25
Views
0
CrossRef citations to date
0
Altmetric
Original Articles

Estimation of phytoplankton concentration from downwelling irradiance measurements in water

Pages 193-207 | Published online: 14 Mar 2013

References

  • Albert, A., Gege, P. 2006. Inversion of irradiance and remote sensing reflectance in shallow water between 400 and 800 nm for calculations of water and bottom properties. Appl. Opt. 45: 2331-2343.
  • Antoine, D., Siegel, D.A., Kostadinov, T., Maritorena, S., Nelson, N.B., Gentili, B., Vellucci, V., Guillocheau, N. 2011. Variability in optical particle backscattering in contrasting bio-optical oceanic regimes. Limnol. Oceanogr. 56: 955-973.
  • Babin, M., Morel, A., Fournier-Sicre, V., Fell, F., Stramski, D. 2003a. Light scattering properties of marine particles in coastal and open ocean waters as related to the particle mass concentration. Limnol. Oceanogr. 48: 843-859.
  • Babin, M., Stramski, D., Ferrari, G. M., Claustre, H., Bricaud, A., Obolensky, G., Hoepffner, N. 2003b. Variations in the light absorption coefficients of phytoplankton, nonalgal particles, and dissolved organic matter in coastal waters around Europe. J. Geophys. Res., 108, C7.
  • Bidigare, R.R. Ondrusek, M.E. Morrow J.H., Kiefer, D.A. 1990. In vivo absorption of algal pigments. In: Spinrad, R., ed. Ocean optics X, SPIE, Bellingham, WA, pp. 290-302.
  • Binding, C.E., Jerome, J.H., Bukata, R.P., Booty, W.G. 2008. Spectral absorption properties of dissolved and particulate matter in Lake Erie. Remote Sens. Environ. 112:1702-1711.
  • Bricaud, A., Morel, A., Prieur, L. 1981. Absorption by dissolved organic matter of the sea (yellow substance) in the UV and visible domains. Limnol. Oceanogr. 26: 43-53.
  • Bowers, D.G., Evans, D., Thomas, D.N., Ellis, K., le, B., Williams, P.J. 2004. Interpreting the colour of an estuary. Estuarine, Coastal Shelf Sci. 59: 13-20.
  • Buiteveld, H., Hakvoort, J.H.M., Donze, M. 1994. The optical properties of pure water. SPIE Vol. 2258, Ocean Optics XII, 174-183.
  • Carder, K.L., Harvey, G.R., Ortner, P.B. 1989. Marine humic and fulvic acids: their effects on remote sensing of ocean chlorophyll. Limnol. Oceanogr. 34: 68-81.
  • Chami, M., Shybanov, E.B., Churilova, T.Y., Khomenko, G.A., Lee, M.E.-G., Martynov, O.V., Berseneva, G.A., Korotaev, G.K. 2005. Optical properties of the particles in the Crimea coastal waters (Black Sea). J. Geophys. Res. 110: C11020. doi:10.1029/2005JC003008.
  • Dall'Olmo, G., Gitelson, A.A., Rundquist, D.C., Leavitt, B., Barrow, T., Holz, J. 2005. Assessing the potential of SeaWiFS and MODIS for estimating chlorophyll concentration in turbid productive waters using red and near-infrared bands. Remote Sens. Environ. 96: 176-87.
  • Dekker, A.G., Peters, S.W.M. 1993. The use of the Thematic Mapper for the analysis of eutrophic lakes: A case study in The Netherlands. Int. J. Remote Sens. 14: 799-822.
  • Dera, J., Stramski, D. 1993. Focusing of sunlight by sea surface waves: new results from the Black Sea. Oceanologia 34: 13-25.
  • Gege, P. 1994. Gew-ässeranalyse mit passiver Fernerkundung: Ein Modell zur Interpretation optischer Spektralmessungen. Ph.D. Thesis. DLR-Forschungsbericht 1994-15, 171 pp.
  • Gege, P. 1998. Characterization of the phytoplankton in Lake Constance for classification by remote sensing. In: B-äuerle, E., Gaedke, U., eds. Lake Constance—Characterisation of an ecosystem in transition. Archiv für Hydrobiologie 53, pp. 179-193.
  • Gege, P. 2000. Gaussian model for yellow substance absorption spectra. Ocean Optics XV Conference, October 16-20, 2000, Monaco.
