Acta Optica Sinica, Volume. 30, Issue 11, 3090(2010)

Study on Partitioning of Phytoplankton Absorption Coefficient from Total Spectral Absorption in Taihu Lake

Le Chengfeng*, Li Yunmei, Zha Yong, Yin Bin, and Zhang Hong
Author Affiliations
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    References(21)

    [1] [1] H. R. Gordon, O. B. Brown, R. H. Evans et al.. A semianalytic radiance model of ocean color[J]. J. Geophys. Res., 1988, 93(D9): 10909~10924

    [2] [2] Zhao Qiaohua, Qin Boqiang. Spectral absorption characteristic of algae and discrimination of the absorption spectrum of mixed algae[J]. Acta Scientiae Circumstantiae, 2008, 28(2): 313~318

    [3] [3] R. Martínez-Guijarro, I. Romero, M. Pachés et al.. Determination of phytoplankton composition using absorption spectra[J]. Talanta, 2009, 78(3): 814~819

    [4] [4] Zhang Qianqian, Wang Lei, Lei Shuhua et al.. Characteristics of absorption spectral of phytoplankton[J]. Spectrosc. Spectral Anal., 2006, 26(9): 1676~1680

    [5] [5] D. F. Millie, O. S. Schofield, G. J. Kirkpatrick et al.. Detection of harmful algal blooms using phytopigments and absorption signatures: a case study of the Florida red tide dinoflagellate, gymnodinium breve[J]. Limno. Oceanogr., 1997, 42(5, part2): 1240~1251

    [6] [6] J. Marra, C. C. Trees, J. E. O′Reilly. Phytoplankton pigment absorption: a strong predictor of primary productivity in the surface ocean[J]. Deep-Sea Res. pt. Ⅰ, 2007, 54(2): 155~163

    [7] [7] B. G. Mitchell. Algorithms for determining the absorption coefficient of aquatic particulates using the quantitative filter technique (QFT)[C]. SPIE, 1990, 1302: 137~148

    [8] [8] R. R. Bidigare, M. E. Ondrusek. In vivo absorption of algal pigments[C]. SPIE, 1990, 1302: 290~302

    [9] [9] D. Ficek, S. Kaczmarek, J. Stoń-Egiert et al.. Spectra of light absorption by phytoplankton pigments in the Baltic; conclusions to be drawn from a Gaussian analysis of empirical data[J]. Oceanologia, 2004, 46(4): 533~555

    [10] [10] C. Roesler, M. J. Perry. Modeling in situ phytoplankton absorption from total absorption spectra in productive inland marine waters[J]. Limnol. Oceanogr, 1989, 34(8): 1510~1523

    [11] [11] A. Bricaud, D. Stramski. Spectral absorption coefficients of living phytoplankton and nonalgal biogenous matter: a comparison between the Peru upwelling area and the Sargasso Sea[J]. Limnol. Oceanogr., 1990, 35(3): 562~582

    [12] [12] Zhao Qiaohua, Zhang Yunlin, Qin Boqiang. Partitioning spectral absorption of particulate matter in Meiliang Bay of Lake Taihu[J]. J. Lake Sci., 2006, 18(4): 356~362

    [13] [13] Y. L. Zhang, M. L. Liu, M. A. V. Dijk et al.. Measured and numerically partitioned phytoplankton spectral absorption coefficients in inland waters[J]. J. Plankton Res., 2009, 31(3): 311~323

    [14] [14] Z. P. Lee, K. L. Carder, R. A. Arnone. Deriving inherent optical properties from water color: a multiband quasi-analytical algorithm for optically deep waters[J]. Appl. Opt., 2002, 41(27): 5755~5772

    [15] [15] C. F. Le, Y. M. Li, Y. Zha et al.. Validation of a quasi-analytical algorithm for highly turbid eutrophic water of Meiliang Bay in Taihu Lake, China[J]. IEEE Trans. Geosci. Remote Sens., 2009, 47(8): 2492~2500

    [16] [16] H. Loisel, D. Stramski. Estimation of the inherent optical properties of natural waters from the irradiance attenuation coefficient and reflectance in the presence of Raman scattering[J]. Appl. Opt., 2000, 39(18): 3001~3011

    [17] [17] Zhan Haigang, Shi Ping, Chen Chuqun. A Bayesian based quasi-analytical algorithm for retrieved of inherent optical properties from ocean color[J]. Chin. Sci. Bull., 2005, 50(23): 2770~2777

    [18] [18] R. M. Pope, E. S. Fry. Absorption spectrum (380~700 nm) of pure water. II. Integrating cavity measurements[J]. Appl.Opt., 1997, 36(33): 8710~8723

    [19] [19] K. Oubelkheir, H. Claustre, A. Bricaud et al.. Partitioning total spectral absorption in phytoplankton and colored detrital material contributions[J]. Limnol. Oceanogr.: Meth., 2007, 5: 384~395

    [20] [20] Zhang Yunlin, Wu Shengcai, Qin Boqiang et al.. Absorption of light by chromophoric dissolved organic matter (CDOM) in Meiliang Bay of Taihu Lake[J]. China Environ. Sci., 2004, 24(4): 405~409

    [21] [21] Sun Deyong, Li Yunmei, Huang Jiazhu et al.. Spectral absorption characteristics and slope coefficients analysis of in-water constituents in Meiliang Bay of Lake Taihu in the summer season[J]. Acta Ecologica Sinica, 2008, 28(2): 749~760

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    Le Chengfeng, Li Yunmei, Zha Yong, Yin Bin, Zhang Hong. Study on Partitioning of Phytoplankton Absorption Coefficient from Total Spectral Absorption in Taihu Lake[J]. Acta Optica Sinica, 2010, 30(11): 3090

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    Paper Information

    Category: Atmospheric Optics and Oceanic Optics

    Received: Oct. 10, 2009

    Accepted: --

    Published Online: Nov. 16, 2010

    The Author Email: Chengfeng Le (lcf320@126.com)

    DOI:10.3788/aos20103011.3090

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