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Modeled inherent scattering properties of small light-limited phytoplankton: implications for deep phytoplankton size class distributions

机译:小型光受限浮游植物的固有散射特性建模:对深浮游植物尺寸类别分布的影响

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Abstract: Small phytoplankton, ubiquitous throughout the world's oceans, numerically dominate many open ocean ecosystems with increasing importance towards the base of the euphotic zone. As an example, light-limited deep secondary chlorophyll maxima are usually dominated by small phytoplankton species. Theoretical models describing light-particle interactions predict that small particles scatter light less efficiently than their larger counterparts. To investigate a possible relationship between the dominance of small phytoplankton in light-limited situations and efficiency predictions, a light scattering efficiency model based on Mie theory as approximated by Van de Hulst is used to determine scattering efficiency as a function of size. This scattering efficiency model, which approximates light-phytoplankton interactions by considering phytoplankton as homogeneous spheres, is driven by the spectral light field from an observed deep phytoplankton population dominated by small phytoplankton. This deep secondary chlorophyll maximum is discussed as an example of a highly efficient small phytoplankton population at the threshold of the euphotic zone which could benefit as a result of its size distribution. !16
机译:摘要:小型浮游植物在世界各地的海洋中无处不在,在数量上占主导地位的许多开放海洋生态系统,对富营养区基础的重要性日益增加。例如,光受限的深部次生叶绿素最大值通常由小型浮游植物物种主导。描述光-粒子相互作用的理论模型预测,与大粒子相比,小粒子散射光的效率较低。为了研究光受限情况下小型浮游植物的优势与效率预测之间的可能关系,基于范德·赫尔斯特(Van de Hulst)近似的基于Mie理论的光散射效率模型用于确定散射效率与尺寸的关系。该散射效率模型通过将浮游植物视为均匀球体来近似光-浮游植物的相互作用,是由来自以小浮游植物为主的深浮游植物种群的光谱光场驱动的。讨论了该深层次生叶绿素最大值,作为在富营养区阈值处高效浮游植物小种群的一个实例,该种群可能因其大小分布而受益。 !16

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