  • Gege, P. 2004a. The water color simulator WASI: an integrating software tool for analysis and simulation of optical in situ spectra. Comput. Geosci. 30: 523-532.
  • Gege, P. 2004b. Improved method for measuring Gelbstoff absorption spectra. Proc. Ocean Optics XVII, Fremantle, West Australia.
  • Gege, P., Albert, A. 2006. A tool for inverse modeling of spectral measurements in deep and shallow waters. In: Richardson, L.L., LeDrew, E.F., eds. Remote sensing of aquatic coastal ecosystem processes: science and management applications. Springer, pp. 81-109.
  • Gege, P. 2012. Analytic model for the direct and diffuse components of downwelling spectral irradiance in water. Applied Optics 51: 1407-1419.
  • Gege, P., Pinnel, N. 2011. Sources of variance of downwelling irradiance in water. Appl. Opt. 50: 2192-2203.
  • Gitelson, A.A., Keydan, G., Shishkin, V. 1985. Inland waters quality assessment from satellite data in visible range of the spectrum. Sov. Remote Sens. 6: 28-36.
  • Gitelson, A.A., Gritz, U., Merzlyak, M.N. 2003. Relationships between leaf chlorophyll content and spectral reflectance and algorithms for non-destructive chlorophyll assessment in higher plant leaves. J. Plant Physiol. 160: 271-82.
  • Gitelson, A.A., Viña, A., Ciganda, V., Rundquist, D.C., Arkebauer, T.J. 2005. Remote estimation of canopy chlorophyll content in crops. Geophys. Res. Lett. 32: L08403.
  • Gitelson, A.A., Gurlin, D., Moses, W.J., Barrow, T. 2009. A bio-optical algorithm for the remote estimation of the chlorophyll-a concentration in case 2 waters. Environ. Res. Lett. 4: 1-5.
  • Gilerson, A.A., Gitelson, A.A., Zhou, J., Gurlin, D., Moses, W., Ioannou, I., Ahmed, S.A. 2010. Algorithms for remote estimation of chlorophyll-a in coastal and inland waters using red and near infrared bands. Opt. Express 18: 24109-24125.
  • Gordon, H., Morel, A. 1983. Remote assessment of ocean color for interpretation of satellite visible imagery. A review. Springer, New York, 144 pp.
  • Gregg, W.W., Carder, K.L. 1990. A simple spectral solar irradiance model for cloudless maritime atmospheres. Limnol. Oceanogr. 35: 1657-1675.
  • Grötsch, P., Gege, P. 2012. Determination of sensor depth from downwelling irradiance measurements. Proc. IGARSS, Munich, Germany, July 22-27, 2012.
  • Gurlin, D., Gitelson, A.A., Moses, W.J. 2011. Remote estimation of chl-a concentration in turbid productive waters—return to a simple two-band NIR-red model? Remote Sens. Environ. 115: 3479-3490.
  • Heege, T. 2000. Flugzeuggestützte Fernerkundung von Wasserinhaltsstoffen am Bodensee. Ph.D. thesis. DLR-Forschungsbericht 2000-40, 134 pp.
  • Heege, T., Fischer, J. 2004. Mapping of water constituents in Lake Constance using multispectral airborne scanner data and a physically based processing scheme Can. J. Remote Sens. 30: 77-86.
  • Hieronymi, M., Macke, A. 2012. On the influence of wind and waves on underwater irrradiance fluctuations. Ocean Science 8: 455-471.
  • IOCCG. 2006. Remote sensing of inherent optical properties: fundamentals, tests of algorithms, and applications. Lee, Z.-P., Reports of the International Ocean-Colour Coordinating Group, No. 5, IOCCG, Dartmouth, Canada.
  • Kirk, J.T.O. 1994. Light and photosynthesis in aquatic ecosystems, 2nd ed. Cambridge University Press.
  • Kou, L., Labrie, D., Chylek, P. 1993. Refractive indices of water and ice in the 0.65-2.5μm spectral range. Appl. Optics 32: 3531-3540.
  • Laanen, M. 2007. Yellow matters—improving the remote sensing of coloured dissolved organic matter in inland freshwaters. Ph.D. thesis. Vrije Universiteit Amsterdam, 267 pp.
