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    Stirred anaerobic sequencing batch reactor containing immobilized biomass: A behavior study when submitted to different fill times

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    Artigo de Periódico
    Date
    2004
    Author
    Borges, Alisson Carraro
    Siman, Renato Ribeiro
    Rodrigues, José Alberto Domingues
    Ratusznei, Suzana Maria
    Zaiat, Marcelo
    Foresti, Eugênio
    Borzani, Walter
    Metadata
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    Abstract
    The effect of the filling stage on the behavior of a mechanically stirred anaerobic sequencing batch reactor containing biomass immobilized on 1 cm polyurethane foam cubes was investigated. The reactor was made of acrylic with a capacity of 6.3 L, treating per cycle 2.5 L synthetic low-strength wastewater with a concentration of 500 mgCOD/L, at 30 ± 1°C. Eight-hour cycles (tC) and agitation of 500 rpm were utilized. At the beginning of each cycle 60% of the wastewater volume was treated, sufficient to completely cover the bed. The remaining volume was added at different fill times (tF) of 10, 120, 240, 260 and 480 min. The results obtained showed that ratios of tF/tC ≤ 0.5 enabled organic matter removal higher than 75% and 70% for filtered and non-filtered samples, respectively. Ratios of tF/tC > 0.5, despite operation stability, resulted in loss of efficiency and formation of viscous material, similar to extra-cellular polymeric substancies. © 2004 IWA Publishing 2004.
    1. ASBR
    2. Feeding step
    3. Immobilized biomass
    4. Low-strength wastewater
    5. anaerobic process
    6. Biomass
    7. Chemical oxygen demand
    8. pollutant removal
    9. sequencing batch reactor
    10. Wastewater treatment
    11. Acrylic monomers
    12. Filtration
    13. Polyurethanes
    14. acrylic acid derivative
    15. organic matter
    16. polymer
    17. polyurethan foam
    18. Biomass immobilization
    19. Mechanical stirring
    20. anaerobic reactor
    21. article
    22. concentration (parameters)
    23. controlled study
    24. filtration
    25. immobilized biomass
    26. productivity
    27. stirred reactor
    28. viscosity
    29. waste component removal
    30. waste water
    31. waste water management
    32. Bioreactors
    URI
    https://www.scopus.com/inward/record.uri?eid=2-s2.0-4344697262&doi=10.2166%2fwst.2004.0869&partnerID=40&md5=58badc9f0e36cb56041d96e82a4a28af
    https://repositorio.maua.br/handle/MAUA/1188
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