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首页> 外文期刊>Progress in Natural Science >Spectral absorption coefficient of phytoplankton and its relation to chlorophyll a and remote sensing reflectance in coastal waters of southern China
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Spectral absorption coefficient of phytoplankton and its relation to chlorophyll a and remote sensing reflectance in coastal waters of southern China

机译:中国南方沿海水域浮游植物的光谱吸收系数及其与叶绿素a和遥感反射率的关系

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摘要

The spectral absorption coefficient of phytoplankton in coastal waters of southern China is investigated. Large variations in the absorption coefficient of phytoplankton are found. The absorption coefficient of phytoplankton at 443 nm ranged from 0. 006 m~(-1) to 0. 484 m~(-1), with an average value of 0.067 m~(-1). The chlorophyll-specific absorption coefficient of phytoplankton is also a bio-optical variable, with a spectrally averaged value of 0. 025 m~2 centre dot mg~(-1). The variations of chlorophyll-specific absorption coefficient are mainly attributed to pigment composition of phytoplankton and package effect. The chlorophyll-specific absorption coefficient of phytoplankton decreases with the increasing of chlorophyll a concentration. This relationship can be described by a power law function, with the parameters and the coefficient of determination r~2 as functions of wavelength, but the parameters describing the relationships in present study differed from that in Case 1 waters, thus theregional adjustment of model parameters was of particular significance for improving the accuracy of bio-optical algorithms for estimation of Chl-a concentration and primary production from remotely sensed data. Regression analysis of reflectance (R_(rs)) ratio and absorption coefficient of phytoplankton (alpha_(ph)) indicates a close correlation between them, which means that it is possible to retrieve absorption coefficient of phytoplankton using ocean color remote sensing data in optically complex coastal waters.
机译:研究了中国南方沿海地区浮游植物的光谱吸收系数。发现浮游植物的吸收系数有很大的变化。浮游植物在443 nm处的吸收系数为0. 006 m〜(-1)至0. 484 m〜(-1),平均值为0.067 m〜(-1)。浮游植物的叶绿素特异性吸收系数也是一个生物光学变量,其光谱平均值为0. 025 m〜2中心点mg〜(-1)。叶绿素比吸收系数的变化主要归因于浮游植物的色素组成和包装效应。浮游植物的叶绿素特异性吸收系数随叶绿素a浓度的增加而降低。这种关系可以通过幂律函数来描述,参数和确定系数r〜2是波长的函数,但是本研究中描述这种关系的参数与案例1的水域不同,因此模型参数的区域调整对于提高生物光学算法从遥感数据估算Chl-a浓度和一次生产中的准确性特别重要。反射率(R_(rs))与浮游植物吸收系数(alpha_(ph))的回归分析表明它们之间具有密切的相关性,这意味着可以使用光学复杂的海洋颜色遥感数据来检索浮游植物的吸收系数。沿海水域。

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