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Sequestration of carbon in the deep Atlantic during the last glaciation

机译:最后一次冰期期间,大西洋深部的碳固存

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Atmospheric CO2 concentrations declined markedly about 70,000 years ago, when the Earth's climate descended into the last glaciation. Much of the carbon removed from the atmosphere has been suspected to have entered the deep oceans, but evidence for increased carbon storage remains elusive. Here we use the B/Ca ratios of benthic foraminifera from several sites across the Atlantic Ocean to reconstruct changes in the carbonate ion concentration and hence the carbon inventory of the deep Atlantic across this transition. We find that deep Atlantic carbonate ion concentration declined by around 25 mu mol kg(-1) between similar to 80,000 and 65,000 years ago. This drop implies that the deep Atlantic carbon inventory increased by at least 50 Gt around the same time as the amount of atmospheric carbon dropped by about 60 Gt. From a comparison with proxy records of deep circulation and climate model simulations, we infer that the carbon sequestration coincided with a shoaling of the Atlantic meridional overturning circulation. We thus conclude that changes in the Atlantic Ocean circulation may have played an important role in reductions of atmospheric CO2 concentrations during the last glaciation, by increasing the carbon storage in the deep Atlantic.
机译:大约7万年前,当地球的气候下降到最后一次冰期时,大气中的CO2浓度显着下降。怀疑从大气中除去的许多碳已经进入深海,但是增加碳存储的证据仍然难以捉摸。在这里,我们使用大西洋沿岸多个地点的底栖有孔虫的B / Ca比值来重建碳酸盐离子浓度的变化,从而重建整个过渡期间深大西洋的碳存量。我们发现,在大约80,000到65,000年前之间,深大西洋碳酸根离子的浓度下降了约25μmol kg(-1)。这种下降意味着大西洋深层碳储量增加了至少50 Gt,而大气中的碳减少了大约60 Gt。通过与深层环流和气候模式模拟的代理记录进行比较,我们推断出碳固存与大西洋经向俯冲环流的浅滩相吻合。因此,我们得出的结论是,大西洋末次冰期期间,大西洋环流的变化可能通过增加深海大西洋中的碳储量,在降低大气中的二氧化碳浓度方面发挥了重要作用。

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