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Glacial-interglacial variations in marine phosphorus cycling: Implications for ocean productivity

机译:海洋磷循环中的冰间变化:对海洋生产力的影响

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Using a box model of organic carbon (C) and phosphorus (P) cycling in the global ocean, we assess the effects of changes in the continental supply of reactive P, oceanic mixing, and sea level on the marine P cycle on glacial-interglacial timescales. Our model results suggest that mixing is a dominant forcing during early glaciation, causing retention of P in the deep ocean, thereby lowering primary production and associated organic C and P burial. Sea level fall is the dominant forcing during late glaciation, when reduced coastal trapping of reactive P enhances its transfer to the open ocean, restoring primary production and P burial. During postglacial periods, changes in circulation and weathering dominate open ocean processes and oceanic primary production peaks. As primary production is reduced upon glaciation, changes in the marine P cycle are unlikely to drive enhanced primary production and CO2 drawdown during glaciation.
机译:我们使用全球海洋中有机碳(C)和磷(P)循环的盒模型,评估了反应性磷,海洋混合和海平面的大陆供应变化对冰冰间冰期海洋P周期的影响。时间尺度。我们的模型结果表明,混合是早期冰川期的主要强迫,导致磷保留在深海中,从而降低了初级产量以及相关的有机碳和磷埋葬。海平面下降是晚冰川时期的主要强迫因素,这是由于减少了对活性磷的沿海捕集,从而增强了其向远洋的转移,恢复了初级生产和磷埋葬。在冰河后时期,环流和气候的变化主导着开放海洋过程和海洋初级生产高峰。由于冰川期一次生产减少,海洋磷循环的变化不太可能推动冰川期一次生产的增加和二氧化碳的减少。

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