Full nitrogen and phosphorus removal in the PASDEBPR system

Journal Article (2024)
Author(s)

P. Kamath (IHE Delft Institute for Water Education)

F. J. Rubio-Rincón (IHE Delft Institute for Water Education)

D. Brdanović (TU Delft - BT/Environmental Biotechnology, IHE Delft Institute for Water Education)

C. M. Lopez-Vazquez (IHE Delft Institute for Water Education)

Research Group
BT/Environmental Biotechnology
Copyright
© 2024 P. Kamath, F. J. Rubio-Rincón, Damir Brdjanovic, C. M. Lopez-Vazquez
DOI related publication
https://doi.org/10.1016/j.biteb.2024.101782
More Info
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Publication Year
2024
Language
English
Copyright
© 2024 P. Kamath, F. J. Rubio-Rincón, Damir Brdjanovic, C. M. Lopez-Vazquez
Research Group
BT/Environmental Biotechnology
Volume number
25
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Abstract

Photo-activated sludge (PAS) system aims to utilize microalgae to deliver oxygen for bacterial respiration, eliminating the need for external aeration. However, research on the treatment potential of PAS systems in the removal of nutrients is limited. In this context, a research study was devised to evaluate the possibility of developing a microalgae-bacteria consortium to achieve the simultaneous removal of organic carbon, nitrogen, and phosphorus. A successful PAS system capable of removing phosphorus was established at the end of the first phase, with an effluent phosphorus (P) concentration of 1.6 mg P L−1. In the subsequent stage, during the introduction of the nitrification-denitrification process, the system lost stability and deteriorated. Interestingly the system recovered via the sparging of nitrogen gas reaching effluent concentrations of 1.22 mg P L−1 and 0.88 mg N L−1. Thus, the system was capable of removing phosphorus and nitrogen via biological means without the need for external aeration. It is hypothesized that the inhibition caused was due to the production of a gaseous compound during the nitrification/denitrification process.

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