Influence of agitation rate on the performance of a stirred anaerobic sequencing batch reactor containing immobilized biomass
Abstract
The present work reports on the influence of the mechanical agitation rates on the performance of a stirred anaerobic sequencing batch reactor containing immobolized biomass on polyurethane foam, as inert support, treating synthetic domestic wastewater. The reactor was operated at 30°C and an 8-hour cycle was used to treat approximately 0.5 L of the synthetic substrate with a COD concentratin of nearly 500 mg/L. The studied agitation rates ranged from no agitation to 750 rpm. The system attained non-filtered substrate removal efficiency greater than 83% when agitation was employed. A very short short-up period and good solid retention could be observed. The use of agitation increased the efficiency of the reactor and enabled reduction of the total cycle time. An empirical equation and a first-order kinetic model are proposed to analyze the influence of agitation rates on the reactor's performance.
- Anaerobic process
- Immobilized biomass
- Low strength wastewater
- Polyurethane foam
- Stirred sequencing batch reactor
- Wastewater treatment
- agitation
- Biomass
- Effluent treatment
- performance assessment
- sequencing batch reactor
- stirred tank
- Biomass
- Chemical oxygen demand
- Foams
- Substrates
- Wastewater
- inert gas
- polyurethan foam
- Anaerobic sequencing
- anaerobic metabolism
- biomass
- chemical oxygen demand
- concentration (parameters)
- conference paper
- filtration
- kinetics
- model
- reactor
- solid
- waste water
- waste water management
- Water
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-0034847863&doi=10.2166%2fwst.2001.0237&partnerID=40&md5=98b6003a78264fdfadc3079e7e509e36https://repositorio.maua.br/handle/MAUA/1085
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