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2001 | 10 | 1 |

Tytuł artykułu

Aromatic hydrocarbons decomposition by neustonic bacteria. Part II - Policyclic aromatic hydrocarbons biodegradation

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The present paper provides results of a study on heterotrophic bacteria occurrence and quantity in the biofilm and subsurface water of lake Jeziorak Maty. Degradation of several polycyclic aromatic hydrocarbons (PAH's) (anthracene, naphthalene) by neustonic and planktonic bacteria have been examined. It has been discovered that some aromatic hydrocarbons were better decomposed by neustonic bacteria than by planktonic ones. Both Total Number of bacteria (TN) and heterotrophic bacteria number (TVC) were higher in the surface microlayer than in the subsurface water.

Wydawca

-

Rocznik

Tom

10

Numer

1

Opis fizyczny

p.33-36,fig.

Twórcy

autor
  • Nicholas Copernicus University, 87-100 Torun, Poland
autor
autor

Bibliografia

  • 1. NORKRANS B. Surface microlayers in aquatic environments. Adv. Microb. Ecol. 4, 51, 1980.
  • 2. FALKOWSKA L. Sea surface microlaeyr. Univ. of Gdansk, pp. 185, 1996. (in Polish)
  • 3. MIKULSKI J. Biologia wód środlądowych. PWN Warszawa 1974.
  • 4. FRITSCHE W. The potential of microorganisms of bioremediation. Proceedings of the 6-th European Congress on Biotechnology, ed. By L. Alberghina. Elsevier Science B.V. 1994.
  • 5. ZIMMERMANN R. Estimation of bacterial number and biomass by epifluorescence microscopy and scaninig electron microscopy. Microbiol. Ecol. of Brackish Water Environ. G.Rheinheimer, Springer-Verlag, New York: 103, 1977.
  • 6. DAUBNER I. Mikrobiologia Vody. Slov. Akad. Vied. Press. Bratislava 1976.
  • 7. FERRER E. B., STAPERT E. M., SOKOLSKI W. T. A medium for improved recovery of bacteria from water. Can. J. Microbiol. 9. 420, 1963.
  • 8. HERMANOWICZ W., DOZANSKA W., DOJLIDO J. R, KOZIOROWSKI B. Fizyczno - chemiczne metody badania wody i ścieków. Arkady, Warszawa. 1976.
  • 9. NIEWOLAK S. Seasonal changes in numbers of some physiological groups of microorganisms in Hawa Lakes. Pol. Arch. Hydrobiol. 153, 21, 1973.
  • 10. CROW S.A., AHEARN D.G., COOK W.L. Densities of bacteria and fungi in coastal surface films as detrimened by membrane-adsorption procedure. Limnol. Oceanogr. 10, 602, 1975.
  • 11. FEHON W.C., OLIVER J.D. Taxonomy and distribution of surface microlayer bacteria from two estuarine sites. Estuarine 2, No 3. 1979.
  • 12. NIEWOLAK S. A microbiological study on the hyponeuston of Hawa Lakes in the summer seasons. Acta Hydrobiol. 13, 295, 1971.
  • 13. HERMANSSON M, JONES G.W, KJELLEBERG S. Frequency of antibiotic and heavy metal resistance, pigmentation and plasmids in bacteria of the marine air - water interface. Appl. Environ. Microbiol. 53, 2338, 1987.
  • 14. MAKI J., HERWIG R. A diel study of the neuston and plankton bacteria in an Antarctic ponds. Antarct. Sci. 3, 47, 1991.
  • 15. FALKOWSKA L, BOLALEK J. Nitrogen and phosphorus exchange in the contact zone between the sea and the atmosphere. Oceanologia, 30, 47, 1991.
  • 16. DONDERSKI W., WALCZAK M, MUDRYK Z, SKORCZEWSKI P. Neustonic bacteria number, biomass and taxonomy. Polish Journal of Environmental Studies 8, 137, 1999.
  • 17. DONDERSKI W., WALCZAK M, MUDRYK Z. Neustonic bacteria of lake Jeziorak Maly. Polish Journal of Environmental Studies 7, 125, 1998.
  • 18. GOSH P.K., MISHARA A.K. Oxidation of phenantrene by a strain of Micrococcus evidence of protocatechuate pathway. Curr. Microbiol. 9, 219, 1983.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-2ad62d06-2617-4548-8b82-cae35afe98d7
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