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SIL Proceedings, 1922-2010
Internationale Vereinigung für Theoretische und Angewandte Limnologie: Verhandlungen
Volume 21, 1981 - Issue 1
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III. Lakes. 2. Europe

Primary production (oxygen) and chlorophyll relationships in Lake Ohrid, Yugoslavia

With 4 figures and 1 table in the text

Pages 492-499 | Published online: 01 Dec 2017

References

  • Allen, H. L. & Ocevski, B. T., 1976: Limnological studies in a large, deep, oligotrophic lake (Lake Ohrid, Yugoslavia). Evaluation of nutrient availability and control of phytoplankton production through in-situ bioassay procedures. — Arch. Hydrobiol. 77: 1–21.
  • Allen, H. L. & Ocevski, B. T. 1977: Limnological studies in a large, deep, oligotrophic lake (Lake Ohrid, Yugoslavia). A summary of nutritional radiobioassay responses of the pelagial phytoplankton. — Hydrobiologia 53: 49–54.
  • Bannister, T. T., 1974 a: Production equations in terms of chlorophyll concentration, quantum yield, and upper limit to production. — Limnol. Oceanogr. 19: 1–12.
  • Bannister, T. T. 1974 b: A general theory of steady state phytoplankton growth in a nutrient saturated mixed layer. — Limnol. Oceanogr. 19: 13–30.
  • Goldman, C. R. & Deamezaga, E., 1975: Spatial and temporal changes in the primary productivity of Lake Tahoe, California-Nevada between 1959 and 1971. — Verh. Internat. Verein. Limnol. 19: 812–825.
  • Goldman, C. R., Steeman-Nielsen, E., Vollenweider, R. A. & Wetzel, R. G., 1969: The 14C light and dark bottle technique. — In: Vollenweider, R. A. (ed.), A manual on methods for measuring primary production in aquatic environments. IBP Handbook 12: 20–23. Blackwell Sci. Pubi., Oxford, England.
  • Jenkin, P. M., 1937: Oxygen production by the diatom Coscinodiscus excentricus EHR. in relation to submarine illumination in the English Channel. — J. Mar. Biol. Assoc. U.K. 22: 301–343.
  • Ocevski, B. T. & Allen, H. L., 1977: Limnological studies in a large, deep, oligotrophic lake (Lake Ohrid, Yugoslavia). Seasonal and annual primary production dynamics of the pelagial phytoplankton. — Arch. Hydrobiol. 79: 429–440.
  • Ocevski, B. T. & Allen, H. L. 1978: Phytoplankton production, physico-chemical conditions, and nutrient relationships in Lake Ohrid, Yugoslavia. — Verh. Internat. Verein. Limnol. 20: 1078–1084.
  • Rodhe, W., 1965: Standard correlations between pelagic photosynthesis and light. — In: Goldman, C. R. (ed.), Primary productivity in aquatic environments. Mem. 1st. Ital. Idrobiol. 18 (suppl.): 365–381; also Univ. Calif. Press.
  • Smith, V. H., 1979: Nutrient dependence of primary productivity in lakes. — Limnol. Oceanogr. 24: 1051–1064.
  • Tilzer, M. M., 1978: Predictions of productivity changes in Lake Tahoe at increasing phytoplankton biomass. — Verh. Internat. Verein. Limnol. 20: 407–413.
  • Vollenweider, R. A., 1974: A manual on methods for measuring primary production in aquatic environments. — IBP Handbook 12. Blackwell Sci. Publ., Oxford.
  • Vollenweider, R. A., Munawar, M. & Stadelmann, P., 1974: A comparative review of phytoplankton and primary production in the Laurentian Great Lakes. — J. Fish. Res. Bd. Canada 31: 739–762.
  • Wetzel, R. G., 1975: Limnology. — W. B. Saunders, Philadelphia, 743 pp.

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