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Sea level fall during glaciation stabilized atmospheric CO2 by enhanced volcanic degassing

机译:冰川作用期间的海平面下降通过增强的火山脱气作用稳定了大气中的二氧化碳

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摘要

Paleo-climate records and geodynamic modelling indicate the existence of complex interactions between glacial sea level changes, volcanic degassing and atmospheric CO2, which may have modulated the climate system’s descent into the last ice age. Between ∼85 and 70 kyr ago, during an interval of decreasing axial tilt, the orbital component in global temperature records gradually declined, while atmospheric CO2, instead of continuing its long-term correlation with Antarctic temperature, remained relatively stable. Here, based on novel global geodynamic models and the joint interpretation of paleo-proxy data as well as biogeochemical simulations, we show that a sea level fall in this interval caused enhanced pressure-release melting in the uppermost mantle, which may have induced a surge in magma and CO2 fluxes from mid-ocean ridges and oceanic hotspot volcanoes. Our results reveal a hitherto unrecognized negative feedback between glaciation and atmospheric CO2 predominantly controlled by marine volcanism on multi-millennial timescales of ∼5,000–15,000 years.
机译:古气候记录和地球动力学模型表明,冰川海平面变化,火山脱气和大气CO2之间存在复杂的相互作用,这可能已将气候系统的下降调节到了最后一个冰河时代。在大约85至70年以前,在轴向倾斜减小的间隔期间,全球温度记录中的轨道分量逐渐下降,而大气中的CO2与其继续与南极温度保持长期相关性,而是保持相对稳定。在此,基于新颖的全球地球动力学模型和古代理数据的联合解释以及生物地球化学模拟,我们表明,在此间隔内的海平面下降导致最上层地幔中压力释放融化增强,这可能引起了激增来自洋中脊和海洋热点火山的岩浆和CO2通量。我们的结果表明,在大约5,000-15,000年的几千年时间尺度上,冰川作用和主要由海洋火山作用控制的大气CO2之间存在迄今未得到认识的负反馈。

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