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Modelling the influence of acclimation on the absorption properties of marine phytoplankton

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
An algorithm for calculating the marine phytoplankton total spectral absorption coefficient and its components for particular groups of photosynthetic and photoprotecting pigments has been developed. The input data for the calculations are the concentrations of these groups of pigments and depth in the sea. Over 1400 sets of simultaneously measured phytoplankton absorption properties and pigment contents at different depths in various water types were applied in the modelling. Photo- and chromatic acclimation as well as the package effect of pigments in cells and its variation in different waters have been considered. The vertical profiles of the product CI d are also described.
Czasopismo
Rocznik
Strony
187--210
Opis fizyczny
Bibliogr. 33 poz., tab., wykr.
Twórcy
autor
autor
autor
autor
autor
  • Institute of Oceanology, Polish Academy of Sciences, Powstańców Warszawy 55, 81–712 Sopot, Poland, wozniak@iopan.gda.pl
Bibliografia
  • 1. Allali K., Bricaud A., Claustre H., 1997, Spatial variations in the chlorophyll-specific absorption coefficients of phytoplankton and photosynthetically active pigments in the equatorial Pacific, J. Geophys. Res., 102, 12413-12423.
  • 2. Babin M., Morel A., Claustre H., Bricaud A., Kolber Z., Falkowski P. G., 1996, Nitrogen- and irradiance-dependent variations of the maximum quantum yield of carbon fixation in eutrophic, mesotrophic and oligotrophic marine systems, Deep-Sea Res., 43, 1241-1272.
  • 3. Bidigare R., Ondrusek M. E., Morrow J. H., Kiefer D. A., 1990, In vivo absorption properties of algal pigments, Ocean Optics 10, Proc. SPIE, 1302, 290-302.
  • 4. Bricaud A., Babin M., Morel A., Claustre H., 1995, Variability in the chlorophyll-specific absorption coefficients of natural phytoplankton: analysis and parameterisation, J. Geophys. Res., 100, 13321-13332.
  • 5. Dera J., 1995, Underwater irradiance as a factor affecting primary production, Diss.and monogr., Inst. Oceanol. PAS, 7, 110 pp.
  • 6. Ficek D., 1999, Modelling of quantum yield of photosynthesis in various marine systems, Ph.D. thesis, Inst. Oceanol. PAN, (in Polish).
  • 7. Ficek D., Kuzio M., Ostrowska M., Spatial distribution of phytoplankton photosynthesis activity in different trophic types of sea, (in Polish), (in press).
  • 8. Hoepffner N., Sathyendranath S., 1991, Effect of pigment composition on absorption properties of phytoplankton, Mar. Ecol. Progr. Ser., 73 (1), 11-23.
  • 9. Hulst van de, 1981, Light scattering by small particles, Dover Publ. Inc., New York, 470 pp.
  • 10. Kaczmarek S., Ferrari G. M., 1996, Phytoplankton pigments absorption spectra, M. C. Ooms (ed.), (op. cit.), 421-472.
  • 11. Koblentz-Mishke O. I., Semenova M. A., 1975, Phytoplankton pigments of mesotrophic and eutrophic regions of the tropical Pacific, works of IO RAN 102, Nauka, Moskva, 131-139, (in Russian).
  • 12. Koblentz-Mishke O. I., Woźniak B., Ochakovskiy Yu. E. (eds.), 1985, Utilisation of solar energy in the photosynthesis of the Baltic and Black Sea phytoplankton, Izd. Inst. Okeanol. AN SSSR, Moskva, 336 pp., (in Russian).
  • 13. Koblentz-Mishke O. I., Belayeva G. A. (eds.), 1987, The ecosystems of the Baltic Sea in May–June 1984, Izd. Inst. Okeanol. AN SSSR, 439 pp., (in Russian).
  • 14. Koblentz-Mishke O. I., Woźniak B., Kaczmarek S., Konovalov B. V., 1995, Assimilation of light energy by marine phytoplankton. Part 1. Light absorption capacity of the Baltic and Black Sea phytoplankton, Oceanologia, 37 (2), 145-169.
