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首页> 外文期刊>Applied Optics >Potential impacts of nonalgal materials on water-leaving Sun induced chlorophyll fluorescence signals in coastal waters
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Potential impacts of nonalgal materials on water-leaving Sun induced chlorophyll fluorescence signals in coastal waters

机译:非藻类物质对沿海水域太阳离水诱导的叶绿素荧光信号的潜在影响

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摘要

It has been suggested that Sun induced chlorophyll fluorescence (SICF) signals could be used to estimate phytoplankton chlorophyll concentration and to investigate algal physiology from space. However, water-leaving SICF is also a product of the ambient light field. In coastal waters both algal and nonalgal materials affect the underwater light field. In this study we examine the independent impacts of varying loads of mineral suspended solids (MSS) and colored dissolved organic materials (CDOM) on water-leaving SICF signals using Hydrolight radiative transfer simulations. We show that SICF signals in coastal waters are strongly influenced by nonalgal materials. Increasing concentrations of CDOM and minerals can reduce the water-leaving SICF per unit chlorophyll by over 50% for the concentration ranges explored here (CDOM = 0 to 1 m~(-1) at 440 nm, MSS = 0 to 10 g m~(-3)). The moderate-resolution imaging spectroradiom-eter (MODIS) fluorescence line height algorithm is shown to be relatively unaffected by increasing CDOM, but performance is significantly degraded by mineral concentrations greater than 5 g m~(-3) owing to increased background radiance levels. The combination of these two effects means that caution is required for the interpretation of SICF signals from coastal waters.
机译:已经提出,太阳诱导的叶绿素荧光(SICF)信号可用于估计浮游植物叶绿素浓度并从空间研究藻类生理。但是,留水SICF也是环境光场的产物。在沿海水域,藻类和非藻类物质都会影响水下光场。在这项研究中,我们使用Hydrolight辐射转移模拟研究了各种矿物悬浮固体(MSS)和有色溶解有机物质(CDOM)的负载对水浸SICF信号的独立影响。我们表明,沿海水域的SICF信号受非藻类物质的强烈影响。在此处探讨的浓度范围内(440 nm处CDOM = 0至1 m〜(-1),MSS = 0至10 gm〜(),增加CDOM和矿物质的浓度可使单位叶绿素的持水SICF降低50%以上。 -3))。中等分辨率成像光谱辐射仪(MODIS)荧光谱线高度算法受CDOM增加的影响相对较小,但由于背景辐射水平升高,矿物质浓度大于5 g m〜(-3)时性能会显着降低。这两种影响的结合意味着在解释沿海水域的SICF信号时需要谨慎。

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