Over the last decade new technologies are emerging even more for wastewater treatment. Among the new technologies, a recent possible solution regards Moving Bed Biofilm Reactors (MBBRs) that represent an effective alternative to conventional processes. More specifically such systems consist in the introduction of plastic elements inside the aerobic reactor as carrier material for the growth of attached biomass. Recently, one of the mostly used alternatives is to couple the Moving Bed Biofilm Reactor (MBBR) process with the conventional activated sludge process, and the resulting process is usually called HMBBR (Hybrid MBBR). In the MBBR process the biofilm grows attached on small plastic elements that are kept in constant motion throughout the entire volume of the reactor. Indeed, in such a system, a competition between the two biomasses, suspended and attached, can arise for the availability of the substrates, leading, as a consequence, to a modification in the biokinetic parameters of the two biomasses, compared to that of a pure suspended or attached biomass process. This paper presents the first results of a study aimed to estimate the kinetic heterotrophic constants in a HMBBR pilot plant using respirometric techniques. The pilot plant was built at the Acqua dei Corsari (Palermo) wastewater treatment plant and consisted of two parallel lines realized in a pre-anoxic scheme, in one of which the carrier material was added to the aerobic reactor with a filling ratio of 30%.

Di Trapani, D., Mannina, G., Torregrossa, M., Viviani, G. (2009). Quantification of kinetic parameters for heterotrophic bacteria via respirometry in a hybrid reactor. ??????? it.cilea.surplus.oa.citation.tipologie.CitationProceedings.prensentedAt ??????? 2nd IWA Specialized Conference on Nutrient Management in Wastewater Treatment Processes, Krakow, Poland.

Quantification of kinetic parameters for heterotrophic bacteria via respirometry in a hybrid reactor

DI TRAPANI, Daniele;MANNINA, Giorgio;TORREGROSSA, Michele;VIVIANI, Gaspare
2009-01-01

Abstract

Over the last decade new technologies are emerging even more for wastewater treatment. Among the new technologies, a recent possible solution regards Moving Bed Biofilm Reactors (MBBRs) that represent an effective alternative to conventional processes. More specifically such systems consist in the introduction of plastic elements inside the aerobic reactor as carrier material for the growth of attached biomass. Recently, one of the mostly used alternatives is to couple the Moving Bed Biofilm Reactor (MBBR) process with the conventional activated sludge process, and the resulting process is usually called HMBBR (Hybrid MBBR). In the MBBR process the biofilm grows attached on small plastic elements that are kept in constant motion throughout the entire volume of the reactor. Indeed, in such a system, a competition between the two biomasses, suspended and attached, can arise for the availability of the substrates, leading, as a consequence, to a modification in the biokinetic parameters of the two biomasses, compared to that of a pure suspended or attached biomass process. This paper presents the first results of a study aimed to estimate the kinetic heterotrophic constants in a HMBBR pilot plant using respirometric techniques. The pilot plant was built at the Acqua dei Corsari (Palermo) wastewater treatment plant and consisted of two parallel lines realized in a pre-anoxic scheme, in one of which the carrier material was added to the aerobic reactor with a filling ratio of 30%.
Settore ICAR/03 - Ingegneria Sanitaria-Ambientale
2009
2nd IWA Specialized Conference on Nutrient Management in Wastewater Treatment Processes
Krakow, Poland
6-9 Settembre
2009
00
Di Trapani, D., Mannina, G., Torregrossa, M., Viviani, G. (2009). Quantification of kinetic parameters for heterotrophic bacteria via respirometry in a hybrid reactor. ??????? it.cilea.surplus.oa.citation.tipologie.CitationProceedings.prensentedAt ??????? 2nd IWA Specialized Conference on Nutrient Management in Wastewater Treatment Processes, Krakow, Poland.
Proceedings (atti dei congressi)
Di Trapani, D; Mannina, G; Torregrossa, M; Viviani, G
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10447/36172
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