PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników

Czasopismo

2003 | 45 | 3 |

Tytuł artykułu

Practical applications of the multi-component marine photosynthesis model (MCM)

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
This paper describes the applications and accuracy analyses of our multi-component model of marine photosynthesis, given in detail in Woźniak et al. (2003). We now describe an application of the model to determine quantities characterising the photosynthesis of marine algae, especially the quantum yield of photosynthesis and photosynthetic primary production. These calculations have permitted the analysis of the variability of these photosynthesis characteristics in a diversity of seas, at different seasons, and at different depths. Because of its structure, the model can be used as the ‘marine part’ of a ‘satellite’ algorithm for monitoring primary production in the sea (the set of input data necessary for the calculations can be determined with remote sensing methods). With this in mind, in the present work, we have tested and verified the model using empirical data. The verification yielded satisfactory results: for example, the statistical errors in estimates of primary production in the water column for Case 1 Waters do not exceed 45%. Hence, this model is far more accurate than earlier, less complex models hitherto applied in satellite algorithms.

Wydawca

-

Czasopismo

Rocznik

Tom

45

Numer

3

Opis fizyczny

p.395-423,fig.,ref.

Twórcy

autor
  • Polish Academy of Sciences, Powstancow Warszawy 55, 81-712 Sopot, Poland
autor
autor
autor
autor

