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Atmospheric iron fluxes over the last deglaciation: Climatic implications

机译:最后一次冰消期间的大气铁通量:气候影响

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A decrease in the micronutrient iron supply to the Southern Ocean is widely believed to be involved in the atmospheric CO2 increase during the last deglaciation. Here we report the first record of atmospheric iron fluxes as determined in 166 samples of the Dome C ice core and covering the last glacial-interglacial transition (22-9 kyr B. P.). It reveals a decrease in fallout flux from 24x10(-2) mg Fe m(-2) yr(-1) during the Last Glacial Maximum to 0.7x10(-2) mg Fe m(-2) yr(-1) at the onset of the Holocene. The acid leachable fraction of iron determined in our samples was the 60% of the total iron mass in glacial samples, about twice the value found for Holocene samples. This emerging difference in iron solubility over different climatic stages provides a new insight for evaluating the iron hypothesis over glacial/interglacial periods.
机译:普遍认为,向南大洋供应的微量营养素铁的减少与最后一次冰消期间大气中二氧化碳的增加有关。在这里,我们报告了166个Dome C冰芯样品中确定的第一条大气铁通量记录,该记录涵盖了最后的冰川-冰川间转变(公元前22至9年)。它揭示了从最后一次冰期最大时的24x10(-2)mg Fe m(-2)yr(-1)到2016年的0.7x10(-2)mg Fe m(-2)yr(-1)的沉降通量下降全新世的开始。在我们的样品中测定的铁的可酸浸出分数为冰层样品中总铁质量的60%,约为全新世样品的两倍。在不同气候阶段铁溶解度的新出现差异为评估冰川/间冰期铁的假设提供了新的见解。

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