  • 15. Kolber Z., Falkowski P. G., 1993, Use of active fluorescence to estimate phytoplankton photosynthesis in situ, Limnol. Oceanogr., 38 (8), 1646-1665.
  • 16. Konovalov B. V., Belayeva G. A., Bekasova O. D., Kosakowska A., 1990, Light-absorbing capacity of phytoplankton in the Gulf of Gdańsk in May 1987, Oceanologia, 28, 25-38.
  • 17. Konovalov B. V., 1992, Determination of light absorption coefficient by seston components using absorption spectrum on the membrane filter, Okeanologiya, 32, 588-593, (in Russian).
  • 18. Kornushenko G. A., Vedernikov V. I., Koblentz-Mischke O. I., Konovalov B. V., 1980, Results of thin-layer chromatography application for determination of carotenoids in Black sea phytoplankton, [in:] M. E. Vinogradov (ed.), (op. cit.), 127-131.
  • 19. Majchrowski R., 1999, Influence of irradiance on the marine phytoplankton light absorption characteristics, Ph.D. thesis, Inst. Oceanol. PAN, (in Polish).
  • 20. Morel A., Bricaud A., 1981, Theoretical results concerning light absorption in a discrete medium and application to specific absorption of phytoplankton, Deep-Sea Res., 28, 1375-1393.
  • 21. Morel A., Antoine D., Babin M., Dandonneau Y., 1996., Measured and modeled primary production in the northeast Atlantic (Eumeli JGOFS program): the impact of natural variations in photosynthetic parameters on model predictive skill, Deep-Sea Res., 43, 1273-1304.
  • 22. Olaizola M., 1996, High performance liquid chromatography, [in:] M. C. Ooms (ed.), (op. cit.), 363-382.
  • 23. Ooms M. C. (ed.), 1996, ULISSE (Underwater Light Seatruth Satellite Experiment) Data Catalogue, Commiss. Europ. Union Joint Res. Centre, Ispra, Italy, Spec. publ., 1.96.29, 506 pp.
  • 24. Paramonova L. I., 1971, Experience of the use of the thin-layer chromatography technique to divide phytoplankton pigments aboard ship, [in:] M. E. Vinogradov (ed.), (op. cit.), 88-91.
  • 25. Semenova M. A., 1975, Investigation of marine phytoplankton carotenoids, Ph.D. thesis, IB RAN, Leningrad, (in Russian).
  • 26. Tassan S., Ferrari G. M., 1995, An alternative approach to absorption measurements of aquatic particles retained on filters, Limnol. Oceanogr., 40 (8), 1347-1357. Vinogradov M. E., (ed.), 1971, Functioning of pelagic communities in the tropical regions of the ocean – materials of 44th cruise of r/v ‘Vityaz’, Nauka, Moskva, 271 pp., (in Russian).
  • 27. Vinogradov M. E., (ed.), 1980, Pelagic ecosystems in the Black Sea, Nauka, Moskva, 250 pp., (in Russian).
  • 28. Woźniak B., 1991, International ecological seminar. Application of physical methods (satellite and fluorescence) to studies of marine ecosystem (October 10-12, 1990, Sopot, Poland), Oceanologia, 30, 141-142.
  • 29. Woźniak B., Ostrowska M., 1990, Optical absorption properties of phytoplankton in various seas, Oceanologia, 29, 91-115.
  • 30. Woźniak B., Dera J., Koblentz-Mishke O. I., 1992a, Modelling the relationship between primary production, optical properties, and nutrients in the sea, Ocean Optics 11, Proc. SPIE, 1750, 246-275.
  • 31. Woźniak B., Dera J., Koblentz-Mishke O. I., 1992b, Bio-optical relationships for estimating primary production in the Ocean, Oceanologia, 33, 5-38.
  • 32. Woźniak B., Dera J., Semovski S., Hapter R., Ostrowska M., Kaczmarek S., 1995, Algorithm for estimating primary production in the Baltic by remote sensing, Stud. i Mater. Oceanol., 68, 91-123.
  • 33. Woźniak B., Dera J., Majchrowski R., Ficek D., Koblentz-Mishke O. I., Darecki M., 1997, IO PAS initial model of marine primary production for remote sensing application, Oceanologia, 39 (4), 397-395.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS8-0015-0009
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