Bibliografia

  • Antoine D., Morel A., 1996, Oceanic primary production: 1. Adaptation of spectral light-photosynthesis model in view of application to satellite chlorophyll observations, Global Biogeochem. Cycles, 10 (1), 42–55.
  • Dera J., 1995, Underwater irradiance as a factor affecting primary production, Diss. and monogr., Inst. Oceanol. PAS, Sopot, 7, 110 pp.
  • Ficek D., 2001, Modelling the quantum yield of photosynthesis in different marine basins, Rozpr. i monogr., Inst. Oceanol. PAN, Sopot, 14, 224 pp., (in Polish).
  • Ficek D., Ostrowska M., Kuzio M., Pogosyan S. I., 2000a, Variability of the portion of functional PS2 reaction centres in the light of a fluorometric study, Oceanologia, 42 (2), 243–249.
  • Ficek D., Woźniak B., Majchrowski R., Ostrowska M., 2000b, Influence of nonphotosynthetic pigments on the measured quantum yield of photosynthesis, Oceanologia, 42 (2), 231–242.
  • Gershanovich D. E., Muromtsev A.M., 1982, Oceanological principles of the biological productivity of the world ocean, Gidrometeoizdat, Leningrad, 320 pp., (in Russian).
  • Kaczmarek S., Woźniak B., 1995, The application of the optical classification of waters in the Baltic Sea (Case 2 Waters), Oceanologia, 37 (2), 285–297.
  • 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, Inst. Okeanol. AN SSSR, Moskva, 336 pp., (in Russian).
  • Majchrowski R., 2001, Influence of irradiance on the light absorption characteristics of marine phytoplankton, Stud. i rozpr., Pom. Akad. Pedag., Słupsk, 1, 131 pp., (in Polish).
  • Majchrowski R., Ostrowska M., 1999, Modified relationships between the occurrence of photoprotecting carotenoids of phytoplankton and Potentially Destructive Radiation in the sea, Oceanologia, 41 (4), 589–599.
  • Majchrowski R., Ostrowska M., 2000, Influence of photo- and chromatic acclimation on pigment composition in the sea, Oceanologia, 42 (2), 157–175.
  • Majchrowski R., Woźniak B., Dera J., Ficek D., Kaczmarek S., Ostrowska M., Koblentz-Mishke O. I., 2000, Model of the ‘in vivo’ spectral absorption of algal pigments. Part 2. Practical applications of the model, Oceanologia, 42 (2), 191–202.
  • Morel A., 1991, Light and marine photosynthesis: a spectral model with geochemical and climatological implications, Prog. Oceanogr., 26, 263–306.
  • 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.
  • Morel A., Prieur L., 1977, Analysis of variations in ocean color, Limnol. Oceanogr., 22 (4), 709–722.
  • Ostrowska M., 2001, Using the fluorometric method for marine photosynthesis investigations in the Baltic, Rozpr. i monogr., Inst. Oceanol. PAN, Sopot, 15, 194 pp., (in Polish).
  • Ostrowska M., Majchrowski R., Matorin D.N., Woźniak B., 2000a, Variability of the specific fluorescence of chlorophyll in the ocean. Part 1. Theory of classical ‘in situ’ chlorophyll fluorometry, Oceanologia, 42 (2), 203–219.
  • Ostrowska M., Matorin D.N., Ficek D., 2000b, Variability of the specific fluorescence of chlorophyll in the ocean. Part 2. Fluorometric method of chlorophylla determination, Oceanologia, 42 (2), 221–229.
  • Timofeyev N.A., 1983, Radiation regime of the ocean, Nauk. Dumka, Kiyev, 247 pp., (in Russian).
  • Woźniak B., Dera J., 2000, Luminescence and photosynthesis of marine phytoplankton – a brief presentation of new results, Oceanologia, 42 (2), 137–156.
  • Woźniak B., Dera J., 2001, Bio-optical modelling of the photo-physiological properties of marine algae, pp. 39–49, Proc. St. Petersburg Int. Conf. ‘Current problems in optics of natural waters’ (ONW–2001), September 25–28, 2001.
  • Woźniak B., Dera J., Ficek D., Majchrowski R., Kaczmarek S., Ostrowska M., Koblentz-Mishke O. I., 1999, Modelling the influence of acclimation on the absorption properties of marine phytoplankton, Oceanologia, 41 (2), 187–210.
  • Woźniak B., Dera J., Ficek D., Majchrowski R., Kaczmarek S., Ostrowska M., Koblentz-Mishke O. I., 2000, Model of the ‘in vivo’ spectral absorption of algal pigments. Part 1. Mathematical apparatus, Oceanologia, 42 (2), 177–190.
  • Woźniak B., Dera J., Ficek D., Majchrowski R., OstrowskaM., Kaczmarek S., 2003, Modelling light and photosynthesis in the marine environment, Oceanologia, 45 (2), 171–245.
  • Woźniak B., Dera J., Ficek D., Ostrowska M., Majchrowski R., 2002a, Dependence of the photosynthesis quantum yield in oceans on environmental factors, Oceanologia, 44 (4), 439–459.
  • Woźniak B., Dera J., Ficek D., Ostrowska M., Majchrowski R., Kaczmarek S., Kuzio M., 2002b, The current bio-optical study of marine phytoplankton, Opt. Appl., 32 (4), 731–747.
  • Woźniak B., Dera J., Koblentz-Mishke O. I., 1992a, Bio-optical relationships for estimating primary production in the Ocean, Oceanologia, 33, 5–38.
  • Woźniak B., Dera J., Koblentz-Mishke O. I., 1992b, Modelling the relationship between primary production, optical properties, and nutrients in the sea, Ocean Optics 11, Proc. SPIE, 1750, 246–275.
  • Woźniak B., Dera J., Majchrowski R., Ficek D., Koblentz-Mishke O. I., Darecki M., 1997, ‘IOPAS initial model’ of marine primary production for remote sensing application, Oceanologia, 39 (4), 377–395.
  • Woźniak B., Dera J., Semovski S., Hapter R., Ostrowska M., Kaczmarek S., 1995a, Algorithm for estimating primary production in the Baltic by remote sensing, Stud. i Mater. Oceanol., 68, 91–123.
  • Woźniak B., Smekot-Wensierski W., Darecki M., 1995b, Semi-empirical modelling of backscattering and light reflection coefficients in WC1 seas, Stud. i Mater. Oceanol., 68, 61–90.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-3a852782-e8c4-47e0-b4ae-f1e94936f264
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.