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Phytoplankton productivity in a turbid buoyant coastal plume

机译:浑浊的沿海羽流中浮游植物的生产力

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摘要

The complex dynamics associated with coastal buoyant plumes make it difficult to document the interactions between light availability, phytoplankton carbon fixation, and biomass accumulation. Using real-time data, provided by satellites and high frequency radar, we adaptively sampled a low salinity parcel of water that was exported from the Hudson river estuary in April 2005. The water was characterized by high nutrients and high chlorophyll concentrations. The majority of the low salinity water was re-circulated within a nearshore surface feature for 5 days during which nitrate concentrations dropped 7-fold, the maximum quantum yield for photosynthesis dropped 10-fold, and primary productivity rates decreased 5-fold. Associated with the decline in nitrate was an increase in phytoplankton biomass. The phytoplankton combined with the Colored Dissolved Organic Matter (CDOM) and non-algal particles attenuated the light so the 1% light level ranged between 3 and 10. m depending on the age of the plume water. As the plume was 10-15. m thick, the majority of the phytoplankton were light-limited. Vertical mixing within the plume was high as indicated by the dispersion of injected of rhodamine dye. The mixing within the buoyant plume was more rapid than phytoplankton photoacclimation processes. Mixing rates within the plume was the critical factor determining overall productivity rates within the turbid plume.
机译:与沿海浮羽相关的复杂动力学使得难以记录光可利用性,浮游植物碳固定和生物量积累之间的相互作用。利用卫星和高频雷达提供的实时数据,我们对2005年4月从哈德逊河河口出口的低盐度水域进行了自适应采样。该水质的特点是营养成分高,叶绿素浓度高。大部分低盐度水在近岸表面特征内再循环了5天,在此期间硝酸盐浓度下降了7倍,光合作用的最大量子产率下降了10倍,初级生产率下降了5倍。与硝酸盐减少相关的是浮游植物生物量的增加。浮游植物与有色溶解有机物(CDOM)和非藻类颗粒相结合会减弱光线,因此1%的光线水平在3至10 m之间,具体取决于羽状水的年龄。羽流为10-15。厚度为1毫米,大部分浮游植物是光受限的。如若丹明染料的注入分散表明,羽状流内的垂直混合很高。浮羽内部的混合比浮游植物的光适应过程更快。羽流中的混合速率是决定混浊羽流中整体生产率的关键因素。

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