  • Lee, Z.P., Carder, K.L., Mobley, C.D., Steward, R.G., Patch, J.S. 1999. Hyperspectral remote sensing for shallow waters: 2. Deriving bottom depths and water properties by optimization. Appl. Opt. 38: 3831-3843
  • Miksa, S., Gege, P., Heege, T. 2004. Investigation on the capability of CHRIS-PROBA for monitoring of water constituents in Lake Constance compared to MERIS. Proc. 2nd CHRIS-PROBA workshop, Frascati, Italy, April 28-30, 2004.
  • Morel, A. 1988. Optical modeling of the upper ocean in relation to ist biogenous content (case I waters). J. Geophys. Res. 93: 10,749-10,768.
  • Morel, A., Maritorena, S. 2001. Bio-optical properties of oceanic waters: A reappraisal. J. Geophys. Res. 106: 7163-7180.
  • Moses, W.J., Gitelson, A.A., Berdnikov, S., Povazhnyy, V. 2009. Estimation of chlorophyll-a concentration in case II waters using MODIS and MERIS data—successes and challenges. Environ. Res. Lett. 4: 045005.
  • Mueller, J.L. 2003. In-water radiometric profile mMeasurements and data analysis protocols. In: Mueller, J.L., Fargion, G.S., McClain, C.R., eds. Ocean optics protocols for satellite ocean color sensor validation, Revision 4, Volume III, NASA, pp. 7-20.
  • Nusch, E. 1980. Comparison of different methods for chlorophyll and phaeopigment determination. Archiv für Hydrobiologie, Special issues: Advances in Limnology, Vol. 14: 14-36.
  • O'Reilly, J.E., Maritorena, S., Mitchell, B.G., Siegel, D.A., Carder, K.L., Garver, S.A., Kahru, M., McClain C. 1998. Ocean color chlorophyll algorithms for SeaWiFS. J. Geophys. Res., 103(C11): 24,937-24,953.
  • Pinnel, N. 2007. A method for mapping submerged macrophytes in lakes using hyperspectral remote sensing. PhD thesis. Technical University Munich, 165 pp.
  • Robinson, I.S. 2004. Measuring the Oceans from Space. Springer.
  • Rowan, K.S. 1989. Photosynthetic pigments of algae. Cambridge University Press.
  • Schalles, J.F. 2006. Optical remote sensing techniques to estimate phytoplankton chlorophyll a concentrations in coastal waters with varying suspended matter and CDOM concentrations. In: Richardson, L.L., LeDrew, E.F. eds. Remote Sensing of Aquatic Coastal Ecosystem Processes: Science and Management Applications. Springer, pp. 27-79.
  • Schwarz, J.N., Kowalczuk, P., Kaczmarek, S., Cota, G.F., Mitchell, B.G., Kahru, M., Chavez, F.P., Cunningham, A., McKee, D., Gege, P., Kishino, M., Phinney, D.A., Raine, R. Two models for absorption by coloured dissolved organic matter (CDOM). Oceanologia 44: 209-241.
  • Tilzer, M. 1983. The importance of fractional light absorption by photosynthetic pigments for phytoplankton productivity in Lake Constance. Limnol. Oceanogr., 28: 833-846.
  • Yacobi, Y.Z., Moses, W.J., Kaganovsky, S., Sulimani, B., Leavitt, B.C., Gitelson, A.A. 2010. Chlorophyll a in turbid productive waters: testing the limits of NIR-Red algorithms. Proc. ‘ESA Living Planet Symposium’, Bergen, Norway 28 June-2 July 2010 (ESA SP-686, December 2010)
  • Yacobi, Y.Z., Moses, W.J., Kaganovsky, S., Sulimani, B., Leavitt, B.C., Gitelson, A.A. 2011. NIR-red reflectance-based algorithms for chlorophyll-a estimation in mesotrophic inland and coastal waters: Lake Kinneret case study. Water research 45: 2428-2436.
  • Zaneveld, J.R.V., Boss, E., Barnard, A. 2001. Influence of surface waves on measured and modeled irradiance profiles. Appl. Opt. 40: 1442-1449.
  • Zaneveld, J.R.V., Moore, C., Barnard, A.H., Walsh, I., Twardowski, M., Chang, G.C. 2004. Correction and analysis of spectral absorption data taken with the WET Labs AC-S. Proc. Ocean Optics XVII Conference, Fremantle, Australia, October 25-29, 2004.
  • Zepp, R.G., Schlotzhauer, P.F. 1981. Comparison of photochemical behaviour of various humic substances in water: III. Spectroscopic properties of humic substances. Chemosphere 10: 479-486.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.