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2002 | 11 | 1 |

Tytuł artykułu

The effect of glutaraldehyde on the kinetics of selected microbiological processes

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The effect of glutaraldehyde (GA) in different concentrations on microbiological activities of Bacillus licheniformis, Desulfotomaculum ruminis and Thiobacillus ferrooxidans bacteria used in the processes of denitrification, desulfurication and iron (II) oxidation, respectively, has been tested. For the sake of comparison, the effect of formaldehyde (FA) on the activities of the same organisms in the same conditions has been studied. The tolerated and toxic concentrations of the aldehydes were determined.

Wydawca

-

Rocznik

Tom

11

Numer

1

Opis fizyczny

p.17-21,fig.,ref

Twórcy

autor
  • Adam Mickiewicz University, Grunwaldzka 6, 60-780 Poznan, Poland
autor
autor
autor

Bibliografia

  • 1. UKEDA H., ISHII T., SAWAMURA M., KUSUNOSE H., Dynamic analysis of the binding process of bovine serum albumin on glutaraldehyde activated controlled pore glass. Analytica Chimica Acta, 308, 261-268, 1995.
  • 2. SENILLOU A., JAFFREZIC N., MARTELET C., COSNIER S., A lapointe clay-poly(pyrrole-pyridinium) matrix for the fabrication of conductimetric microbiosensors. Analytica Chimica Acta, 401, 117-124, 1999.
  • 3. ROGER J., HUSSON H.P., A new potential acyl iminium ion for the asymmetric synthesis of piperidine derivatives. Heterocycles, vol. 36, no. 7, 1993.
  • 4. CHAPLIN M.F., KENNEDY J.F., Use of some new poly-phenolic resins for fractionation of carbhydrates and immobilisation of carbohydrate hydrolases and isomerases. Journal of Chemical Society, Perkin I, 2144, 1979.
  • 5. AN YING, KOYAMA T., HANABUSA K., Preparation and properties of highly phosphorylated poly (vinyl alcohol) hydrogels chemically crosslinked by glutaraldehyde. Polymer, vol. 36, no. 11, 2297, 1995.
  • 6. ROVER L. Jr., de OLIVIERA NETO G., determination at salicylate in blood serum using an amperometric biosensor based on salicylate hydroxylase immobilized in a polypyrrole-glutaraldehyde matrix. Talanta, 51, 547-557, 2000.
  • 7. SCOTLAND E.M., GORMAN S.P in S.BLOCK (Editor), Disinfection, sterylization and preservation, Lea & Febiger, Philadelphia, P.A., 4th ed., 596-614, 1991.
  • 8. HOPWOOD D., ALLEN C.R. and McCABE C., Reactions between glutaraldehyde and various proteins. An investigation of their kinetics. Histochem. Journ., 2, 137, 1970.
  • 9. LINDAHL R., LEVIN J.O., Laboratory validation of adiffusive sampler for the determination of GA in air. Journ. of Chromat. A., 710, 175-180, 1995.
  • 10. NAKAMURA M., KIYOHARA S., Chiral separation of DL-tryptophan using porous membrans containing multilayered bovine serum albumin crosslinked woth glutaraldehyde. Journ. of Chromat. A., 822, 53, 1998.
  • 11. WALIGÓRSKA M., DOMKA F., Kinetic model of denitrification by Bacillus bacteria, Envir. Prot. Eng., 18 (1-2), 117-124, 1992.
  • 12. JUSZCZAK A., DOMKA F., Badania nad kinetycznym modelem procesu biodenitryfikacji, Chem. Stos., XXXII 2, 301-309, 1988.
  • 13. DOMAGAŁA Z., DOMKA F., Kinetic model of dissimilatory sulfate reduction, Env. Prot. Eng., 18 (1-2), 100-108, 1992.
  • 14. CWALINA B., Metabolizm siarki u Thiobacillus ferrooxidans w procesie ługowania metali z minerałów siarczkowych. Wyd. Uniw. Śląskiego, Nr 1463, Katowice 1994.
  • 15. MARCZENKO Z., Kolorymetryczne oznaczanie pierwiastków, WNT, Warszawa 1968.
  • 16. WILLIAMS W.I., Oznaczanie anionów, PWN, Warszawa 1985.
  • 17. NOWACZYK K., DOMKA F., Attempts of microbiological utilization of rubberwastes. Pol. Journ. of Envir. Stud., 8(2), 101-106, 1999.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-3d176e39-375a-4149-8a9d-ad79f54076ba
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