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A model study on carbon cycle and phytoplankton dynamical processes in the Bohai Sea

机译:渤海碳循环与浮游植物动力学过程的模型研究

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摘要

The carbon cycle of lower trophic level in the Bohai Sea is studied with a three-dimensional biological and physical coupled model. The influences of the processes (including horizontal advection, river nutrient load, active transport etc.) on the phytoplankton biomass and its evolution are estimated. The Bohai Sea is a weak sink of the CO_2 in the atmosphere. During the cycle, 13.7% of the gross production of the phytoplankton enter the higher trophic level and 76. 8% of it are consumed by the respiration itself. The nutrient reproduction comes mainly from the internal biogeochemical loop and the rem-ineralization is an important mechanism of the nutrient transfer from organic form to inorganic. Horizontal advection decreases the total biomass and the eutrophication in some sea areas. Change in the nutrient load of a river can only adjust the local system near its estuary. Controlling the input of the nutrient, which limits the alga growth, can be very useful in lessening the phytoplankton biomass.
机译:利用三维生物与物理耦合模型研究了渤海低营养级碳循环。估算了这些过程(包括水平对流,河流养分负荷,主动运输等)对浮游植物生物量及其演化的影响。渤海是大气中CO_2的弱吸收者。在该周期中,浮游植物总产量的13.7%进入了较高的营养水平,其中76.8%的营养被呼吸作用本身所消耗。养分的繁殖主要来自内部生物地球化学循环,再矿化是养分从有机形态向无机形态迁移的重要机制。水平对流减少了某些海域的总生物量和富营养化。河流养分负荷的变化只能调整河口附近的局部系统。控制营养物质的输入(限制藻类的生长)在减少浮游植物生物量方面非常有用。

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