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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Low efficiency of nutrient translocation for enhancing oceanic uptake of carbon dioxide
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Low efficiency of nutrient translocation for enhancing oceanic uptake of carbon dioxide

机译:营养物质转运效率低下,无法增加海洋对二氧化碳的吸收

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摘要

Anthropogenic emissions of carbon dioxide (CO_2) are steadily increasing theconcentration of this greenhouse gas in the Earth's atmosphere. The possible long-term consequences of this elevated concentration have led to proposals for a number of largescare geoengineering schemes that aim to enhance or augment natural sinks for CO_2. One such scheme proposes deploying a large number of floating "pipes" in the ocean that act to translocate nutrient-rich seawater from below the mixed layer to the ocean's surface: the nutrient supplied should enhance the growth of phytoplankton and consequently the export of organic carbon to the deep ocean via the biological pump. Here we examine the practical consequences of this scheme in a global ocean general circulation model that includes a nitrogen-based ecosystem and the biogeochemical cycle of carbon. While primary production is generally enhanced by the modeled pipes, as expected, the effect on the uptake of CO_2 from the atmosphere is much smaller, may be negative, and shows considerable spatiotemporal variability.
机译:人为排放的二氧化碳(CO_2)不断增加了地球大气中这种温室气体的浓度。浓度升高可能带来的长期后果导致提出了许多大型照护地球工程计划的提案,这些计划旨在增加或增加CO_2的自然汇。一种这样的方案建议在海洋中部署大量漂浮的“管道”,其作用是将营养丰富的海水从混合层以下转移到海洋表面:提供的营养物质应促进浮游植物的生长,从而促进有机碳的出口。通过生物泵进入深海。在这里,我们在包括基于氮的生态系统和碳的生物地球化学循环的全球海洋总环流模型中研究了该方案的实际结果。尽管通过建模管道通常可以提高一次产量,但如预期的那样,对大气中CO_2吸收的影响要小得多,可能为负值,并显示出很大的时空变化性。

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