Submit an Article
Become a reviewer
Vol 149
Pages:
117-120
Download volume:

Remote fluorimetric monitoring of oil pollution on water surface

Authors:
V. M. Sidorenko1
M. D. Magomedov2
P. G. Ogneva3
About authors
  • 1 — St. Petersburg Electrotechnical University
  • 2 — St. Petersburg Electrotechnical University
  • 3 — St. Petersburg Electrotechnical University
Date submitted:
2000-10-02
Date accepted:
2000-11-02
Date published:
2001-05-01

Abstract

A method for remote determination of oil film thickness on water surface using Iidar fluorimetric instrument has been developed. To use this method in real conditions it is necessary to determine the type of oil on the basis of remote measurement of the fluorescence spectral band shape. However, laboratory studies have shown that the fluorescence spectra of true oil differ from those of an oil film on the water surface. This difference is most significant for thin films. Therefore, a new technique is proposed to estimate true oil fluorescence spectra from the Iidar fluorescence signal of oil film on water. The feasibility of the method for monitoring oil spills on water surface was investigated in laboratory conditions using different types of oil. The operability of the proposed method was confirmed by experimental results.

Go to volume 149

References

  1. Межерис Р. Лазерное дистанционное зондирование, М.: Мир, 1987.
  2. Visser N. Teledetection of thickness of oil films on polluted water bazed on the oil fluorescence properties //Appl. Optics. 1979, Vol.18, N11.
  3. Жевлаков А. П. Исследование методики использования эксимерного лазера для измерения толщины пленки нефтепродуктов на поверхности воды / A.П.Жевлаков, С.А.Пакконен, Д.С.Лещенко В.М.Свдоренко // Океанология. 1993. № 33.
  4. Красовский Э.И. Полуэмпирический метод количественного определения примесей в морской воде флуориметрическими лидерами / Э.И. Красовский, B.И.Репин, В.М.Сидоренко, Е.В.Баулин // Океанология. 1990. Т.ЗО. № 6.
  5. Siddiqui К. Expert system for characterization of fluorescence spektra for environmental applications // Proceeding SPIE. 1989. N 1054.

Similar articles

Gas-sensitive microsensor
2001 A. S. Mashkov, Yu. P. Batyrev
Forecasting of oil pollution processes in natural environments in case of an oil pipeline accident using mathematical models
2001 V. G. Prokoshev, K. I. Zuev, T. A. Trifonova, S. I. Abrahin, S. M. Arakelyan
Environmentally safe technologies of steam boiler blowdown water utilization
2001 V. I. Sharapov, A. N. Deryabin
Dynamic precursors of earthquakes
2001 V. F. Davydov
Investigations of correlations between phytoplankton physiological state and fluorescence response using its maximum and stationary parameters
2001 V. V. Zavaruev, A. D. Aponasenko, V. N. Lopatin, S. V. Kachin
Development of catalytic materials and devices for thermocatalytic method of atmospheric protection from pollution by toxic emissions
2001 A. A. Ostroushko, A. E. Udilov, V. I. Minyaev, A. M. Makarov, V. I. Deinezhenko