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Feasibility of hydraulic separation in a novel anaerobic-anoxic upflow reactor for biological nutrient removal. Bioprocess and Biosystems Engineering

Abstract: This contribution deals with a novel anaerobic–anoxic reactor for biological nutrient removal (BNR) from wastewater, termed AnoxAn. In the AnoxAn reactor, the anaerobic and anoxic zones for phosphate removal and denitrification are integrated in a single continuous upflow sludge blanket reactor, aiming at high compactness and efficiency. Its application is envisaged in those cases where retrofitting of existing wastewater treatment plants for BNR, or the construction of new ones, is limited by the available surface area. The environmental conditions are vertically divided up inside the reactor with the anaerobic zone at the bottom and the anoxic zone above. The capability of the AnoxAn configuration to establish two hydraulically separated zones inside the single reactor was assessed by means of hydraulic characterization experiments and model simulations. Residence time distribution (RTD) experiments in clean water were performed in a bench-scale (48.4 L) AnoxAn prototype. The required hydraulic separation between the anaerobic and anoxic zones, as well as adequate mixing in the individual zones, were obtained through selected mixing devices. The observed behaviour was described by a hydraulic model consisting of continuous stirred tank reactors and plug-flow reactors. The impact of the denitrification process in the anoxic zone on the hydraulic separation was subsequently evaluated through model simulations. The desired hydraulic behaviour proved feasible, involving little mixing between the anaerobic and anoxic zones (mixing flowrate 40.2 % of influent flowrate) and negligible nitrate concentration in the anaerobic zone (less than 0.1 mgN L-1) when denitrification was considered.

 Fuente: Bioprocess and Biosystems Engineering January 2015, Volume 38, Issue 1, pp 93–103

Editorial: Springer

 Fecha de publicación: 01/01/2015

Nº de páginas: 10

Tipo de publicación: Artículo de Revista

 DOI: 10.1007/s00449-014-1247-9

ISSN: 1615-7591,1615-7605

Proyecto español: CSD2007-00055 ; CTM2008-06877-C02-01_TECNO) ; CTM2012-36227

Url de la publicación: doi:10.1007/s00449-014-1247-9

Autores/as

LOREDANA DE FLORIO

MARTA GONZALEZ VIAR

EVELINE I. P. VOLCKE

JUAN IGNACIO TEJERO MONZON