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Low interannual variability in recent oceanic uptake of atmospheric carbon dioxide

机译:最近海洋吸收大气中二氧化碳的年际变化低

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摘要

An improved understanding of the partitioning of carbon between the atmosphere, terrestrial biosphere, and ocean allows for more accurate predictions of future atmospheric CO_2 concentrations under various fossil-fuel CO_2-emission scenarios. One of the more poorly quantified relevant processes is the interannual variability in the uptake of fossil-fuel CO_2 from the atmosphere by the terrestrial biosphere and ocean. Existing estimates, based on atmospheric measurements, indicate that the oceanic variability is large. Here we estimate the interann-ual variability in global net air-sea CO_2 flux using changes in the observed wind speeds and the partial pressure of CO_2 (p_(co_2)) in surface sea water and the overlying air. Changes in seawater p_(co_2) are deduced from interannual anomalies in sea surface temperature and the regionally and seasonally varying temperature-dependence of seawater p_(co_2), assuming that variations in sea surface temperature reflect seawater p_(co_2) changes caused by thermodynamics, biological processes and water mixing. The calculated interannual variability in oceanic CO_2 uptake of 0.4 Gt Cyr~(-1) (2σ) is much less than that inferred from the analysis of atmospheric measurements. Our results suggest that variable sequestration of carbon by the terrestrial biosphere is the main cause of observed year-to-year variations in the rate of atmospheric CO_2 accumulation.
机译:更好地了解大气,陆地生物圈和海洋之间的碳分配,可以在各种化石燃料CO_2排放情景下更准确地预测未来的大气CO_2浓度。量化程度较低的相关过程之一是陆地生物圈和海洋从大气中吸收化石燃料CO_2的年际变化。基于大气测量的现有估计表明,海洋变化很大。在这里,我们使用观测到的风速和地表海水及上覆空气中CO_2的分压(p_(co_2))的变化来估算全球净海气CO_2通量的年际变化。假设海水表面温度的变化反映了由热力学引起的海水p_(co_2)的变化,那么海水p_(co_2)的变化是由海面温度的年际异常以及海水p_(co_2)的区域和季节变化的温度依赖性得出的。生物过程和水混合。计算得出的0.4 Gt Cyr〜(-1)(2σ)的海洋CO_2吸收年际变化远小于大气测量分析得出的年际变化。我们的结果表明,陆地生物圈对碳的可变隔离是观察到的大气CO_2累积速率逐年变化的主要原因。

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