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Tytuł artykułu

In situ and simulated in situ primary production in the Gulf of Gdańsk

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The method discussed in this article allows the simulated in situ primary production in the southern Baltic to be evaluated. To estimate the daily primary production at a~given field station, the following parameters have to be measured: the coefficients AN and Es (constants from the photosynthesis-light curve for phytoplankton), and the scalar irradiance attenuation coefficient (k), chlorophyll a concentration (Chl) and daily irradiation just below the sea surface (PAR). The results of simulated in situ primary production are in good agreement with the in situ measurements.
Czasopismo
Rocznik
Strony
263--282
Opis fizyczny
Bibliogr. 27 poz., tab., wykr.
Twórcy
autor
  • Sea Fisheries Institute
autor
  • Sea Fisheries Institute
autor
  • Sea Fisheries Institute
Bibliografia
  • 1. Aalderink R. H., Jovin R., 1997, Estimation of the photosynthesis / irradiance (P/I) curve parameters from light and dark bottle experiments, J.Plank.Res., 19, 1713-1742.
  • 2. Aertebjerg Nielsen G., Bresta A. M., 1984, Guidelines for the measurement of phytoplankton primary production, Baltic Mar.Biol.Pub., 1, 1-23.
  • 3. Baretta V., Ebenhoh W., Raurdij P., 1995, The European Regional Seas Ecosystem Model, a complex marine ecosystem model, Neth.J.Sea Res., 33, 223-246.
  • 4. Bannister T.T., Laws E.A., 1980, Modelling phytoplankton carbon metabolism, [in:] Primary productivity in the sea, P.G. Falkowski (ed.), Plenum Press, New York–London, 243-258.
  • 5. BMEPC, 1988, Guidelines for the Baltic Monitoring Programme for the third stage, Baltic Mar.Environm.Protect.Comm., Helsinki, 1-161.
  • 6. Dera J., 1995, Underwater irradiance as a factor affecting primary production, Diss. and monogr., Inst.Oceanol.PAS, Sopot, 7, 110 pp.
  • 7. Evans C. A., O’Reilly J. E., Thomas J. P., 1987, A handbook for the measurement of chlorophyll a and primary productivity, BIOMASS Sci.Ser., 8, 1-114.
  • 8. Li W. K.W., Maestrini S. Y., 1993, Measurement of primary production from the molecular to global scale – Introduction, ICES Mar.Sci.Symp.Int.Counc. Explor.Sea, Copenhagen, 197, 1-2.
  • 9. Lohrenz S.E., 1993, Estimation of primary production by the simulated in situ method, ICES Mar.Sci.Symp.Int.Counc.Explor.Sea, Copenhagen, 197, 159-171.
  • 10. Parsons T. R., Takahashi M., 1973, Biological oceanographic processes, Pergamon Press, Oxford–New York, 177 pp.
  • 11. Platt T., Denman K. I., Jassby A. D., 1977, Modelling the productivity of phytoplankton, [in:] The sea, E.D. Goldberg (ed.), John Wiley, New York, 807-856.
  • 12. Platt T., Gallegos C. L., 1980, Modelling primary production, [in:] Primary productivity in the sea, P.G. Falkowski (ed.), Plenum Press, New York –London, 339-362.
  • 13. Renk H., 1983, Light conditions, chlorophyll a distribution and primary production in the southern Baltic, Pol.Ecol.Stud., 9, 311-329.
  • 14. Renk H., 1997, Primary production of the Gulf of Gdańsk, Wyd. Uniw. Gdańsk, Gdańsk, 84 pp., (in Polish).
  • 15. Renk H., Ochocki S., 1998, Photosynthetic rate and light curves of phytoplankton in the southern Baltic, Oceanologia 40 (4), 331-344.
  • 16. Renk H., Ochocki S., Chmielowski H., Gromisz S., Nakonieczny J., Pastuszak M., Zalewski M., 1999, Light curves of photosynthesis in the Pomeranian Bay, Oceanologia, 41 (3), 355-371.
  • 17. Sakshaug E., Bricaud A., Dandonneau Y., Falkowski P. G., Kiefer D. A., Legendre L., Morel A., Parslow J., Takahashi M., 1997, Parameters of photosynthesis: definitions, theory and interpretation of results, J. Plankt. Res., 19, 1637-1670.
  • 18. Sathyendranath S., Platt T., 1993, Remote sensing of water-column primary production, ICES Mar.Sci.Symp.Int.Counc.Explor.Sea, Copenhagen, 197, 236-243.
  • 19. Sorokin Ju.I., 1960, On the methods of determination of primary production by the C14 technique, Trudy Wshekh.Gidrobiol.Obshch., 10, 235-254, (in Russian).
  • 20. Steele J.H., 1962, Environmental control of photosynthesis in the sea, Limnol. Oceanogr., 7, 137-149.
  • 21. Steemann Nielsen E., 1965, On the determination of the activity in 14-C ampoules for measuring primary production, Limnol. Oceanogr., 10R Suppl., 247-252.
  • 22. Steemann Nielsen E., 1952, The use of radio-carbon C-14 for measuring organic production in the sea, J.Cons.Int.Explor.Mer., 18, 117-140.
  • 23. Tilzer M.M., H¨ase C., Conrad I., 1993, Estimation of in situ primary production from parameters of the photosynthesis-light curve obtained in laboratory incubators, ICES Mar. Sci. Symp. Int. Counc. Explor. Sea, Copenhagen, 197, 181-195.
  • 24. Vollenweider R.A., 1965, Calculation models of photosynthesis depth curves and some implications regarding day rate estimates in primary production measurements, Mem.Inst.Ital.Idrobiol., 18, 425-457.
  • 25. Woźniak B., 1987, A semi-empirical mathematical model of photosynthesis process in marine phytoplankton and optical method of estimating the global primary production in the sea, Bull.PAS, Earth Sci., 35, 71-89.
  • 26. Woźniak B., Hapter R., Dera J., 1989, Light curves of marine plankton photosynthesis in the Baltic, Oceanologia, 27, 61-78.
  • 27. Yentsch Ch.S., Lee R.W., 1966, A study of photosynthetic light reactions, and a new interpretation of sun and shade phytoplankton, J. Mar. Res., 24 (3), 319-337.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS8-0014-0071
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