PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
2004 | 13 | 5 |

Tytuł artykułu

Efficiency of black DN adsorption onto chitin in an air-lift reactor

Autorzy

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The efficiency of reactive dyes adsorption onto chitin under dynamic conditions was determined. The research was carried out in an air-lift reactor. A reactive dye with chlorotriazine moiety - Black DN was reactor. A reactive dye with chlorotriazine moiety - Black DN was used. The effect of inlet Black DN concentration, chitin concentration in the reactor and flow rate on the maximum adsorption capacity of chitin under dynamic conditions, on the utilisation of the adsorption capacity of chitin and on the real working time of the reactor were investigated. The results showed that the maximum adsorption capacity of chitin was affected most by inlet dye concentration. The utilisation of the adsorption capacity of chitin, at the assumed effectiveness of dye removal, depended on inlet dye concentration and chitin concentration in the reactor. The highest efficiency was obtained at the chitin concentration in the reactor of 5 g/dm3, inlet dye concentration of 100 mg/dm3 and flow rate of 0.1 V/h.

Wydawca

-

Rocznik

Tom

13

Numer

5

Opis fizyczny

p.503-508,fig.,ref.

Twórcy

  • University of Warmia and Mazury, Prawochenskiego 1, 10-953 Olsztyn, Poland

Bibliografia

  • 1. POOTS V.J.P., MCKAY G., HEALY J.J. The removal of acid dye from effluent using natural adsorbents - I. Peat. Wat. Res., 10, 1061, 1976.
  • 2. POOTS V.J.P., MCKAY G., HEALY J.J. The removal of acid dye from effluent using natural adsorbents - II. Wood. Wat. Res., 10, 1067, 1976.
  • 3. WALKER G.M., WEATHERLEY L.R. Adsorption of acid dyes on to granular activated carbon in fixed beds. Wat. Res., 31, 2093, 1997.
  • 4. ZHANG F., KNAPP J. S., TAPLEY K. Development of bioreactor system for decolorization of Orange II us­ing white rot fungs. Enzyme Microb. Technol. 24, 48, 1999.
  • 5. RODRÍGUEZ COUTO S., DOMÍNGUEZ A., SAN- ROMAN A. Photocatalytic degradation of dyes in aqueous solution operating in fluidized bed reactor. Chemosphere, 46, 83, 2002.
  • 6. POHORECKI R. Problemy hydrodynamiczne w inżynierii bioreaktorów. Inż. Ap. Chem. 3s, 119, 2002.
  • 7. CHISTI M.Y., MOO-YOUNG M. Pneumatically agitated bioreactor devices: effects of fluid height and flow area shape on hydrodynamic and mass transfer performance. Bio­reactor and biotransformation. Ed. Moody, Baker.London. 1987.
  • 8. CHISTI M.Y. Airlift bioreactors. Elsevier Science Publish­ers LTD. London. 1989.
  • 9. MERCHUK J.C., BERZIN I. Distribution of energy dissipa­tion in air lift reactors. Chem. Eng. Sc. 50(14), 2225, 1995
  • 10. WOJNOWSKA-BARYŁA I., BABUCHOWSKI A. Usu­wanie kadmu przez ziarna alginianowe w reaktorze typu airlift. Biotechnol., 37, 1,1997.
  • 11. MERCHUK J.C. Why use air lift reactors? TiBtech., 8, 66, 1990.
  • 12. STANLEY W.I., WATTERS G.G., CHAN B. Lactase and other enzymes bound to chitin with glutaraldehyde. Biotech­nol. Bioeng., 17, 315,1975.
  • 13. HERMANOWICZ W., DOŻAŃSKA W., DOJLIDO J., KOZIOROWSKI B. Fizyczno chemiczne badanie wody i ścieków. Arkady, Warszawa. 1999.
  • 14. ROBERTS A.A.F. Determination of the degree of N-acety- lation of chitin and chitosan. [In:] Chitin Handbook. Muzzarelli R. A. A., Peter M. G. (eds), Atec Edizioni, Grottam- mare, Italy: pp. 127-132, 1997.
  • 15. MAHDAVI TALARPOSHTI A., DONNELLY T., ANDER­SON G. K. Colour removal from simulated dye wastewater using a two-phase anaerobic packed bed reactor. Wat. Res. 35(2), 425-432, 2001.
  • 16. WALKER G.M., WEATHERLEY L.R. Adsorption of acid dyes on to granular activated carbon in fixed beds Wat. Res., 31(8), 2093, 1997.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-b8a7b2c1-2eee-45dc-af24-4d7376f7b615
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.