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2005 | 47 | 2 |

Tytuł artykułu

Diurnal variations in nitrogen, phosphorus and iron compounds in the Southern Baltic Sea

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Języki publikacji

EN

Abstrakty

EN
In order to assess their short-term variability, nutrient concentrations were measured at standard depths at 2 h intervals in the deepest region of the Gdańsk Deep during the first ten days of June 2001. The mean concentrations of nutrients in the euphotic zone were: NN (NO2 −, NO3 −, NH4 +) – 1.93 μmol dm−3, PO4 3− – 0.12 μmol dm−3 and Fetot – 0.11 μmol dm−3. During daylight hours, when the rate of assimilation was fastest, concentrations of nitrogen, phosphorus and iron compounds were very low. The phosphate concentration fell to a minimum (0.03 μmol dm−3) between 04:00 and 10:00 hrs, while total iron dropped to 0.01 μmol dm−3 between 10:00 and 16:00 hrs. Both levels were below the limiting values for phosphorus and iron. At night, concentrations of NO3 − and PO4 3− rose by 25%, those of NH4 + and Fetot by 35%. The mean molar ratios of NN:PO4 3− and Fetot:PO4 3− in the surface layer were subject to significant daily fluctuations. The molar NN:PO4 3− ratio was higher than the optimum value established for the Baltic Sea. Below the halocline, the concentrations of dissolved iron and phosphorus rose as a result of diffusion from sediments in response to changing redox conditions.

Wydawca

-

Czasopismo

Rocznik

Tom

47

Numer

2

Opis fizyczny

p.243-263,fig.,ref.

Twórcy

  • University of Gdansk, al.Marszalka Pilsudskiego 46, 81-378 Gdynia, Poland
autor
autor
autor
autor

