Coupling a Simple and Generic Membrane Fouling Model with Biological Dynamics: Application to the Modeling of an Anaerobic Membrane BioReactor (AnMBR)

Author:

Benyahia Boumediene1ORCID,Charfi Amine2ORCID,Lesage Geoffroy3ORCID,Heran Marc3,Cherki Brahim1,Harmand Jérôme4ORCID

Affiliation:

1. Laboratoire d’Automatique de Tlemcen, Faculté de Technologie, Université de Tlemcen, P.O. Box 230, Tlemcen 13000, Algeria

2. UR ABTE, Département de Génie Chimique Génie des Procédés, IUT GON, Université de Caen Normandie, 14032 Caen, France

3. Institut Européen des Membranes, 300 Avenue du Prof. Emile Jeanbrau, 34090 Montpellier, France

4. LBE-INRAE, 102 Avenue des Étangs, 11100 Narbonne, France

Abstract

A simple model is developed for membrane fouling, taking into account two main fouling phenomena: cake formation, due to attached solids on the membrane surface, and pore clogging, due to retained compounds inside the pores. The model is coupled with a simple anaerobic digestion model for describing the dynamics of an anaerobic membrane bioreactor (AnMBR). In simulations, we investigate its qualitative behavior: it is shown that the model exhibits satisfying properties in terms of a flux decrease due to membrane fouling. Comparing simulation and experimental data, the model is shown to predict quite well the dynamics of an AnMBR. The simulated flux best fits the experimental flux with a correlation coefficient r2=0.968 for the calibration data set and r2=0.938 for the validation data set. General discussions are given on possible control strategies to limit fouling and optimize the flux production. We show in simulations that these strategies allow one to increase the mean production flux to 33 L/(h·m2),whereas without control, it was 18 L/(h·m2).

Publisher

MDPI AG

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