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2000 | 42 | 2 |

Tytuł artykułu

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

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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.T o 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).T he results of simulated in situ primary production are in good agreement with the in situ measurements.

Wydawca

-

Czasopismo

Rocznik

Tom

42

Numer

2

Opis fizyczny

p.263-282,fig.,ref.

Twórcy

autor
  • Sea Fisheries Institute, H.Kollataja 1, 81-332 Gdynia, Poland
autor
autor

Bibliografia

  • Aalderink R.H., Jovin R., 1997, Estimation of the photosynthesis / irradiance (P/I) curve parameters from light and dark bottle experiments, J.Pl ank. Res., 19, 1713–1742.
  • Aertebjerg Nielsen G., Bresta A.M., 1984, Guidelines for the measurement of phytoplankton primary production, Baltic Mar.Bi ol. Pub., 1, 1–23.
  • 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.
  • 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.
  • BMEPC, 1988, Guidelines for the Baltic Monitoring Programme for the third stage, Baltic Mar.En vironm. Protect.C omm., Helsinki, 1–161.
  • Dera J., 1995, Underwater irradiance as a factor affecting primary production, Diss. and monogr., Inst.Ocean ol.P AS, Sopot, 7, 110 pp.
  • Evans C.A., O’Reilly J. E., Thomas J.P., 1987, A handbook for the measurement of chlorophyll a and primary productivity, BIOMASS Sci.S er., 8, 1–114.
  • Li W. K.W., Maestrini S.Y., 1993, Measurement of primary production from the molecular to global scale – Introduction, ICES Mar. Sci.Symp. Int.Co unc. Explor.S ea, Copenhagen, 197, 1–2.
  • Lohrenz S.E. , 1993, Estimation of primary production by the simulated in situ method, ICES Mar.S ci.S ymp.I nt. Counc. Explor. Sea, Copenhagen, 197, 159–171.
  • Parsons T.R., Takahashi M., 1973, Biological oceanographic processes, Pergamon Press, Oxford–New York, 177 pp.
  • 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.
  • 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.
  • Renk H., 1983, Light conditions, chlorophyll a distribution and primary production in the southern Baltic, Pol.Ecol .S tud., 9, 311–329.
  • Renk H., 1997, Primary production of the Gulf of Gdańsk, Wyd. Uniw. Gdańsk, Gdańsk, 84 pp., (in Polish).
  • Renk H., Ochocki S., 1998, Photosynthetic rate and light curves of phytoplankton in the southern Baltic, Oceanologia 40 (4), 331–344.
  • 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.
  • 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.
  • Sathyendranath S., Platt T., 1993, Remote sensing of water-column primary production, ICES Mar. Sci.S ymp.I nt.C ounc.Exp lor. Sea, Copenhagen, 197, 236–243.
  • Sorokin Ju.I ., 1960, On the methods of determination of primary production by the C14 technique, Trudy Wshekh.G idrobiol. Obshch., 10, 235–254, (in Russian).
  • Steele J.H., 1962, Environmental control of photosynthesis in the sea, Limnol. Oceanogr., 7, 137–149.
  • Steemann Nielsen E., 1965, On the determination of the activity in 14-C ampoules for measuring primary production, Limnol. Oceanogr., 10R Suppl., 247–252.
  • Steemann Nielsen E., 1952, The use of radio-carbon C-14 for measuring organic production in the sea, J.C ons. Int.Exp lor. Mer., 18, 117–140.
  • 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.S ymp.I nt.C ounc. Explor. Sea, Copenhagen, 197, 181–195.
  • Vollenweider R.A ., 1965, Calculation models of photosynthesis depth curves and some implications regarding day rate estimates in primary production measurements, Mem.I nst.I tal. Idrobiol., 18, 425–457.
  • 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.P AS, Earth Sci., 35, 71–89.
  • Woźniak B., Hapter R., Dera J., 1989, Light curves of marine plankton photosynthesis in the Baltic, Oceanologia, 27, 61–78.
  • 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.

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Bibliografia

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