Southwest Atlantic water mass evolution during the last deglaciation

被引:75
作者
Lund, D. C. [1 ]
Tessin, A. C. [2 ]
Hoffman, J. L. [2 ]
Schmittner, A. [3 ]
机构
[1] Univ Connecticut, Dept Marine Sci, Groton, CT 06340 USA
[2] Univ Michigan, Dept Earth & Environm Sci, Ann Arbor, MI 48109 USA
[3] Oregon State Univ, Coll Earth Ocean & Atmospher Sci, Corvallis, OR 97331 USA
来源
PALEOCEANOGRAPHY | 2015年 / 30卷 / 05期
基金
美国国家科学基金会;
关键词
stable isotopes; South Atlantic; deglaciation; carbon dioxide; MERIDIONAL OVERTURNING CIRCULATION; WESTERN NORTH-ATLANTIC; ATMOSPHERIC CO2; DEEP-OCEAN; CARBON ISOTOPES; GLACIAL MAXIMUM; SOUTHERN-OCEAN; ICE CORES; INTERMEDIATE; RADIOCARBON;
D O I
10.1002/2014PA002657
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
The rise in atmospheric CO2 during Heinrich Stadial 1 (HS1; 14.5-17.5kyr B.P.) may have been driven by the release of carbon from the abyssal ocean. Model simulations suggest that wind-driven upwelling in the Southern Ocean can liberate C-13-depleted carbon from the abyss, causing atmospheric CO2 to increase and the C-13 of CO2 to decrease. One prediction of the Southern Ocean hypothesis is that water mass tracers in the deep South Atlantic should register a circulation response early in the deglaciation. Here we test this idea using a depth transect of 12 cores from the Brazil Margin. We show that records below 2300m remained C-13-depleted until 15kyr B.P. or later, indicating that the abyssal South Atlantic was an unlikely source of light carbon to the atmosphere during HS1. Benthic O-18 results are consistent with abyssal South Atlantic isolation until 15kyr B.P., in contrast to shallower sites. The depth dependent timing of the O-18 signal suggests that correcting O-18 for ice volume is problematic on glacial terminations. New data from 2700 to 3000m show that the deep SW Atlantic was isotopically distinct from the abyss during HS1. As a result, we find that mid-depth C-13 minima were most likely driven by an abrupt drop in C-13 of northern component water. Low C-13 at the Brazil Margin also coincided with an 80 decrease in C-14. Our results are consistent with a weakening of the Atlantic meridional overturning circulation and point toward a northern hemisphere trigger for the initial rise in atmospheric CO2 during HS1.
引用
收藏
页码:477 / 494
页数:18
相关论文
共 60 条
[1]   The salinity, temperature, and δ18O of the glacial deep ocean [J].
Adkins, JF ;
McIntyre, K ;
Schrag, DP .
SCIENCE, 2002, 298 (5599) :1769-1773
[2]   Wind-Driven Upwelling in the Southern Ocean and the Deglacial Rise in Atmospheric CO2 [J].
Anderson, R. F. ;
Ali, S. ;
Bradtmiller, L. I. ;
Nielsen, S. H. H. ;
Fleisher, M. Q. ;
Anderson, B. E. ;
Burckle, L. H. .
SCIENCE, 2009, 323 (5920) :1443-1448
[3]   Reservoir effect of the southern and southeastern Brazilian coast [J].
Angulo, RJ ;
de Souza, MC ;
Reimer, PJ ;
Sasaoka, SK .
RADIOCARBON, 2005, 47 (01) :67-73
[4]   OCEAN CHEMISTRY DURING GLACIAL TIME [J].
BROECKER, WS .
GEOCHIMICA ET COSMOCHIMICA ACTA, 1982, 46 (10) :1689-1705
[5]   The Southern Ocean's Role in Carbon Exchange During the Last Deglaciation [J].
Burke, Andrea ;
Robinson, Laura F. .
SCIENCE, 2012, 335 (6068) :557-561
[6]   The Last Glacial Maximum [J].
Clark, Peter U. ;
Dyke, Arthur S. ;
Shakun, Jeremy D. ;
Carlson, Anders E. ;
Clark, Jorie ;
Wohlfarth, Barbara ;
Mitrovica, Jerry X. ;
Hostetler, Steven W. ;
McCabe, A. Marshall .
SCIENCE, 2009, 325 (5941) :710-714
[7]   Deglacial radiocarbon history of tropical Atlantic thermocline waters: absence of CO2 reservoir purging signal [J].
Cleroux, Caroline ;
deMenocal, Peter ;
Guilderson, Thomas .
QUATERNARY SCIENCE REVIEWS, 2011, 30 (15-16) :1875-1882
[8]   CHANGES IN THE DISTRIBUTION OF partial derivative C-13 OF DEEP WATER Sigma CO2 BETWEEN THE LAST GLACIATION AND THE HOLOCENE [J].
Curry, W. B. ;
Duplessy, J. C. ;
Labeyrie, L. D. ;
Shackleton, N. J. .
PALEOCEANOGRAPHY, 1988, 3 (03) :317-341
[9]   Glacial water mass geometry and the distribution of δ13C of ΣCO2 in the western Atlantic Ocean -: art. no. PA1017 [J].
Curry, WB ;
Oppo, DW .
PALEOCEANOGRAPHY, 2005, 20 (01) :1-12
[10]   Rapid sea-level fall and deep-ocean temperature change since the last interglacial period [J].
Cutler, KB ;
Edwards, RL ;
Taylor, FW ;
Cheng, H ;
Adkins, J ;
Gallup, CD ;
Cutler, PM ;
Burr, GS ;
Bloom, AL .
EARTH AND PLANETARY SCIENCE LETTERS, 2003, 206 (3-4) :253-271