Bibliografia

  • Anderson M.A., Morel F.M.M., 1982, The influence of aqueous iron chemistry on the uptake of iron by the coastal diatom Thalassiosira weissflogii, Limnol. Oceanogr., 27 (5), 789–813.
  • Balode M., Purina I., Bechemin C., Maestrini S.Y., 1998, Effects of nutrient enrichment on the growth rates and community structure of summer phytoplankton from the Gulf of Riga, Baltic Sea, J. Plankton Res., 20, 2251–2272.
  • Bianchi T., Engelhaupt E., Westman P., Andren T., Rolff C., Elmgren R., 2000, Cyanobacterial blooms in the Baltic Sea: natural or human-induced?, Limnol. Oceanogr., 45 (3), 716–726.
  • Brand L.E., Sunda W. G., Guillard R. R. L., 1983, Limitation of marine phytoplankton reproductive rates by zinc, manganese and iron, Limnol. Oceanogr., 28 (6), 1182–1198.
  • Brockmann U.H., Laane R.W., Postma H., 1990, Cycling of nutrient elements in the North Sea, Neth. J. Sea Res., 26 (2)–(4), 239–264.
  • Carman R., Jonsson P., 1991, Distribution patterns of different forms of phosphorus in some surifical sediments of the Baltic Sea, Chem. Geol., 90, 91–106.
  • Coale K.H., Fitzwater S.E., Gordon R.M., Johnson K. S., Barber R.T., 1996, Control of community growth and export production by upwelled iron in the equatorial Pacyfic Ocean, Nature, 379, 621–624.
  • Entsch B., Sim R.G., Hatcher B.G., 1983, Indications from photosynthetic components that iron is a limiting nutrient in primary producers on coral reefs, Mar. Biol., 73 (1), 17–30.
  • Falkowska L., 1998, Short-term changes in the hydrochemical constituents in the water column of the Gdańsk Deep (Baltic Sea) in spring. Part 2. Modelling of diel changes in nutrient concentrations in the euphotic layer, Oceanologia, 40 (2), 105–115.
  • Falkowska L., Burska D., Bolałek J., Roguszczak D., 1998, Short-term changes in the hydrochemical constituents in the water column of the Gdańsk Deep (Baltic Sea) in spring. Part 1. Nutrient and oxygen concentrations in relation to the density stratification, Oceanologia, 40 (2), 83–104.
  • Falkowska L., Latała A., 1995, Short-term variations in the concentrations of suspended particles, chlorophyll a and nutrients in the surface seawater layers of the Gdańsk Deep, Oceanologia, 37 (2), 249–284.
  • Fisher T.R., Harding L.W., Stanley D.W., Ward L.G., 1988, Phytoplankton, nutrients, and turbidity in the Chesapeake, Delaware, and Hudson River estuaries, Estuar. Coast. Shelf Sci., 27, 61–93.
  • Graneli E., Wallstrom K., Larsson U., Gran´eli W., Elmgren R., 1990, Nutrient limitation of primary production in the Baltic Sea area, Ambio, 19 (3), 142–151.
  • Grasshoff K., Ehrhardt M., Kremling K., 1983, Methods of seawater analysis, (2nd edn.) Verlag Chem., Weinheim, 63–97, 127–187.
  • Hellstrom T., 1998, Why nitrogen is not limiting production in the seas around Sweden, [in:] Effects of nitrogen in the aquatic environment, R. Swed. Acad. Sci., Stockholm, KVA Rep. 1, 11–22.
  • Hudson R. J.M., Morel F.M.M., 1993, Trace metal transport by marine microorganisms: implications of metal coordination kinetics, Deep-Sea Res., 40 (1), 129–151.
  • Hutchins D.A., Di Tullio G. R., Bruland K.W., 1993, Iron and regenerated production: evidence for biological iron recycling in two marine environments, Limnol. Oceanogr., 38 (6), 1242–1256.
  • Jansson B.O., Wilmot W., Wulff F., 1984, Coupling the subsystems – the Baltic Sea as a case study, [in:] Flows of energy and materials in marine ecosystems, Proc. NATO Conf. Ser. No 4, Vol. 13, Plenum Press, 549–595.
  • Jensen H. S., Mortensen P. B., Andersen F. Ø., Rasmussen E., Jensen A., 1995, Phosphorus cycling in a coastal marine sediment, Aarhus Bay, Denmark, Limnol. Oceanogr., 40 (5), 908–917.
  • Jonsson P., Carman R., Wulff F., 1990, Laminated sediments in the Baltic: a tool for evaluating nutrient mass balances, Ambio, 19, 152–158.
  • Kivi K., Kaitala S., Kuosa H., Kuparinen J., Leskinen E., Lignell R., Marcussen B., Tamminen T., 1993, Nutrient limitation and grazing control of the Baltic plankton community during annual succession, Limnol. Oceanogr., 38, 893–905.
  • Kullenberg G., 1982, Mixing in the Baltic Sea and implications for environment, [in:] Hydrodynamics of semi-enclosed seas, J. I. Nihpul (ed.), Elsevier Oceanogr. Ser., 34, 399–418.
