A pH-control model for heterotrophic and hydrogen-based autotrophic denitrification

This work presents a model to predict the alkalinity, pH, and Langelier Saturation Index (LSI) in heterotrophic and H 2-based autotrophic denitrification systems. The model can also be used to estimate the amount of acid, e.g. HCl, added to the influent (method 1) or the pH set point in the reactor...

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Veröffentlicht in:Water research (Oxford) 2011, Vol.45 (1), p.232-240
Hauptverfasser: Tang, Youneng, Zhou, Chen, Ziv-El, Michal, Rittmann, Bruce E.
Format: Artikel
Sprache:eng
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Zusammenfassung:This work presents a model to predict the alkalinity, pH, and Langelier Saturation Index (LSI) in heterotrophic and H 2-based autotrophic denitrification systems. The model can also be used to estimate the amount of acid, e.g. HCl, added to the influent (method 1) or the pH set point in the reactor (method 2: pH can be maintained stable by CO 2-sparge using a pH-control loop) to prevent the pH from exceeding the optimal range for denitrification and to prevent precipitation from occurring. The model was tested with two pilot plants carrying out denitrification of groundwater with high hardness: a heterotrophic system using ethanol as the electron donor and an H 2-based autotrophic system. The measured alkalinity, pH, and LSI were consistent with the model for both systems. This work also quantifies: (1) how the alkalinity and pH in Stage-1 significantly differ from those in Stage-2; (2) how the pH and LSI differ significantly in the two denitrification systems while the alkalinity increase is about the same; and (3) why CO 2 addition is the preferred method for autotrophic system, while HCl addition is the preferred method for the heterotrophic system.
ISSN:0043-1354
1879-2448
DOI:10.1016/j.watres.2010.07.049