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首页> 外文期刊>Journal of marine systems: journal of the European Association of Marine Sciences and Techniques >The role of inorganic nutrients and dissolved organic phosphorus in the phytoplankton dynamics of a Mediterranean bay: A modeling study
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The role of inorganic nutrients and dissolved organic phosphorus in the phytoplankton dynamics of a Mediterranean bay: A modeling study

机译:无机养分和溶解性有机磷在地中海湾浮游植物动力学中的作用:模型研究

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摘要

The effect of Dissolved Organic Phosphorus (DOP) availability and nutrient limitation of phytoplankton growth in an estuarine bay (Alfacs Bay, NW Mediterranean) have been studied by means of a zero-dimensional ecological model including nitrogen, phosphorus (organic and inorganic), two groups of phytoplankton (diatoms and flagellates), one group of zooplankton, and detritus. Simulations with and without DOP as an extra source of phosphorus for phytoplankton growth suggest that DOP plays an important role in the dynamics of the Alfacs Bay ecosystem. DOP is indeed necessary to simulate the observed draw-down of nitrate and build up of phytoplankton biomass. Two non-exclusive mechanisms allowing DOP availability for phytoplankton are possible: direct uptake, or remineralization to Dissolved Inorganic Phosphorus. Including both gives a better agreement with the observations. Inclusion of DOP in the model leads to predominance of phosphorus limitation of phytoplankton growth in fall and winter, and of nitrogen limitation in late spring and summer. Simulations with and without sediment resuspension suggest that this process does not significantly affect the nutrient budget in the bay.
机译:利用包括氮,磷(有机和无机),两个,两个,三个和两个的零维生态模型,研究了河口湾(Alfacs湾,西北地中海)中溶解性有机磷(DOP)的有效性和浮游植物生长的养分限制。一组浮游植物(硅藻和鞭毛),一组浮游动物和碎屑。有或没有DOP作为浮游植物生长所需磷的额外来源的模拟表明,DOP在Alfacs湾生态系统的动力学中起着重要作用。 DOP实际上对于模拟观察到的硝酸盐的吸收和浮游植物生物量的积累是必不可少的。允许浮游植物利用DOP的两种非排他性机制是可能的:直接摄取或再矿化为溶解的无机磷。包括两者与观察结果更好地吻合。在模型中包含DOP会导致秋季和冬季浮游植物生长的磷限制主要发生,而在春季和夏季末则主要限制氮。有或没有沉积物重悬的模拟表明,该过程不会显着影响海湾的养分收支。

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