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Characterization of Optical Attenuation by Colored Dissolved Organic Matter (CDOM) in the Red Sea

机译:红海中有色溶解有机物(CDOM)的光学衰减特性

摘要

Optical properties of colored dissolved organic matter (CDOM) control the downward irradiance in the ultraviolet and visible range of the electromagnetic radiation. CDOM is a strong absorber in shorter wavelengths (ultraviolet light) with steeper spectral slopes in the open ocean. Despite the importance of CDOM in understanding physical and biogeochemical processes in the marine environment, in situ measurements of optical properties in the Red Sea are sparse. This study comprises CDOM absorption from two different instruments (i.e. a spectrophotometer and WET Labs ac-s sensor), and assesses the variations in optical properties of CDOM in the Red Sea using data collected in 2014 and 2015. Three global inversion algorithms (Garver-Siegel-Maritorena model - GSM, Quasi-Analytical Algorithm - QAA, and the Constrained Linear-Matrix inversion model - CLM) were applied to recent data collected in the Red Sea, providing the comparisonudat five key selected wavelengths (412, 443, 490, 510, and 555 nm) demonstrated that in situ aCDOM values were higher than the values predicted from the three inversion algorithms and leads to underestimating in situ measurements. This finding is consistent with the conclusion of Brewin et al. (2015) that overestimation ofudchlorophyll in the Red Sea could be due to excessive CDOM.
机译:有色溶解有机物(CDOM)的光学特性控制着电磁辐射在紫外线和可见光范围内的向下辐射。 CDOM是短波(紫外线)中的强吸收剂,在开放海洋中具有较陡的光谱斜率。尽管CDOM在理解海洋环境中的物理和生物地球化学过程方面很重要,但是在红海中对光学性质的原位测量仍然很少。这项研究包括从两种不同仪器(即分光光度计和WET Labs ac-s传感器)吸收CDOM的情况,并使用2014年和2015年收集的数据评估了红海中CDOM光学性质的变化。三种全球反演算法(Garver-将Siegel-Maritorena模型(GSM),准分析算法(QAA)和约束线性矩阵反演模型(CLM)应用于红海中收集的最新数据,提供比较 udad五个关键选定波长(412、443, 490、510和555 nm)证明了原位aCDOM值高于从三种反演算法预测的值,并导致低估了原位测量值。这一发现与Brewin等人的结论一致。 (2015年),红海中 udlpphyll的高估可能是由于过多的CDOM。

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