The increasing costs associated with water supply and the disposal of wastewater has stimulated industries to seek more efficient water management systems. Mathematical modelling and simulation can be a very valuable tool for the study of the multiple alternatives available whilst assessing optimum solutions for water management in industry. This study introduces a new steady state model library able to reproduce industrial water circuits. It has been implemented in a novel software framework for the representation, simulation and optimization of industrial water networks. A water circuit representing a paper mill has been modelled and simulated showing the capability to reproduce real case studies. Alternative scenarios for the water network have also been tested to assess the capability of the models to optimize water circuits minimizing total cost.
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Research Article|
June 01 2012
Water network cost optimization in a paper mill based on a new library of mathematical models
I. Lizarralde;
1Department of Environmental Engineering, CEIT, Paseo Manuel Lardizábal 15, 20018 Donostia, Spain
E-mail: ilizarralde@ceit.es
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F. Claeys;
F. Claeys
2DHI, Doorniksestraat 21-23, B-8500 Kortrijk, Belgium
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R. Ordóñez;
R. Ordóñez
3Department of Chemical Engineering, Faculty of Chemistry, University Complutense of Madrid, Av. Complutense s/n. Madrid 28040, Spain
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M. de Gracia;
M. de Gracia
4ATM (Grupo Praxair), Epele Bailara, 29, 20120 Hernani, Spain
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L. Sancho;
L. Sancho
1Department of Environmental Engineering, CEIT, Paseo Manuel Lardizábal 15, 20018 Donostia, Spain
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P. Grau
P. Grau
1Department of Environmental Engineering, CEIT, Paseo Manuel Lardizábal 15, 20018 Donostia, Spain
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Water Sci Technol (2012) 65 (11): 1929–1938.
Article history
Received:
September 17 2011
Accepted:
January 12 2012
Citation
I. Lizarralde, F. Claeys, R. Ordóñez, M. de Gracia, L. Sancho, P. Grau; Water network cost optimization in a paper mill based on a new library of mathematical models. Water Sci Technol 1 June 2012; 65 (11): 1929–1938. doi: https://doi.org/10.2166/wst.2012.083
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