Optical models have been proposed to relate spectral variations in the beam attenuation (c) and optical backscattering (b) coefficients to marine particle size distributions (PSDs). However, due to limited PSD data, particularly in the open ocean, optically derived PSDs suffer from large uncertainties and we have a poor empirical understanding of the drivers of spectral c and b coefficients. Here we evaluated PSD optical proxies and investigated their drivers by analyzing an unprecedented dataset of co-located PSDs, phytoplankton abundances and optical measurements collected across the upper 500 m of the Atlantic Ocean. The spectral slope of c was correlated (r>0.59) with the slope of the PSD only for particles with diameters >1 µm and also with eukaryotic phytoplankton concentrations. No significant relationships between PSDs and the spectral slope of b were observed. In the upper 200 m, the b spectral slope was correlated to the light absorption by particles (a; r<-0.54) and to the ratio of cyanobacteria to eukaryotic phytoplankton. This latter correlation was likely the consequence of the strong relationship we observed between a and the concentration of eukaryotic phytoplankton (r=0.83).
Drivers of spectral optical scattering by particles in the upper 500 m of the Atlantic Ocean
Organelli Emanuele
Primo
;
2020
Abstract
Optical models have been proposed to relate spectral variations in the beam attenuation (c) and optical backscattering (b) coefficients to marine particle size distributions (PSDs). However, due to limited PSD data, particularly in the open ocean, optically derived PSDs suffer from large uncertainties and we have a poor empirical understanding of the drivers of spectral c and b coefficients. Here we evaluated PSD optical proxies and investigated their drivers by analyzing an unprecedented dataset of co-located PSDs, phytoplankton abundances and optical measurements collected across the upper 500 m of the Atlantic Ocean. The spectral slope of c was correlated (r>0.59) with the slope of the PSD only for particles with diameters >1 µm and also with eukaryotic phytoplankton concentrations. No significant relationships between PSDs and the spectral slope of b were observed. In the upper 200 m, the b spectral slope was correlated to the light absorption by particles (a; r<-0.54) and to the ratio of cyanobacteria to eukaryotic phytoplankton. This latter correlation was likely the consequence of the strong relationship we observed between a and the concentration of eukaryotic phytoplankton (r=0.83).File | Dimensione | Formato | |
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