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Journal article

A systematic methodology to extend the applicability of a bioconversion model for the simulation of various co-digestion scenarios

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Department of Environmental Engineering, Technical University of Denmark1

Residual Resource Engineering, Department of Environmental Engineering, Technical University of Denmark2

Detailed simulation of anaerobic digestion (AD) requires complex mathematical models and the optimization of numerous model parameters. By performing a systematic methodology and identifying parameters with the highest impact on process variables in a well-established AD model, its applicability was extended to various co-digestion scenarios.

More specifically, the application of the step-by-step methodology led to the estimation of a general and reduced set of parameters, for the simulation of scenarios where either manure or wastewater were co-digested with different organic substrates. Validation of the general parameter set involved the simulation of laboratory-scale data from three continuous co-digestion experiments, treating mixtures of different organic residues either at thermophilic or mesophilic conditions.

Evaluation of the results showed that simulations using the general parameter set fitted experimental data quite well, indicating that it offers a reliable reference point for future simulations of anaerobic co-digestion scenarios.

Language: English
Year: 2017
Pages: 157-166
ISSN: 18732976 and 09608524
Types: Journal article
DOI: 10.1016/j.biortech.2017.03.101
ORCIDs: Kovalovszki, Adam , Alvarado-Morales, Merlin , Fotidis, Ioannis and Angelidaki, Irini

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