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Internal and external sources of organic coal to support the effectiveness of denitrificatrion process
Języki publikacji
Abstrakty
Określenie wpływu dozowania różnych zewnętrznych źródeł węgla organicznego na efektywność usuwania związków biogennych metodą osadu czynnego. Badania konwencjonalne (kwas octowy, etanol) i alternatywne (odpady poprodukcyjne z gorzelni). Badanie szybkości denitryfikacji (NUR) i szybkości poboru tlenu (OUR). Wyniki badań i porównania do osiąganych innych badań źródeł węgla organicznego.
Determination of the impact of dispensing of various external organic coal sources on the removing effectiveness of biogenic compounds by active sediment method. Conventional tests (acetic acid, ethanol) and alternative tests (distillery production wastes). Tests of denitrification (NUR) and oxygen uptake (OUR) rates. Test results and comparison to equivalent tests of organic coal sources.
Słowa kluczowe
Wydawca
Czasopismo
Rocznik
Tom
Strony
125--135
Opis fizyczny
Bibliogr. 24 poz., rys., tab.
Twórcy
autor
autor
autor
autor
autor
autor
- Wydział Inżynierii Lądowej i Środowiska, Politechnika Gdańska
Bibliografia
- 1. APHA (1992) Standard Methods for Examination of Water and Wastewater, 18th ed. American Public Health Association, Washington, DC.
- 2. Cappai G., Carucci A., Onnis A.: Use of industrial wastewaters for the optimization and control of nitrogen removal processes. Wat. Sci. Tech., 2004, 50(6).
- 3. Czerwionka K., Makinia J., Pagilla K.: Effluent dissolved organic nitrogen (DON) studies in Poland. Proceedings of the WEFTEC pre-conference workshop "WERF Nutrient Removal Challenge", 18-22 October 2008, Chicago (USA).
- 4. Dircks K., Pind P. F., Mosbaek H., Henze M.: Yield determination by respirometry - The possible influence of storage under aerobic conditions in activated sludge. Water SA, 1999,25.
- 5. Hallin S., Lindberg C. F., Peli M., Plaza E., Carlsson B.: Microbial adaptation, process performance and suggested control strategy in a predenitrifying system with ethanol dosage. Wat. Sci. Tech., 1996,34(1-2).
- 6. Henze M., Grady C. P. L. Jr, Gujer W., Marais G. v. R., Matsuo T.: Activated Sludge Model No. 1. Scientific and Technical Report No.l, IAWPRC, Londyn 1987.
- 7. Henze M., Harremoes P., la Cour Jansen J, Arvin E.: Wastewater treatment. Biological and chemical processes. Springer Verlag, Berlin 1995.
- 8. Mamais D., Jenkins D., Pitt P.: A rapid physical chemical method for the determination of readily biodegradable soluble COD in municipal wastewater. Water Res. (G.B.), 1993,27.
- 9. Mąkinia J.: Performance Prediction of Full-Scale Biological Nutrient Removal Systems Using Complex Activated Sludge Models. Veröffentlichungen des Institutes für Siedlungswasser-wirtschaft und Abfalltechnik der Universitat Hannover; Unidruck: Hannover (Germany) 2006.
- 10. Mąkinia J., Drewnowski J., Swinarski M., Czerwionka K.: Internal vs. external (alternative) carbon sources for denitrification and EBPR accomplished by a full-scale biomass. Proceedings of WEF's 2nd Specialty Conference "Nutrient Removal 2009: Sustainable Treatment Solutions", 28 June - 1 July 2009 r., Waszyngton (USA) [CD-ROM].
- 11. Monteith H. D., Bridle T. R., Sutton P. M.: Industrial waste carbon sources for biological denitrification. Prog. Water Technol. (G.B.), 1980, 12 (6).
- 12. Naidoo V., Urbain V., Buckley C. A: Characterisation of wastewater and activated sludge from European municipal wastewater treatment plants using the NUR test. Wat. Sci. Tech., 1998,38(1).
- 13. Nyberg U., Andersson B., Aspefren H.: Long-term experiences with external carbon sources for nitrogen removal. Wat. Sci. Tech., 1996, 33( 12).
- 14. Oleszkiewicz J. A., Kalinowska E., Dold P., Barnard J. L., Bieniowski M., Ferenc Z., Jones R., Rypina A., Sudol J.: Feasibility studies and pre-design simulation of Warsaw's new wastewater treatment plant. Env. Tech., 2004, 25.
- 15. Onnis-HaydenA, GuA. Z.: Comparisons of organic sources for denitrification: biodegradability, denitrification rates, kinetic constants and practical implication for their application in WWTPs. Proceedings of the 81st Annual WEF Technical Exhibition and Conference WEFTEC'08, 18-22 October 2008. Chicago (USA) [CD-ROM].
- 16. Purtschert L, Siegrist H., Gujer W.:. Enhanced denitrification with methanol at WWTP Zurich-Wordholzli. Wat. Sci. Tech., 1996,33 (12).
- 17. Quan Z. X., Jin Y. S., Yin C. R., Lee J.J., Lee, S. T.: Hydrolyzed molasses as an external carbon source in biological nitrogen removal. Bioresource Tech., 2005, 96.
- 18. Sollfrank U., Gujer W.: Characterisation of domestic wastewater for mathematical modelling of the activated sludge process. Wat. Sci. Tech., 1991. 23.
- 19. Swinarski M., Mąkinia J., Czerwionka K., Fordoński W.: Improving denitrification efficiency at the "Wschod" WWTP in Gdansk (Poland) - effects of different carbon sources. [W:] Proc. of the IWA Specialty Conf. on the Design, Operation and Economics of Large WWTPs, Vienna (Austria), 9-13 September, 2007.
- 20. Swinarski M., Mąkinia J., Czerwionka K., Chrzanowska M., Drewnowski J.: Comparison of the Effects of Conventional and Alternative External Carbon Sources for Enhancing of the Denitrification Process. Water Environment Research, 2009, 81 (9).
- 21. Swinarski M., Mąkinia J., Fordoński W., Drewnowski J., Chrzanowska M., Czerwionka K., Fernandez F. J.: The potential of enhancing denitrification in the activated sludge process with by-products from the alcohol production. Proceedings of the 2nd IWA Specialized Conference ,,Nutrient Management in Wastewater Treatment Processes", 6-9 września 2009 r., Kraków.
- 22. Van Haandel A. C., Ekama G.A.; Marais G. v. R.: The Activated Sludge Process - Single Sludge Denitrification. Water Res., 1981, 15.
- 23. Wanner, J.: Activated sludge population dynamics. Wat. Sci. Tech., 1994,30 (11).
- 24. Yuan Q., Oleszkiewicz J.: Interaction between denitrification and phosphorus removal in a nutrient removing SBR system. Proceedings of the 81st Annual WEF Technical Exhibition and Conference WEFTEC'08, 18-22 October 2008, Chicago (USA) [CD-ROM].
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWM4-0029-0043