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    Anaerobic sequencing batch biofilm reactor applied to automobile industry wastewater treatment: Volumetric loading rate and feed strategy effects

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    Artigo de Periódico
    Date
    2008
    Author
    Oliveira, Ricardo Polisaitis
    Ghilardi, José Antônio
    Ratusznei, Suzana Maria
    Rodrigues, José Alberto Domingues
    Zaiat, Marcelo
    Foresti, Eugênio
    xmlui.dri2xhtml.METS-1.0.item-sponsorship
    FAPESP
    Metadata
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    Abstract
    This paper presents a technological viability study of wastewater treatment in an automobile industry by an anaerobic sequencing batch biofilm reactor containing immobilized biomass (AnSBBR) with a draft tube. The reactor was operated in 8-h cycles, with agitation of 400 rpm, at 30 °C and treating 2.0 L wastewater per cycle. Initially the efficiency and stability of the reactor were studied when supplied with nutrients and alkalinity. Removal efficiency of 88% was obtained at volumetric loading rate (VLR) of 3.09 mg COD/L day. When VLR was increased to 6.19 mg COD/L day the system presented stable operation with reduction in efficiency of 71%. In a second stage the AnSBBR was operated treating wastewater in natura, i.e., without nutrients supplementation, only with alkalinity, thereby changing feed strategy. The first strategy consisted in feeding 2.0 L batch wise (10 min), the second in feeding 1.0 L of influent batch wise (10 min) and an additional 1.0 L fed-batch wise (4 h), both dewatering 2.0 L of the effluent in 10 min. The third one maintained 1.0 L of treated effluent in the reactor, without discharging, and 1.0 L of influent was fed fed-batch wise (4 h) with dewatering 1.0 L of the effluent in 10 min. For all implemented strategies (VLR of 1.40, 2.57 and 2.61 mg COD/L day) the system presented stability and removal efficiency of approximately 80%. These results show that the AnSBBR presents operational flexibility, as the influent can be fed according to industry availability. In industrial processes this is a considerable advantage, as the influent may be prone to variations. Moreover, for all the investigated conditions the kinetic parameters were obtained from fitting a first-order model to the profiles of organic matter, total volatile acids and methane concentrations. Analysis of the kinetic parameters showed that the best strategy is feeding 1.0 L of influent batchwise (10 min) and 1.0 L fed-batch wise (4 h) in 8-h cycle. © 2007 Elsevier B.V. All rights reserved.
    1. Anaerobic treatment
    2. AnSBBR
    3. Automobile industry
    4. Nutrient supplementation
    5. Organic load
    6. Automotive industry
    7. Batch reactors
    8. Biofilms
    9. Nutrients
    10. Wastewater treatment
    URI
    https://www.scopus.com/inward/record.uri?eid=2-s2.0-43849094456&doi=10.1016%2fj.cep.2007.06.014&partnerID=40&md5=f4a3e64822b26ca6b744eec18094a6cc
    https://repositorio.maua.br/handle/MAUA/1189
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