Modeling granule-based completely autotrophic nitrogen removal over the nitrite (CANON) process in an SBR

Author:

Cai Qing123ORCID,He Qiang2ORCID,Zhang Sheng3ORCID,Ding Jiajia3ORCID

Affiliation:

1. Academic Affairs Office, Chongqing Vocational Institute of Engineering, Chongqing 402260, China

2. College of Environment and Ecology, Chongqing University, Chongqing 400030, China

3. Department of Environmental Planning, Chongqing Institute of Eco-Environmental Science, Chongqing 401147, China

Abstract

Abstract Based on the simplified activated sludge model No. 1 (ASM1), a 1D biofilm model containing autotrophic and heterotrophic microorganisms was developed to describe the microbial population dynamics and reactor dynamics of completely autotrophic nitrogen removal over the nitrite in sequencing batch reactor (CANON SBR). After sensitivity analysis and calibration for parameters, the simulation results of NH4+-N concentration and NO2−-N concentration were consistent with the measured results, while the simulated NO3−-N concentration was slightly lower than the measured. The simulation results showed that the soluble microbial products had an extremely low concentration. The aerobic ammonia oxidation bacteria and anaerobic ammonia oxidation bacteria were the dominant microbial populations of the CANON system, while nitrite oxidization bacteria and heterotrophic bacteria were eliminated completely. The optimal ratio of air aeration load to influent NH4+-N load was about 0.18 L air/mgN. The operating condition of the reactor was optimized according to the simulation results, and the total nitrogen removal rate and the total nitrogen removal efficiency increased from 0.312 ± 0.015 to 0.485 ± 0.013 kg N/m3/d and from 71.2 ± 4.3 to 85.7 ± 1.4%, respectively.

Funder

natural science foundation of china

chongqing special postdoctoral science foundation

Publisher

IWA Publishing

Subject

Filtration and Separation,Water Science and Technology

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