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Ocean (de)oxygenation from the Last Glacial Maximum to the twenty-first century: insights from Earth System models

机译:从最后一次冰期最大值到二十世纪的海洋(脱氧)氧化作用:来自地球系统模型的见解

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摘要

All Earth System models project a consistent decrease in the oxygen content of oceans for the coming decades because of ocean warming, reduced ventilation and increased stratification. But large uncertainties for these future projections of ocean deoxygenation remain for the subsurface tropical oceans where the major oxygen minimum zones are located. Here, we combine global warming projections, model-based estimates of natural short-term variability, as well as data and model estimates of the Last Glacial Maximum (LGM) ocean oxygenation to gain some insights into the major mechanisms of oxygenation changes across these different time scales. We show that the primary uncertainty on future ocean deoxygenation in the subsurface tropical oceans is in fact controlled by a robust compensation between decreasing oxygen saturation (O2sat) due to warming and decreasing apparent oxygen utilization (AOU) due to increased ventilation of the corresponding water masses. Modelled short-term natural variability in subsurface oxygen levels also reveals a compensation between O2sat and AOU, controlled by the latter. Finally, using a model simulation of the LGM, reproducing data-based reconstructions of past ocean (de)oxygenation, we show that the deoxygenation trend of the subsurface ocean during deglaciation was controlled by a combination of warming-induced decreasing O2sat and increasing AOU driven by a reduced ventilation of tropical subsurface waters.This article is part of the themed issue ‘Ocean ventilation and deoxygenation in a warming world’.
机译:所有地球系统模型都预测,由于海洋变暖,通风减少和分层增加,未来几十年海洋中的氧气含量将持续下降。但是,对于这些未来海洋脱氧预测的不确定性仍然存在于主要氧气最小区域所在的地下热带海洋中。在这里,我们结合了全球变暖的预测,基于模型的自然短期可变性估计以及最后冰期最大值(LGM)海洋氧合作用的数据和模型估算,以了解这些不同方面的主要氧合变化机理时间尺度。我们表明,未来地下热带海洋中未来海洋脱氧的主要不确定性实际上是由变暖导致的氧气饱和度降低(O2sat)与相应水团的通风增加导致的视在氧气利用率(AOU)之间的强有力补偿所控制的。地下氧水平的短期自然可变性模型也揭示了Ossat和AOU之间的补偿,后者由后者控制。最后,使用LGM的模型模拟,重现基于数据的过去海洋(脱氧)的重建,我们表明,冰消作用下地下海洋的脱氧趋势受变暖引起的O2sat减少和AOU驱动增加的控制通过减少热带地下水的通风。本文是主题问题“变暖世界中的海洋通风和脱氧”的一部分。

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