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Central role of Southern Hemisphere winds and eddies in modulating the oceanic uptake of anthropogenic carbon

机译:南半球的风和涡在调节人为碳的海洋吸收中的核心作用

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Although the world ocean is known to be a major sink of anthropogenic carbon dioxide, the exact processes governing the magnitude and regional distribution of carbon uptake remain poorly understood. Here we show that Southern Hemisphere winds, by altering the Ekman volume transport out of the Southern Ocean, strongly control the regional distribution of anthropogenic uptake in an ocean general circulation model, while winds and isopycnal thickness mixing together, by altering the volume of light, actively-ventilated ocean water, exert strong control over the absolute magnitude of anthropogenic uptake. These results are provocative in suggesting that climate-mediated changes in pycnocline volume may ultimately control changes in future carbon uptake.
机译:尽管世界海洋是人为二氧化碳的主要汇聚地,但控制碳吸收量和区域分布的确切过程仍知之甚少。在这里,我们表明,通过改变埃克曼从南大洋的运移量,南半球的风能强烈控制海洋总体环流模型中人为吸收的区域分布,而风和等渗层厚度通过改变光量而混合在一起,积极通风的海水对人为摄入的绝对量有严格控制。这些结果具有说服力,表明气候介导的多菌灵含量变化可能最终控制未来碳吸收量的变化。

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