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2003 | 12 | 6 |

Tytuł artykułu

Sonochemical enhancement of cyanide ion degradation from wastewater in the presence of hydrogen peroxide

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
This paper presents a comparative study on the capacity of some oxidizing agents: hydrogen peroxide, atmospheric oxygen and barium peroxide to destroy cyanide ions under ultrasound irradiation. Special at­tention was directed towards hydrogen peroxide activity with or without sonication.

Wydawca

-

Rocznik

Tom

12

Numer

6

Opis fizyczny

p.735-737,fig.,ref.

Twórcy

autor
  • Technical University Gh.Asachi Iasi, Bd.Dimitrie Mangeron No.71, Iasi 6600, Romania
autor
autor
autor

Bibliografia

  • 1. YOUNG C. A., JORDAN T. S., Cyanide Remediation: Current and Past Technologies, Proceedings of the 10th An­nual Conference on Hazardous Waste Research, May 23-24, 1995
  • 2. GOSKONDA S., CATALLO W. J., JUNK T., Sonochemical degradation of aromatic organic pollutants, Waste Manage­ment, 22, 351, 2002
  • 3. PETERS D., Sonolytic degradation of volatile pollutants in natural ground water: conclusions from a model study, Ultrason. Sonochem., 8, 221, 2001
  • 4. DEWULF J., VAN LANGENHOVE H., DE VISSCHER A., SABBE S., Ultrasonic degradation of trichloroethylene and chlorobenzene at micromolar concentrations: kinetics and modelling, Ultrason. Sonochem., 8, 143, 2001
  • 5. ALIYU M., HEPHER M. J., Effects of ultrasound energy on degradation of cellulose material, Ultrason. Sonochem., 7, 265, 2000
  • 6. GONDREXON N., RENAUDIN V., PETRIER C., BOLDO P., BERNISA., GONTHIERY., Degradation of pentachlorophenol aqueous solutions using a continuous flow ultrasonic reactor: experimental performance and modelling, Ultrason. Sonochem., 6,125, 1999
  • 7. SIVAKUMAR M., PANDIT A. B., Wastewater treatment: a novel energy efficient hydrodynamic cavitational technique, Ultrason. Sonochem., 9, 123, 2002
  • 8. JIANG Y, PETRIER C., WAITE T. D., Kinetics and mecha­nisms of ultrasonic degradation of volatile chlorinated aromatics in aqueous solutions, Ultrason. Sonochem., 9, 317, 2002
  • 9. TEO K. C., XU Y., YANG C., Sonochemical degradation for toxic halogenated organic compounds, Ultrason. Sonochem., 8, 241, 2001
  • 10. OKUNO H., YIM B., MIZUKOSHI Y., NAGATA Y., MAEDA Y., Sonolytic degradation of hazardous organic compounds in aqueous solution, Ultrason. Sonochem., 7, 261,2000
  • 11. CASADONTE D. J. Jr., The sound of science: the chemi­cal effects of high-intensity ultrasound, The science corner, Lubbock Magazine, 40, 2000
  • 12. HONG Q., HARDCASTLE L. J., McKEOWN R. A. J., MARKEN F., The 20 kHz sonochemical degradation of trace cyanide and dye stuffs in aqueous media, New J. Chem., 23, 845, 1999
  • 13. SATERLAY A. J., HONG Q., COMPTON R. G., CLARK- SON J., Ultrasonically enhanced leaching: removal and destruction of cyanide and other ions from used carbon cathodes, Ultrason. Sonochem., 7, 1, 2000
  • 14. MALYKH N. V., KUZMIN A. O., PETROV V. M., PESTU- NOVA O. P., Ultrasonic cavitational chemical technologies, XI Session of the Russian Acoustical Society, 2001
  • 15. GONG C., HART D. P., Ultrasound induced cavitation and sonochemical yields, Journal of Acoustical Society of America, 104, 233, 1998
  • 16. SUSLICK K. S., MDELENI M. M., RIES J. T., Chemistry induced by hydrodynamic cavitation, J. Am. Chem. Soc., 119, 9303, 1997
  • 17. FLINT B. E., SUSLICK K. S., The temperature of cavita­tion, Science, 253, 1397, 1991
  • 18. SUSLICK K. S., Sonochemistry, Science, 247, 1439, 1990
  • 19. SUSLICK K. S., PRICE G. J., Application of ultrasound to materials chemistry, Annu. Rev. Mater. Sci., 29, 295, 1999

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-7e8c4091-3723-4e5f-8fc9-815c54710128
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