Anaerobic digestion is state-of-the-art technology to treat sludge and effluents from various industries. Modelling and optimisation of digestion operations can be advantageously performed using the anaerobic digestion model (ADM1) from the International Water Association. The ADM1, however, lacks a proper physico-chemical framework, which makes it difficult to consider wastewater of complex ionic composition and supersaturation phenomena. In this work, we present a direct implementation of the ADM1 within the PHREEQC chemistry engine. This makes it possible to handle ionic strength effects and ion-pairing. Thus, multiple mineral precipitation phenomena can be handled while resolving the ADM1. All these features can be accessed with very little programming effort, while retaining the full power and flexibility of PHREEQC. The distributed PHREEQC code can be easily interfaced with process simulation software for future plant-wide simulation of both wastewater and sludge treatment.
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Research Article|
May 26 2017
Implementation of the anaerobic digestion model (ADM1) in the PHREEQC chemistry engine
Patrick Huber;
Centre Technique du Papier (CTP), CS90251, 38044 Grenoble Cedex 9, France
E-mail: [email protected]
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Christophe Neyret;
Christophe Neyret
Centre Technique du Papier (CTP), CS90251, 38044 Grenoble Cedex 9, France
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Eric Fourest
Eric Fourest
Centre Technique du Papier (CTP), CS90251, 38044 Grenoble Cedex 9, France
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Water Sci Technol (2017) 76 (5): 1090–1103.
Article history
Received:
January 19 2017
Accepted:
May 02 2017
Citation
Patrick Huber, Christophe Neyret, Eric Fourest; Implementation of the anaerobic digestion model (ADM1) in the PHREEQC chemistry engine. Water Sci Technol 6 September 2017; 76 (5): 1090–1103. doi: https://doi.org/10.2166/wst.2017.282
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