The performance of two bench scale activated sludge reactors with two feeding regimes, continuous fed (an up-flow aerobic/anoxic sludge fixed film (UAASFF) bioreactor) and batch fed (sequencing batch reactor (SBR)) with intermittent aeration, were evaluated for simultaneous nutrients (N, P) removal. Three significant variables (retention/reaction time, chemical oxygen demand (COD): N (nitrogen): P (phosphorus) ratio and aeration time) were selected for modeling, analyzing, and optimizing the process. At high retention time (≥6 h), two bioreactors showed comparable removal efficiencies, but at lower hydraulic retention time, the UAASFF bioreactor showed a better performance with higher nutrient removal efficiency than the SBR. The experimental results indicated that the total Kjeldahl nitrogen removal efficiency in the UAASFF increased from 70.84% to 79.2% when compared to SBR. It was also found that the COD removal efficiencies of both processes were over 87%, and total nitrogen and total phosphorus removal efficiencies were 79.2% and 72.98% in UAASFF, and 71.2% and 68.9% in SBR, respectively.
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Research Article|
May 12 2017
A comparative study of an up-flow aerobic/anoxic sludge fixed film bioreactor and sequencing batch reactor with intermittent aeration in simultaneous nutrients (N, P) removal from synthetic wastewater
Amir Mohammad Mansouri;
Amir Mohammad Mansouri
1Faculty of Chemistry, Department of Analytical Chemistry, Razi University, Kermanshah, Iran and Research Center for Environmental Determination of Health (RCEDH), Kermanshah University of Medical Sciences, Kermanshah, Iran
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Ali Akbar Zinatizadeh
2Environmental Research Center, Department of Applied Chemistry, Faculty of Chemistry, Razi University, Kermanshah, Iran
E-mail: [email protected]
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Water Sci Technol (2017) 76 (5): 1044–1058.
Article history
Received:
August 10 2016
Accepted:
April 19 2017
Citation
Amir Mohammad Mansouri, Ali Akbar Zinatizadeh; A comparative study of an up-flow aerobic/anoxic sludge fixed film bioreactor and sequencing batch reactor with intermittent aeration in simultaneous nutrients (N, P) removal from synthetic wastewater. Water Sci Technol 6 September 2017; 76 (5): 1044–1058. doi: https://doi.org/10.2166/wst.2017.261
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