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2002 | 44 | 3 |

Tytuł artykułu

Natural water fluorescence characteristics based on lidar investigations of a surface water layer polluted by an oil film; the Baltic cruise - Mai 2000

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Several sea and laboratory experiments have been carried out to detect and determine the fluorescence characteristics of seawater and its natural fluorescing components and to analyse the influence of oil in the surface water layer on the lidar-induced return signal. The aim of the laboratory investigations was to create a database of different natural water types and of water polluted with Petrobaltic oil. During the r/v ‘Oceania’ cruise in the southern Baltic Sea two lidar methods were applied simultaneously to detect and analyse the influence of the fluorescence emission of oil on the fluorescence spectrum of seawater. Detection of oil pollution can be used to correct the fluorescent factors of fluorescing components on the basis of natural seawater fluorescence spectra.

Wydawca

-

Czasopismo

Rocznik

Tom

44

Numer

3

Opis fizyczny

p.339-354,fig.,ref.

Twórcy

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

Bibliografia

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  • Babichenko S., Poryvkina L., Arikese V., Kaitala S., Kuosa H., 1993, Remote sensing of phytoplankton using laser-induced fluorescence, Remote Sens. Environ., 45, 43–50.
  • BristowM., Nielsen D., Bundy D., Furtek R., 1981, Use of water Raman emission to correct airborne laser fluorosensor data for effects of water optical attenuation, Appl. Opt., 20 (17), 2889–2906.
  • Dittman R.D., Hallett F.R., 1988, Remote sensing of phytoplankton by laser fluorosensor: effect of self-attenuation, Appl. Opt., 27, 3290–3294.
  • Drozdowska V., Kowalczuk P., 1999, Response of a lidar-induced fluorescence signal to yellow substance absorption, Oceanologia, 41 (4), 601–608.
  • Dudelzak A. E., Babichenko S., Poryvkina L., Saar K., 1991, Total luminescent spectroscopy for remote laser diagnostics of natural water conditions, Appl. Opt., 30, 453–463.
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  • Hoge F. E., Swift R.N., 1981, Airborne simultaneous spectroscopic detection of laser-induced water Raman backscatter and fluorescence of chlorophyll a and other naturally occurring pigments, Appl. Opt., 20 (23), 3197–3205.
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  • Otremba Z., 2000, The impact on the reflectance in VIS of a type of crude oil film floating on the water surface, Opt. Expr., 7 (3), 129–134.
  • Piskozub J., Drozdowska V., Irczuk M., 1998, A water extinction lidar system for detecting thin oil spills; preliminary results of field tests, Oceanologia, 40 (1), 3–10.
  • Piskozub J., Drozdowska V., Varlamov V., 1997, A lidar system for remote measurement of oil film thickness on sea surface, Proc. 4th Int. Conf. on Remote Sens. for Mar. and Coast. Environ., Florida, I, 386–392.
  • Piskozub J., Otremba Z., Drozdowska V., Król T., Stelmaszewski A., 1996, Oil content in the Baltic Seawater and possibilities of detection and identification by the lidar method, 20th Baltic Mar. Conf., Rønne, 73–82.
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  • Poryvkina L., Babichenko S., Kaitala S., Kuosa H., Shalapjonok A., 1994, Spectral fluorescence signatures in the characterisation of phytoplankton community composition, J. Plank. Res., 16, 1315–1327.
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Typ dokumentu

Bibliografia

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Identyfikator YADDA

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