtain a temporal framework that applies to both continental and marine climate records. Radiocarbon dating has been widely used to derive calendar dates for marine sediments, but it rests on the assumption that the `apparent age' of surface water (the age of surface water relative to the atmosphere) has remained constant over time. Here we present new evidence for variation in the apparent age of surface water (or reservoir age) in the North Atlantic ocean north of 40°N over the past 20,000 years. In two cores we found apparent surface-water ages to be larger than those of today by 1,230 +/- 600 and 1,940 +/- 750 years at the end of the Heinrich 1 surge event (15,000 years BP) and by 820 +/- 430 to 1,010 +/- 340 years at the end of the Younger Dryas cold episode. During the warm Bølling-Allerød period, between these two periods of large reservoir ages, apparent surface-water ages were comparable to present values. Our results allow us to reconcile the chronologies from ice cores and the North Atlantic marine records over the entire deglaciation period. Moreover, the data imply that marine carbon dates from the North Atlantic north of 40°N will need to be corrected for these highly variable effects. |
Audience | Academic |
Author | Labeyrie, Laurent Duprat, Josette Michel, Elisabeth Paillard, Didier Waelbroeck, Claire Duplessy, Jean-Claude |
Author_xml | – givenname: Claire surname: Waelbroeck fullname: Waelbroeck, Claire organization: Laboratoire des Sciences du Climat et de l'Environnement, Domaine du CNRS, bât. 12 – givenname: Didier surname: Paillard fullname: Paillard, Didier organization: Laboratoire des Sciences du Climat et de l'Environnement, Domaine du CNRS, bât. 12 – givenname: Josette surname: Duprat fullname: Duprat, Josette organization: Département de Géologie et Océanographie, CNRS UMR 5805, Université de Bordeaux I – givenname: Jean-Claude surname: Duplessy fullname: Duplessy, Jean-Claude organization: Laboratoire des Sciences du Climat et de l'Environnement, Domaine du CNRS, bât. 12 – givenname: Elisabeth surname: Michel fullname: Michel, Elisabeth organization: Laboratoire des Sciences du Climat et de l'Environnement, Domaine du CNRS, bât. 12 – givenname: Laurent surname: Labeyrie fullname: Labeyrie, Laurent organization: Laboratoire des Sciences du Climat et de l'Environnement, Domaine du CNRS, bât. 12 Département des Sciences de la Terre, Université Paris-sud Orsay, bât. 504 |
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Copyright | 2001 INIST-CNRS COPYRIGHT 2001 Nature Publishing Group Copyright Macmillan Journals Ltd. Aug 16, 2001 Distributed under a Creative Commons Attribution 4.0 International License |
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Keywords | Allerod Weichselian O-18/O-16 Quaternary paleotemperature Atlantic Ocean chronology drilling deglaciation upper Quaternary surface water drill cores upper Pleistocene C-14 dating Heinrich events Cenozoic Phanerozoic Holocene marine sediments Younger Dryas Pleistocene |
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References | Voelker, A. (b2) 1998; 40 Siani, G. (b9) 1999 Sikes, E. L., Samson, C. R., Guilderson, T. P., Howard, W. R. (b10) 2000; 405 Stocker, T. F., Wright, D. G. (b24) 1996; 11 Malmgren, B., Kucera, M., Nyberg, J., Waelbroeck, C. (b28) Stuiver, M. (b3) 1998; 40 Alley, R. B. (b4) 1993; 362 Austin, W. E. N., Bard, E., Hunt, J. B., Kroon, D., Peacock, J. D. (b8) 1995; 37 Bard, E. (b1) 1987; 328 Dokken, T. M., Jansen, E. (b26) 1999; 401 Mikolajewicz, U. (b23) 1996; 189 Johnsen, S. J. (b15) 1997; 102 Boyle, E. A. (b17) 1988; 3 Stuiver, M., Braziunas, T. F. (b6) 1993; 3 Bondevik, S., Birks, H. H., Gulliksen, S., Mangerud, J. (b29) 1999; 52 Duplessy, J.-C. (b19) 1988; 3 Broecker, W., Bond, G., Klas, M., Clark, E., MacManus, J. (b16) 1992; 6 Muscheler, R., Beer, J., Wagner, G., Finkel, R. (b21) 2000; 408 Bard, E. (b7) 1994; 126 Bard, E., Arnold, M., Duprat, J., Moyes, J., Duplessy, J. C. (b14) 1987; 1 Vidal, L. (b22) 1997; 146 Bard, E. (b5) 1988; 3 Stocker, T. F., Wright, D. G. (b25) 1998; 40 Stuiver, M., Reimer, P. J. (b13) 1993; 35 Waelbroeck, C. (b27) 1998; 13 Sarnthein, M. (b20) 1994; 9 Duplessy, J. C. (b11) 1992; 358 Labeyrie, L. D. (b18) 1992; 11 Labeyrie, L. (b30) 1995; 348 Labeyrie, L. (b12) 1999 L Labeyrie (BF35089060_CR12) 1999 S Bondevik (BF35089060_CR29) 1999; 52 JC Duplessy (BF35089060_CR11) 1992; 358 C Waelbroeck (BF35089060_CR27) 1998; 13 EA Boyle (BF35089060_CR17) 1988; 3 E Bard (BF35089060_CR1) 1987; 328 J-C Duplessy (BF35089060_CR19) 1988; 3 TF Stocker (BF35089060_CR25) 1998; 40 E Bard (BF35089060_CR7) 1994; 126 TM Dokken (BF35089060_CR26) 1999; 401 M Stuiver (BF35089060_CR13) 1993; 35 E Bard (BF35089060_CR14) 1987; 1 SJ Johnsen (BF35089060_CR15) 1997; 102 E Bard (BF35089060_CR5) 1988; 3 M Sarnthein (BF35089060_CR20) 1994; 9 R Muscheler (BF35089060_CR21) 2000; 408 BF35089060_CR28 EL Sikes (BF35089060_CR10) 2000; 405 RB Alley (BF35089060_CR4) 1993; 362 A Voelker (BF35089060_CR2) 1998; 40 G Siani (BF35089060_CR9) 1999 W Broecker (BF35089060_CR16) 1992; 6 L Vidal (BF35089060_CR22) 1997; 146 LD Labeyrie (BF35089060_CR18) 1992; 11 WEN Austin (BF35089060_CR8) 1995; 37 M Stuiver (BF35089060_CR6) 1993; 3 U Mikolajewicz (BF35089060_CR23) 1996; 189 M Stuiver (BF35089060_CR3) 1998; 40 TF Stocker (BF35089060_CR24) 1996; 11 L Labeyrie (BF35089060_CR30) 1995; 348 |
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Snippet | To determine the mechanisms governing the last deglaciation and the sequence of events that lead to deglaciation, it is important to obtain a temporal... We present new evidence for variation in the apparent age of surface water (or reservoir age) in the North Atlantic ocean north of 40 deg N over the past... |
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SubjectTerms | Climate Continental interfaces, environment Cores Deglaciation Earth sciences Earth, ocean, space Exact sciences and technology Geological time Glaciers Marine Marine and continental quaternary Marine geology Marine sediments Ocean, Atmosphere Radiocarbon dating Regions Reservoirs Sciences of the Universe Surface water Surficial geology |
Title | The timing of the last deglaciation in North Atlantic climate records |
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