Enhancing methane production through anaerobic co-digestion of sewage sludge : a modified ADM1 model approach

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Authors

Mudzanani, Khuthadzo E.
Phadi, Terence T.
Iyuke, Sunny E.
Daramola, Michael Olawale

Journal Title

Journal ISSN

Volume Title

Publisher

MDPI

Abstract

The International Water Association’s (IWA) established Anaerobic Digestion Model No. 1 (ADM1) was created to serve as a backup for experimental findings regarding the actual anaerobic digestion process. The previous model idea was adjusted and used to simulate an anaerobic digestion process in this study. Testing procedures, such as benchmark tests and balance checks, were performed in order to verify the accuracy of the implementation. These measures worked in tandem to ensure that the model was implemented flawlessly and without inconsistencies. The primary objective of this article is to construct a method that is based on the ADM1 for evaluating co-digestion and predicting the performance of the digestion process or methane yield based on the analyzed substrates’ physicochemical properties. Additional equations and simulations have been added to the standard model to create tools for evaluating the feasibility of anaerobic co-digestion. The study’s two most intriguing aspects are the optimal mixture and parameter dependence. The adjusted ADM1 is accurate in predicting the measured values of effluent COD, pH, methane, and produced biogas flows with a reasonable degree of accuracy, according to the validation results. This research shows how to use ADM1 in a wastewater treatment plant and other settings where anaerobic digestion is of interest.

Description

DATA AVAILABILITY STATEMENT : Data will be made available on request.

Keywords

Anaerobic digestion model no. 1 (ADM1), Dairy waste, Sewage sludge, MATLAB simulation, Anaerobic co-digestion, SDG-06: Clean water and sanitation

Sustainable Development Goals

SDG-06:Clean water and sanitation

Citation

Mudzanani, K.E., Phadi, T.T., Iyuke, S.E. & Daramola, M.O. 2023, 'Enhancing methane production through anaerobic co-digestion of sewage sludge: a modified ADM1 model approach', Fermentation, vol. 9, no. 9, art. 833, pp. 1-20, doi : 10.3390/fermentation9090833.