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Sensitivities of marine carbon fluxes to ocean change

机译:海洋碳通量对海洋变化的敏感性

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摘要

Throughout Earth's history, the oceans have played a dominant role in the climate system through the storage and transport of heat and the exchange of water and climate-relevant gases with the atmosphere. The ocean's heat capacity is 1,000 times larger than that of the atmosphere, its content of reactive carbon more than 60 times larger. Through a variety of physical, chemical, and biological processes, the ocean acts as a driver of climate variability on time scales ranging from seasonal to interannual to decadal to glacial-interglacial. The same processes will also be involved in future responses of the ocean to global change. Here we assess the responses of the seawater carbonate system and of the ocean's physical and biological carbon pumps to (ⅰ) ocean warming and the associated changes in vertical mixing and overturning circulation, and (ⅱ) ocean acidification and carbonation. Our analysis underscores that many of these responses have the potential for significant feedback to the climate system. Because several of the underlying processes are interlinked and nonlinear, the sign and magnitude of the ocean's carbon cycle feedback to climate change is yet unknown. Understanding these processes and their sensitivities to global change will be crucial to our ability to project future climate change.
机译:在地球的整个历史中,海洋通过热量的存储和传输以及与大气的水和与气候相关的气体的交换,在气候系统中发挥了主导作用。海洋的热容量是大气的1000倍,其活性碳含量是大气的60倍以上。通过各种物理,化学和生物过程,海洋是气候变化的驱动力,其时标从季节到年际到年代际到冰期到冰期之间。海洋对全球变化的未来反应也将涉及相同的过程。在这里,我们评估了海水碳酸盐系统以及海洋的物理和生物碳泵对(ⅰ)海洋变暖以及垂直混合和倾覆环流以及(ⅱ)海洋酸化和碳酸盐化的相关变化的响应。我们的分析强调,这些响应中的许多响应都可能对气候系统产生重大反馈。由于一些基本过程是相互联系的且是非线性的,因此尚不清楚海洋对气候变化的碳循环反馈的符号和大小。了解这些过程及其对全球变化的敏感性对于我们预测未来气候变化的能力至关重要。

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