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The Anaerobic SBR Process: Basic Principles for Design and Automation


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dc.creator Ruiz, Consuelo es
dc.creator Torrijos, M. es
dc.creator Sousbie, P. es
dc.creator Lebrato Martínez, Julián es
dc.creator Moletta, R. es 2016-12-01T18:50:34Z 2016-12-01T18:50:34Z 2001
dc.identifier.citation Ruiz, C., Torrijos, M., Sousbie, P., Lebrato Martínez, J. y Moletta, R. (2001). The Anaerobic SBR Process: Basic Principles for Design and Automation. Water Science and Technology, 43 (3), 201-208.
dc.identifier.issn 0273-1223 es
dc.description.abstract This study has determined the purification performance and the basic principles for the design of an anaerobic SBR (ASBR) to be used to treat wastewater generated in the food industries. Two ASBR's were set up and one fed with a slaughterhouse effluent at low concentration, the other with concentrated dairy wastewater. The maximum loading rate applied should not exceed 4.5 g of COD/L/day for the dilute effluent and 6 g of COD/L/day for the concentrated effluent. At higher loading rates, the reactors become difficult to operate, mainly because of sludge removal problems, and purification efficiency declines. A detailed study of the kinetics (TOC, VFA, rate of biogas production) throughout one treatment cycle led to the development of a simple control strategy based on the monitoring of the biogas production rate which was then applied to the reactor treating the dairy wastewater. After automation, the reactor worked free of problems at an average pollution load of 5.4 g of COD/L/day. es
dc.format application/pdf es
dc.language.iso eng es
dc.publisher Pergamon es
dc.relation.ispartof Water Science and Technology, 43 (3), 201-208.
dc.rights Attribution-NonCommercial-NoDerivatives 4.0 Internacional *
dc.rights.uri *
dc.subject Anaerobic digestion es
dc.subject Anaerobic sequencing batch reactor es
dc.subject Automation es
dc.subject Dairy wastewater es
dc.subject Slaughterhouse effluent es
dc.subject Wastewater treatment es
dc.title The Anaerobic SBR Process: Basic Principles for Design and Automation es
dc.type info:eu-repo/semantics/article es
dc.type.version info:eu-repo/semantics/acceptedVersion es
dc.rights.accessrights info:eu-repo/semantics/openAccess es
dc.contributor.affiliation Universidad de Sevilla. Departamento de Ingeniería Química y Ambiental es Universidad de Sevilla: Ingeniería del Agua Posible, Tratamiento del Agua, Saneamiento, Abastecimiento es
idus.format.extent 8 p. es
idus.validador.nota Se puede subir sólo la versión preprint o la postprint con 6 meses de embargo, pero no la versión publicada. es
dc.journaltitle Water Science and Technology es
dc.publication.volumen 43 es
dc.publication.issue 3 es
dc.publication.initialPage 201 es
dc.publication.endPage 208 es
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