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An Inverse Modeling Approach to Estimating Phytoplankton Pigment Concentrations from Phytoplankton Absorption Spectra

机译:从浮游植物吸收光谱估算浮游植物色素浓度的逆建模方法

摘要

Phytoplankton absorption spectra and High-Performance Liquid Chromatography (HPLC) pigment observations from the Eastern U.S. and global observations from NASA's SeaBASS archive are used in a linear inverse calculation to extract pigment-specific absorption spectra. Using these pigment-specific absorption spectra to reconstruct the phytoplankton absorption spectra results in high correlations at all visible wavelengths (r(sup 2) from 0.83 to 0.98), and linear regressions (slopes ranging from 0.8 to 1.1). Higher correlations (r(sup 2) from 0.75 to 1.00) are obtained in the visible portion of the spectra when the total phytoplankton absorption spectra are unpackaged by multiplying the entire spectra by a factor that sets the total absorption at 675 nm to that expected from absorption spectra reconstruction using measured pigment concentrations and laboratory-derived pigment-specific absorption spectra. The derived pigment-specific absorption spectra were further used with the total phytoplankton absorption spectra in a second linear inverse calculation to estimate the various phytoplankton HPLC pigments. A comparison between the estimated and measured pigment concentrations for the 18 pigment fields showed good correlations (r(sup 2) greater than 0.5) for 7 pigments and very good correlations (r(sup 2) greater than 0.7) for chlorophyll a and fucoxanthin. Higher correlations result when the analysis is carried out at more local geographic scales. The ability to estimate phytoplankton pigments using pigment-specific absorption spectra is critical for using hyperspectral inverse models to retrieve phytoplankton pigment concentrations and other Inherent Optical Properties (IOPs) from passive remote sensing observations.
机译:来自美国东部的浮游植物吸收光谱和高性能液相色谱(HPLC)颜料观测值以及来自NASA SeaBASS档案库的全局观测值用于线性逆计算,以提取特定于颜料的吸收谱。使用这些色素特异性吸收光谱来重建浮游植物吸收光谱,可以在所有可见波长(r(sup 2)从0.83至0.98)上产生高度相关性,并具有线性回归(斜率从0.8到1.1)。通过将整个光谱乘以一个将675 nm处的总吸收设置为预期值的因子,可以拆开总浮游植物吸收光谱,从而在光谱的可见部分获得更高的相关性(r(sup 2)从0.75到1.00)。使用测得的颜料浓度和实验室衍生的颜料特异性吸收光谱重建吸收光谱。在第二次线性逆计算中,将导出的色素特异性吸收光谱与总浮游植物吸收光谱一起使用,以估算各种浮游植物HPLC色素。在18个色域中估计和测量的颜料浓度之间的比较显示,对于7种颜料,叶绿素a和岩藻黄质的相关性很好(r(sup 2)大于0.5),并且具有很好的相关性(r(sup 2)大于0.7)。在更本地的地理范围内进行分析时,相关性越高。使用色素特异性吸收光谱估算浮游植物色素的能力对于使用高光谱逆模型从被动遥感观测中检索浮游植物色素浓度和其他固有光学性质(IOP)至关重要。

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