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Bio-optical Properties of Cyanobacteria Blooms in Western Lake Erie

机译:西伊利湖蓝藻水华的生物光学特性

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There is a growing use of remote sensing observations for detecting and quantifying freshwater cyanobacteria populations, yet the inherent optical properties of these communities in natural settings, fundamental to bio-optical algorithms, are not well known. Towards bridging this knowledge gap, we measured a full complement of optical properties in western Lake Erie during cyanobacteria blooms in the summers of 2013 and 2014. Our measurements focus attention on the optical uniqueness of cyanobacteria blooms, which have consequences for remote sensing and bio-optical modeling. We found the cyanobacteria blooms in the western basin during our field work were dominated by Microcystis, while the waters in the adjacent central basin were dominated by Planktothrix. Chlorophyll concentrations ranged from 1 to over 135 ${mu}g/L$ across the study area with the highest concentrations associated with Microcystis in the western basin. We observed large, amorphous colonial Microcystis structures in the bloom area characterized by high phytoplankton absorption and high scattering coefficients with a mean particle backscatter ratio at 443nm greater than 0.03, which is higher than other plankton types and more comparable to suspended inorganic sediments. While our samples contained mixtures of both, our analysis suggests high contributions to the measured scatter and backscatter coefficients from cyanobacteria. Our measurements provide new insights into the optical properties of cyanobacteria blooms, and indicate that current semi-analytic models are likely to have problems resolving a closed solution in these types of waters as many of our observations are beyond the range of existing model components. We believe that different algorithm or model approaches are needed for these conditions, specifically for phytoplankton absorption and particle backscatter components. From a remote sensing perspective, this presents a challenge not only in terms of a need for new algorithms, but also for determining when to apply the best algorithm for a given situation. These results are new in the sense that they represent a complete description of the optical properties of freshwater cyanobacteria blooms, and are likely to be representative of bloom conditions for other systems containing Microcystis cells and colonies.
机译:遥感观测越来越多地用于检测和量化淡水蓝细菌种群,但是这些群落在自然环境中固有的光学特性(对于生物光学算法而言是基础的)并不为人所知。为了弥合这一知识鸿沟,我们在2013年和2014年夏季测量了伊利湖西部蓝藻水华期间的光学特性。我们的测量重点是蓝藻水华的光学唯一性,这对于遥感和生物光学建模。我们发现,在野外工作期间,西部盆地的蓝藻水华主要由微囊藻引起,而邻近中部盆地的水域则由浮游藻类占主导。在整个研究区域中,叶绿素浓度范围从1到135 $ {μg/ L $以上,西部盆地中与微囊藻相关的浓度最高。我们在水华地区观察到大型的无定形殖民微囊藻结构,其特征是浮游植物吸收率高和散射系数高,在443nm处的平均粒子后向散射比大于0.03,这高于其他浮游生物类型,与悬浮的无机沉积物相比更具可比性。尽管我们的样本包含了两者的混合物,但我们的分析表明,蓝藻对测得的散射系数和反向散射系数的贡献很大。我们的测量结果为蓝藻水华的光学性质提供了新的见解,并表明当前的半分析模型可能难以解决这类水的封闭解,因为我们的许多观测结果都超出了现有模型的范围。我们认为,对于这些条件,特别是对于浮游植物吸收和粒子反向散射成分,需要不同的算法或模型方法。从遥感的角度来看,这不仅对新算法的需求提出了挑战,而且对于确定何时针对给定情况应用最佳算法也提出了挑战。这些结果是新的,因为它们代表了淡水蓝藻水华的光学特性的完整描述,并且很可能代表了其他包含微囊藻细胞和集落的系统的水华条件。

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