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首页> 外文期刊>Quaternary Science Reviews: The International Multidisciplinary Review Journal >Evolution of the Global Overturning Circulation since the Last Glacial Maximum based on marine authigenic neodymium isotopes
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Evolution of the Global Overturning Circulation since the Last Glacial Maximum based on marine authigenic neodymium isotopes

机译:自上次冰川最大值基于海洋Authigenic Neoctimium同位素的全球推翻流通的演变

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The Global Overturning Circulation is linked to climate change on glacial-interglacial and multi-millennial timescales. The understanding of past climate-circulation links remains hindered by apparent conflicts among proxy measures of circulation. Here we reconstruct circulation changes since the Last Glacial Maximum (LGM) based on a global synthesis of authigenic neodymium isotope records (epsilon(Nd)). We propose the bottom-up framework of interpreting seawater and authigenic epsilon(Nd) considering not only conservative watermass mixing, but also the preformed properties and the non-conservative behavior of epsilon(Nd), both subject to sedimentary influences. We extract the major spatial-temporal modes of authigenic epsilon(Nd) using Principal Component Analysis, and make a first-order circulation reconstruction with budget-constrained box model simulations. We show that during the LGM, the source region of North Atlantic overturning shifted southward, which led to more radiogenic preformed epsilon(Nd) of glacial Northern Source Water (NSW). Considering this preformed effect, we infer that glacial deep Atlantic had a similar proportion of NSW as today, although the overall strength of glacial circulation appears reduced from both North Atlantic and Southern Ocean sources, which increased the relative importance of nonconservative behavior of epsilon(Nd) and may have facilitated accumulation of respired carbon in the deep ocean. During the deglaciation, we find that Southern Ocean overturning increased, which offset suppressed North Atlantic overturning and resulted in a net stronger global abyssal circulation. Faster global scale deglacial circulation reduced the relative importance of non-conservative effects, resulting in AtlanticPacific convergence of abyssal epsilon(Nd) signatures. Variations of Southern Ocean overturning likely drove a significant fraction of deglacial changes in atmospheric CO2 and oceanic heat budget. (C) 2020 The Author(s). Published by Elsevier Ltd.
机译:全球推翻循环与冰川间冰和多千年时间尺度的气候变化有关。对过去的气候循环链接的理解仍然受到循环措施代理措施的明显冲突的阻碍。在这里,我们基于全球合成的Authigenic钕同位素记录(Epsilon(Nd))来重建循环变化。考虑到不仅考虑保守的水质混合,还提出了解释海水和Aheyigenic Epsilon(ND)的自下而上的框架,也是ε(ND)的预制性和非保守行为,两者都受到沉积影响。我们利用主成分分析提取了Authigenic Epsilon(ND)的主要空间时间模式,并通过预算限制箱模拟模拟进行一阶循环重建。我们表明,在LGM期间,北大西洋推翻的源区向南移动,导致了更多的冰川北部源水(NSW)的辐射性预先形成的ε(ND)。考虑到这种预先形成的效果,我们推断出冰川深层大西洋与今天的野外野外的比例相似,尽管冰川流通的总体强度从北大西洋和南部海洋来源似乎减少,这增加了ε的非必需行为的相对重要性(ND )可以促进深海中呼吸碳的积累。在谴责期间,我们发现南洋被推翻的增加,抵消了北大西洋推翻,导致净更强的全球性深度流通。更快的全球规模下降循环减少了非保守效应的相对重要性,导致大西洋ε(ND)签名的AtlanticPacific趋同。南海倾覆的变化可能推动了大气二氧化碳和海洋热预算中的大部分巨裂变化。 (c)2020提交人。 elsevier有限公司出版

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