  • Larsson U., Hajdu S., Walve J., Elmgren R., 2001, Baltic Sea nitrogen fixation estimated from the summer increase in upper mixed layer total nitrogen, Limnol. Oceanogr., 46 (4), 811–820.
  • Lewandowska J., Kosakowska A., 2004, Effect of iron limitation on cells of the diatom Cyclotella meneghiniana K¨utzing, Oceanologia, 46 (2), 269–287.
  • Łysiak-Pastuszak E., Drgas N., 2001a, Nitrogen compounds, [in:] Environmental conditions in the Polish zone of the southern Baltic in 2000, W. Krzymiński, E. Łysiak-Pastuszak & M. Miętus (eds.), Mater. Oddz. Mor. Inst. Meteorol. i Gosp. Wod., Gdynia, 102–113, (in Polish).
  • Łysiak-Pastuszak E., Drgas N., 2001b, Phosphorus compounds, [in:] Environmental conditions in the Polish zone of the southern Baltic in 2000, W. Krzymiński, E. Łysiak-Pastuszak & M. Miętus (eds.), Mater. Oddz. Mor. Inst. Meteorol. i Gosp. Wod., Gdynia, 89–96, (in Polish).
  • Moisander P.H., Steppe T. F., Hall N. S., Kuparinen J., Paerl H.W., 2003, Variability in nitrogen and phosphorus limitation for Baltic Sea phytoplankton during nitrogen-fixing cyanobacterial blooms, Mar. Ecol. Prog. Ser., 262, 81–95.
  • Morel F.M.M., Hudson R. J.M., 1985, The geobiological cycle of trace elements in aquatic systems: Redfield revisited, [in:] Chemical processes in lakes, W. Stumm (ed.), Wiley, New York, 251–281.
  • Olson R. J., 1981, Differential photoinhibition of marine nitrifying bacteria: a possible mechanism for the formation of the primary nitrite maximum, J. Mar. Res., 39, 227–238.
  • Pempowiak J., Chiffoleau J. F., Staniszewski A., 2000, The vertical and horizontal distribution of selected trace metals in the Baltic Sea off Poland, Estuar. Coast. Shelf Sci., 51 (1), 115–125.
  • Pilson M. E. Q., 1998, An introduction to the chemistry of the sea, Prentice Hall, Upper Saddle River, NJ, 431 pp.
  • Pohl C., Hennings U., Petersohn I., Siegel H., 1998, Trace metal budget, transport, modification and sink in the transition area between the Oder and Peene rivers and the southern Pomeranian Bight, Mar. Poll. Bull., 36 (8), 598–616.
  • Raimbault P., Pouvesle W., DiazF., Gracia N., Semp´er´e R., 1999, Wet-oxidation and automated calorimetry for simultaneous determination of organic carbon, nitrogen and phosphorus dissolved in seawater, Mar. Chem., 66 (3)–(4), 161–169.
  • Redfield A.C., Ketchum B.H., Richards F.A., 1963, The influence of organisms on the composition of seawater, [in:] The Sea, Vol. 2, M.N. Hill (ed.), Wiley, New York, 26–77.
  • Renk H., 1997, Primary production in Gulf of Gdańsk, Wyd. Uniw. Gd., Gdańsk, 85 pp., (in Polish).
  • Rhee G.-Y., Gotham I. J., 1980, Optimum N:P ratios and coexistence of planktonic algae, J. Phycol., 16, 486–489.
  • Rydin E., Hyenstrand P., Gunnerhed M., Blomqvist P., 2002, Nutrient limitation of cyanobacterial blooms: an enclosure experiment from the coastal zone of the northwest Baltic proper, Mar. Ecol. Prog. Ser., 239, 31–36.
  • Sen Gupta R., Koroleff F., 1973, A quantitative study of nutrient fraction and stoichiometric model of the Baltic, Estuar. Coast. Shelf Sci., 1, 336–360.
  • Shaffer G., 1987, Redfield ratios, primary production and organic carbon burial in the Baltic Sea, Deep-Sea Res., 34 (5)–(6), 769–784.
  • Stal L. J., Staal M., Villbrandt M., 1999, Nutrient control of cyanobacterial blooms in the Baltic Sea, Aquat. Microb. Ecol., 18, 165–173.
  • Sunda W. G., Huntsman S.A., 1995, Iron uptake and growth limitation in oceanic and coastal phytoplankton, Mar. Chem., 50, 189–206.
  • Tamminen T., 1990, Eutrophication and the Baltic Sea: studies on phytoplankton, bacterioplankton uptake of organic substrates, Arch. Hydrobiol. Beih. Ergebn. Limnol., 19, 267–279.
  • Trzosińska A., 1990, Nitrogen and phosphorus compounds, [in:] The Gulf of Gdańsk, A. Majewski (ed.), Wyd. Geol., Warszawa, 275–291, (in Polish).
  • Trzosińska A., Łysiak-Pastuszak E., 1996, Oxygen and nutrients in the southern Baltic Sea, Oceanol. Stud., 25 (1)–(2), 41–76.
  • Wells M. L., Trick C.G., 2004, Controlling iron availability to phytoplankton in iron-replete coastal waters, Mar. Chem., 86 (1)–(2), 1–13.
  • Wu J., Sunda W., Boyle E.A., Kal D. M., 2000, Phosphate depletion in the western North Atlantic Ocean, Science, 289 (5480), 759–762.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-e6da8314-ce95-4b5b-b8ac-3105c79374d6
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