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An Analytical Framework for the Steady State Impact of Carbonate Compensation on Atmospheric CO 22

机译:碳酸盐补偿对大气CO 2 2的稳态影响的分析框架

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> The deep‐ocean carbonate ion concentration impacts the fraction of the marine calcium carbonate production that is buried in sediments. This gives rise to the carbonate compensation feedback, which is thought to restore the deep‐ocean carbonate ion concentration on multimillennial timescales. We formulate an analytical framework to investigate the impact of carbonate compensation under various changes in the carbon cycle relevant for anthropogenic change and glacial cycles. Using this framework, we show that carbonate compensation amplifies by 15–20% changes in atmospheric CO 2 resulting from a redistribution of carbon between the atmosphere and ocean (e.g., due to changes in temperature, salinity, or nutrient utilization). A counterintuitive result emerges when the impact of organic matter burial in the ocean is examined. The organic matter burial first leads to a slight decrease in atmospheric CO 2 and an increase in the deep‐ocean carbonate ion concentration. Subsequently, enhanced calcium carbonate burial leads to outgassing of carbon from the ocean to the atmosphere, which is quantified by our framework. Results from simulations with a multibox model including the minor acids and bases important for the ocean‐atmosphere exchange of carbon are consistent with our analytical predictions. We discuss the potential role of carbonate compensation in glacial‐interglacial cycles as an example of how our theoretical framework may be applied.
机译:

深海碳酸盐离子浓度会影响沉积物中埋地的海洋碳酸钙生产的分数。这导致碳酸盐补偿反馈,这被认为将深海碳酸根离子浓度恢复为多级时间尺寸。我们制定分析框架,以调查碳酸盐补偿在对人为变化和冰川循环相关的各种变化下的影响。使用该框架,我们表明碳酸盐补偿在大气和海洋之间的碳重新分布(例如,温度,盐度或营养利用率)。检查有机物质埋葬在海洋中的影响时出现了违规的结果。有机物质埋葬首先导致大气CO 2 的轻微降低,并增加深海碳酸根离子浓度。随后,增强的碳酸钙埋葬导致来自海洋的碳的分配到大气中,通过我们的框架量化。通过模拟具有多酸和基础的多氧化物模型的仿真与对海洋气氛交换的重要碳的碳是一致的,这与我们的分析预测一致。我们讨论碳酸盐补偿在冰川间循环中的潜在作用,作为我们的理论框架如何应用的例子。

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