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Determining the impact of non-algal materials on water-leaving solar stimulated fluorescence signals in coastal waters

机译:确定非藻类材料对沿海水域浇水太阳刺激荧光信号的影响

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Solar stimulated fluorescence (SSF) signals have been identified as a diagnostic identifier for phytoplankton populations and efforts are underway to relate these signals to algal physiology. However, in coastal waters one must also take into account the effect of algal and non-algal materials on the underwater light field as this could have an impact on fluorescence excitation and propagation to the sea surface. In this study we examine the impact of varying loads of mineral particles and colored dissolved organic materials (CDOM) on water-leaving SSF signals using Hydrolight radiative transfer simulations. We assess the impact of algal and non-algal absorption and scattering on the production and propagation of SSF signals using realistic ranges of material concentrations and specific inherent optical properties (IOPs) derived from in situ data. We show that SSF signals in coastal waters are profoundly dependent on underwater light climates that are, in turn, strongly influenced by non-algal materials.
机译:已经鉴定了太阳刺激的荧光(SSF)信号作为浮游植物群体的诊断标识符,并且正在进行努力以将这些信号与藻类生理相关。然而,在沿海水域中,还必须考虑到藻类和非藻类材料对水下灯场的影响,因为这可能会对荧光激发和海面传播产生影响。在这项研究中,我们使用水解辐射转移模拟来检查不同含量的矿物颗粒和有色溶解有机物质(CDOM)对剩余的SSF信号的影响。我们评估使用从原位数据衍生的实际材料浓度和特定的固有光学性质(IOPS)的实际范围的SSF信号的产生和传播的影响和传播的影响和传播的藻类和非藻类吸收和散射的影响。我们表明沿海水域中的SSF信号深刻地依赖于水下光气,反过来又受到非藻类材料的强烈影响。

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