Modeling and Optimization of Poly Electrolyte Dosage in Water Treatment Process by GMDH Type- NN and MOGA

Author:

Akbarizadeh M.1,Daghbandan A.1,Yaghoobi M.2

Affiliation:

1. Department of Chemical Engineering, Guilan University, Rasht, Iran

2. Rasht Water Treatment Plant, Rasht, Iran

Abstract

Coagulation-flocculation is the most important parts of water treatment process. Traditionally, optimum pre coagulant dosage is determined by used jar tests in laboratory. However; jar tests are time-consuming, expensive, and less adaptive to changes in raw water quality in real time. Soft computing can be used to overcome these limitations. In this paper, multi-objective evolutionary Pareto optimal design of GMDH Type-Neural Network has been used for modeling and predicting of optimum poly electrolyte dosage in Rasht WTP, Guilan, Iran, using Input - output data sets. In this way, multi-objective uniform-diversity genetic algorithms (MUGA) are then used for Pareto optimization of GMDH networks. In order to achieve this modeling, the experimental data were divided into train and test sections. The predicted values were compared with those of experimental values in order to estimate the performance of the GMDH network. Also, Multi Objective Genetic Algorithms (MOGA) are then used for optimization of influence parameters in pre coagulant (Poly electrolyte) dosage.

Publisher

IGI Global

Subject

General Medicine

Reference18 articles.

1. Apostol, G., Kouachi, R., & Constantinescu, I. (2011). Optimization of coagulation-flocculation process with ALUM based on responce surface methodology. 73, 77-84.

2. Drinking water quality and treatment: the use of artificial neural networks

3. Bazer-Bachi, A., Puech-Coste, E., Aim, R. B., & Probst, J. (1990). Mathematical modelling of optimal coagulant dose in water treatment plant. Revue des sci. de l'eau, 3, 377-397.

4. ANFIS-based modelling for coagulant dosage in drinking water treatment plant: A case study.;S.Heddam;Environmental Monitoring and Assessment,2012

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