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Modeling the nitrogen fluxes in the Black Sea using a 3D coupled hydrodynamical-biogeochemical model: transport versus biogeochemical processes, exchanges across the shelf break and comparison of the shelf and deep sea ecodynamics

机译:使用3D耦合流体动力学 - 生物地球化学模型模拟黑海的氮气流:运输与生物地球化学过程,货架上的交换以及货架与深海生态动力学的比较

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摘要

A 6-compartment biogeochemical model of nitrogen cycling and plankton productivity has been coupled with a 3D general circulation model in an enclosed environment (the Black Sea) so as to quantify and compare, on a seasonal and annual scale, the typical internal biogeochemical functioning of the shelf and of the deep sea as well as to estimate the nitrogen and water exchanges at the shelf break. Model results indicate that the annual nitrogen net export to the deep sea roughly corresponds to the annual load of nitrogen discharged by the rivers on the shelf.The model estimated vertically integrated gross annual pri- mary production is 130 9 C m yr for the whole basin, 220g C m yr for the shelf and 40 g C m yr for the central basin. In agreement with sediment trap observations, model results indicate a rapid and efficient recycling of particulate organic matter in the sub-oxic portion of the water column (60-80 m) of the open sea. More than 95% of the PON produced in the euphotic layer is recycled in the upper 100 m of the water column, 87% in the upper 80 m and 67% in the euphotic layer. The model estimates the annual export of POC towards the anoxic layer to 4 10 mol yr. This POC is definitely lost for the system and represents 2% of the annual primary production of the open sea.
机译:在密闭环境(黑海)中,将六室生物循环的氮循环和浮游生物生产力地球化学模型与3D通用循环模型相结合,以便在季节和年度尺度上量化和比较海洋生物的典型内部生物地球化学功能。架子和深海以及估计架子断裂处的氮和水交换。模型结果表明,每年向深海的氮净出口量大致对应于架子河流所排放的氮的年负荷量。该模型估计,整个盆地的垂直综合年原始总产值为130 9 C yr ,架子上为220克/年,中央盆地为40克/年。与沉积物捕集阱的观测结果一致,模型结果表明,在公海的水柱(60-80 m)的低氧部分中,颗粒有机物的快速有效回收。在共沸层中产生的PON的95%以上在水柱的上部100 m中被回收,在上部80 m中的87%在共沸层中被再循环。该模型估计POC每年向缺氧层的出口量为4 10 mol yr。该POC肯定会因该系统而丢失,并且占公海年基本产量的2%。

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