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Seasonal copepod lipid pump promotes carbon sequestration in the deep North Atlantic

机译:季节性co足类脂质泵促进北大西洋深处的碳固存

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摘要

Estimates of carbon flux to the deep oceans are essential for our understanding of global carbon budgets. Sinking of detrital material (“biological pump”) is usually thought to be the main biological component of this flux. Here, we identify an additional biological mechanism, the seasonal “lipid pump,” which is highly efficient at sequestering carbon into the deep ocean. It involves the vertical transport and metabolism of carbon rich lipids by overwintering zooplankton. We show that one species, the copepod Calanus finmarchicus overwintering in the North Atlantic, sequesters an amount of carbon equivalent to the sinking flux of detrital material. The efficiency of the lipid pump derives from a near-complete decoupling between nutrient and carbon cycling—a “lipid shunt,” and its direct transport of carbon through the mesopelagic zone to below the permanent thermocline with very little attenuation. Inclusion of the lipid pump almost doubles the previous estimates of deep-ocean carbon sequestration by biological processes in the North Atlantic.
机译:估计深海碳通量对于我们理解全球碳预算至关重要。通常认为,碎屑物质的下沉(“生物泵”)是该通量的主要生物成分。在这里,我们确定了另一个生物机制,即季节性“脂质泵”,该机制在将碳固存到深海中方面非常有效。它涉及通过浮游动物越冬来垂直运输和富碳脂质的新陈代谢。我们表明,一种物种,在北大西洋越冬的C足类Calaus finmarchicus隔离了相当于碎屑物质下沉通量的碳。脂质泵的效率源于养分与碳循环之间几乎完全的解耦(“脂质分流”),以及碳通过中弹性带直接输送到永久性温跃层以下的过程,衰减很小。包括脂质泵在内,北大西洋通过生物过程进行的深海碳固存的估计几乎翻了一番。

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