Microbial interactions as drivers of a nitrification process in a chemostat
Artículo
Open/ Download
Access note
Acceso abierto
Publication date
2021Metadata
Show full item record
Cómo citar
Ugalde Salas, Pablo
Cómo citar
Microbial interactions as drivers of a nitrification process in a chemostat
Author
Abstract
This article deals with the inclusion of microbial ecology measurements such as abundances of operational taxonomic units in bioprocess modelling. The first part presents the mathematical analysis of a model that may be framed within the class of Lotka–Volterra models fitted to experimental data in a chemostat setting where a nitrification process was operated for over 500 days. The limitations and the insights of such an approach are discussed. In the second part, the use of an optimal tracking technique (developed within the framework of control theory) for the integration of data from genetic sequencing in chemostat models is presented. The optimal tracking revisits the data used in the aforementioned chemostat setting. The resulting model is an explanatory model, not a predictive one, it is able to reconstruct the different forms of nitrogen in the reactor by using the abundances of the operational taxonomic units, providing some insights into the growth rate of microbes in a complex community.
Patrocinador
project Thermomic (France) ANR-16-CE04-0003
FONDECYT from ANID (Chile) 1200355
Basal Program CMM-AFB from ANID (Chile) 170001
Indexation
Artículo de publícación WoS
Quote Item
Bioengineering 2021, 8, 31
Collections
The following license files are associated with this item: