Acta Optica Sinica, Volume. 41, Issue 6, 0601002(2021)
Estimation of Phytoplankton Pigment Concentration in the South China Sea from Hyperspectral Absorption Data
[3] Jeffrey S W, Wright S W, Zapata M[M]. Microalgal classes and their signature pigments, 3-77(2011).
[12] Kostadinov T S, Cabré A, Vedantham H et al. Inter-comparison of phytoplankton functional type phenology metrics derived from ocean color algorithms and Earth System Models[J]. Remote Sensing of Environment, 190, 162-177(2017).
[13] El Hourany R. Abboud-Abi Saab M, Faour G, et al. Estimation of secondary phytoplankton pigments from satellite observations using self-organizing maps (SOMs)[J]. Journal of Geophysical Research: Oceans, 124, 1357-1378(2019).
[14] Wolanin A, Soppa M, Bracher A. Investigation of spectral band requirements for improving retrievals of phytoplankton functional types[J]. Remote Sensing, 8, 871(2016).
[17] Xi H Y, Hieronymi M, Röttgers R et al. Hyperspectral differentiation of phytoplankton taxonomic groups: a comparison between using remote sensing reflectance and absorption spectra[J]. Remote Sensing, 7, 14781-14805(2015).
[20] Bracher A, Taylor M H, Taylor B et al. Using empirical orthogonal functions derived from remote-sensing reflectance for the prediction of phytoplankton pigment concentrations[J]. Ocean Science, 11, 139-158(2015).
[23] Hoepffner N, Sathyendranath S. Effect of pigment composition on absorption properties of phytoplankton[J]. Marine Ecology Progress Series, 73, 11-23(1991).
[27] Ye H P, Zhang B, Liao X H et al. Gaussian decomposition and component pigment spectral analysis of phytoplankton absorption spectra[J]. Journal of Oceanology and Limnology, 37, 1542-1554(2019).
[35] Chen J X, Huang B Q, Liu Y et al. Phytoplankton community structure in the transects across East China sea and northern South China sea determined by analysis of HPLC photosynthetic pigment signatures[J]. Advances in Earth Science, 21, 738-746(2006).
[36] Wang G F, Cao W X, Xu D Z et al. Effects of size structure and pigment composition of algal population on phytoplankton absorption coefficients in the South China Sea[J]. Acta Oceanologica Sinica, 29, 38-48(2007).
[38] Pan X J. Wong G T F, Ho T Y, et al. Remote sensing of picophytoplankton distribution in the northern South China Sea[J]. Remote Sensing of Environment, 128, 162-175(2013).
[40] Stramski D, Reynolds R A, Kaczmarek S et al. Correction of pathlength amplification in the filter-pad technique for measurements of particulate absorption coefficient in the visible spectral region[J]. Applied Optics, 54, 6763-6782(2015).
[43] Trees C C, Clark D K, Bidigare R R et al. Accessory pigments versus chlorophyll a concentrations within the euphotic zone: a ubiquitous relationship[J]. Limnology and Oceanography, 45, 1130-1143(2000).
[46] Xie Y Y, Huang B Q, Lin L Z et al. Photosynthetic parameters in the northern South China Sea in relation to phytoplankton community structure[J]. Journal of Geophysical Research: Oceans, 120, 4187-4204(2015).
Get Citation
Copy Citation Text
Guifen Wang, Yinxue Zhang, Wenlong Xu, Wen Zhou, Hualian Wu, Zhantang Xu, Wenxi Cao. Estimation of Phytoplankton Pigment Concentration in the South China Sea from Hyperspectral Absorption Data[J]. Acta Optica Sinica, 2021, 41(6): 0601002
Category: Atmospheric Optics and Oceanic Optics
Received: Sep. 14, 2020
Accepted: Nov. 9, 2020
Published Online: Apr. 7, 2021
The Author Email: Wang Guifen (guifenwang@hhu.edu.cn)