Detailed off-gas measurements for improved modelling of the aeration performance at the WWTP of Eindhoven

Author:

Amerlinck Y.1,Bellandi G.1,Amaral A.1,Weijers S.2,Nopens I.1

Affiliation:

1. BIOMATH, Department of Mathematical Modelling, Statistics and Bioinformatics, Ghent University, Coupure Links 653, Gent 9000, Belgium

2. Waterschap De Dommel, Boxtel 5280, The Netherlands

Abstract

At wastewater treatment plants (WWTPs), the aerobic conversion processes in the bioreactor are driven by the presence of dissolved oxygen (DO). Within these conversion processes, the oxygen transfer is a rate limiting step as well as being the largest energy consumer. Despite this high importance, WWTP models often lack detail on the aeration part. An extensive measurement campaign with off-gas tests was performed at the WWTP of Eindhoven to provide more information on the performance and behaviour of the aeration system. A high spatial and temporal variability in the oxygen transfer efficiency was observed. Applying this gathered system knowledge in the aeration model resulted in an improved prediction of the DO concentrations. Moreover, an important consequence of this was that ammonium predictions could be improved by resetting the ammonium half-saturation index for autotrophs to its default value. This again proves the importance of balancing sub-models with respect to the need for model calibration as well as model predictive power.

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

Reference36 articles.

1. Amerlinck Y. 2015 Model Refinements in View of Wastewater Treatment Plant Optimization: Improving the Balance in Sub-Model Detail. Ghent University, Ghent, Belgium, XIII, p. 290.

2. Experiments on the oxidation of sewage without the aid of filters;Ardern;Journal of the Society of Chemical Industry,1914

3. General model for biological nutrient removal activated-sludge systems: model presentation;Barker;Water Environment Research,1997

4. Benedetti L. Batstone D. J. De Baets B. Nopens I. Vanrolleghem P. A. 2008 Global Sensitivity Analysis of Biochemical, Design and Operational Parameters of the Benchmark Simulation Model No. 2. International Congress on Environmental Modelling and Software, Barcelona, Spain.

5. Impact of influent data frequency and model structure on the quality of WWTP model calibration and uncertainty;Cierkens;Water Science & Technology,2012

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