Stable performance of non-aerated two-stage partial nitritation/anammox (PANAM) with minimal process control

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Abstract

Partial nitritation/anammox (PANAM) technologies have rapidly developed over the last decade, but still considerable amounts of energy are required for active aeration. In this study, a non-aerated two-stage PANAM process was investigated. In the first-stage upflow fixed-film bioreactor, nitratation could not be prevented at ammonium loading rates up to 186mgNl-1d-1 and low influent dissolved oxygen (0.1mgO2l-1). Yet, increasing the loading rate to 416 and 747mgNl-1d-1 by decreasing the hydraulic retention time to 8 and 5h, respectively, resulted in partial nitritation with the desired nitrite to ammonium nitrogen ratio for the subsequent anammox stage (0.71-1.05). The second-stage anammox reactor was established with a synthetic feeding based on ammonium and nitrite. After establishing anammox at low biomass content (0.5g VSS l-1), the anammox influent was switched to partial nitritation effluent at a loading rate of 71mgNl-1d-1, of which 78% was removed at the stoichiometrically expected nitrite to ammonium consumption ratios (1.19) and nitrate production to ammonium consumption ratio (0.24). The combined PANAM reactors were operated for 3 months at a stable performance. Overall, PANAM appeals economically, saving about 50% of the energy costs, as well as technically, given straightforward operational principles. © 2012 The Authors. Microbial Biotechnology © 2012 Society for Applied Microbiology and Blackwell Publishing Ltd.

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Bagchi, S., Biswas, R., Vlaeminck, S. E., Roychoudhury, K., & Nandy, T. (2012). Stable performance of non-aerated two-stage partial nitritation/anammox (PANAM) with minimal process control. Microbial Biotechnology, 5(3), 425–432. https://doi.org/10.1111/j.1751-7915.2012.00336.x

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