DocumentCode :
3530127
Title :
Investigating the performance of inverse fluidized bed biofilm reactor for phenol biodegradation using Pseudomonas fluorescence
Author :
Begum, S. Sabarunisha ; Radha, K.V.
Author_Institution :
Dept. of Chem. Eng., Anna Univ., Chennai, India
fYear :
2011
fDate :
15-17 Dec. 2011
Firstpage :
130
Lastpage :
136
Abstract :
The feasibility of a three phase inverse fluidized bed biofilm reactor with low density support particles (812 kg/m3) was investigated for the degradation of synthetic phenolic effluent (600 mg/l at 30°C) using indigenous pure culture of Pseudomonas fluorescence. The maximum COD removal of 97.9% occurred with complete degradation of phenol in 110 hours of operation and the biofilm and biomass characteristics of Pseudomonas fluorescence with respect to its suspended and attached biomass concentration, biofilm thickness and bioparticle density were also studied. The culture followed substrate inhibition kinetics. Biodegradation data was correlated with kinetic models including Monod, Yano& Koga, Teissier, Aiba et al, Webb and Haldane model. Experimentally obtained data best fitted with the Haldane model and the kinetic parameters were derived by non linear regression with a correlation factor (R2) of 0.9938. The values of Haldane constants rsmax, Ks and Ki were 0.541 h-1, 0.9211 mg/l and 3.57 mg/l respectively. The bio-kinetic constants estimated using these models showed good potential of using Pseudomonas fluorescence culture in phenol degradation in inverse fluidized bed biofilm reactor.
Keywords :
biodegradable materials; bioreactors; correlation methods; environmental degradation; fluidised beds; fluorescence; organic compounds; regression analysis; Aiba et al model; COD removal; Haldane constants; Haldane model; Monod model; Teissier model; Webb model; Yano & Koga model; biofilm characteristics; biokinetic constant estimation; biomass characteristics; bioparticle density; correlation factor; low density support particles; nonlinear regression; phenol biodegradation; pseudomonas fluorescence culture; substrate inhibition kinetics; synthetic phenolic effluent degradation; three phase inverse fluidized bed biofilm reactor; time 110 h; Correlation; Electron tubes; Fluorescence; Hydrodynamics; Inductors; Microorganisms; Pollution measurement; biochemical engineering; bioreactors; films; inverse fuidized bed biofilm reactor; kinetics; waste water treatment;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Green Technology and Environmental Conservation (GTEC 2011), 2011 International Conference on
Conference_Location :
Chennai
Print_ISBN :
978-1-4673-0179-4
Type :
conf
DOI :
10.1109/GTEC.2011.6167657
Filename :
6167657
Link To Document :
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