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Development and application of an algorithm for detecting Phaeocystis globosa blooms in the Case 2 Southern North Sea waters

机译:案例2南北海域球藻藻华检测算法的开发与应用

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摘要

While mapping algal blooms from space is now well-established, mapping undesirable algal blooms in eutrophicated coastal waters raises further challenge in detecting individual phytoplankton species. In this paper, an algorithm is developed and tested for detecting Phaeocystis globosa blooms in the Southern North Sea. For this purpose, we first measured the light absorption properties of two phytoplankton groups, P. globosa and diatoms, in laboratory-controlled experiments. The main spectral difference between both groups was observed at 467 nm due to the absorption of the pigment chlorophyll c3 only present in P. globosa, suggesting that the absorption at 467 nm can be used to detect this alga in the field. A Phaeocystis-detection algorithm is proposed to retrieve chlorophyll c3 using either total absorption or water-leaving reflectance field data. Application of this algorithm to absorption and reflectance data from Phaeocystis-dominated natural communities shows positive results. Comparison with pigment concentrations and cell counts suggests that the algorithm can flag the presence of P. globosa and provide quantitative information above a chlorophyll c3 threshold of 0.3 mg m−3 equivalent to a P. globosa cell density of 3 × 106 cells L−1. Finally, the possibility of extrapolating this information to remote sensing reflectance data in these turbid waters is evaluated.
机译:虽然现在已经确定了从太空绘制藻华的地图,但是在富营养化的沿海水域绘制不良藻华的地图在检测单个浮游植物物种方面提出了进一步的挑战。本文开发并测试了一种算法,用于检测北海南部的球囊藻(Phaeocystis globosa)水华。为此,我们首先在实验室控制的实验中测量了两个浮游植物群(P. globosa和硅藻)的光吸收特性。两组之间的主要光谱差异是在467 nm处观察到的,这是由于仅存在于球状毕赤酵母中的色素叶绿素c3的吸收所致,这表明在467 nm处的吸收可用于检测该藻类。提出了一种Phaeocystis检测算法,以使用总吸收或留水反射场数据检索叶绿素c3。该算法在以Phaeocystis为主的自然群落的吸收和反射数据中的应用显示出积极的结果。与色素浓度和细胞计数的比较表明,该算法可以标记球形假单胞菌的存在,并提供高于叶绿素c3阈值0.3 mg m -3 等于球形假单胞菌细胞密度的定量信息。 3×10 6 个单元格L -1 。最后,评估了将这些信息外推到这些浑浊水中的遥感反射率数据的可能性。

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