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Information Journal Paper

Title

MODELING AND SIMULATION OF WATER SOFTENING BY NANOFILTRATION USING ARTIFICIAL NEURAL NETWORK

Pages

  37-45

Abstract

 An ARTIFICIAL NEURAL NETWORK has been used to determine the VOLUME FLUX and REJECTIONs of Ca2+, Na+ and Cl¯, as a function of transmembrane pressure and concentrations of Ca2+, polyethyleneimine, and polyacrylic acid in WATER SOFTENING by NANOFILTRATION process in presence of polyelectrolytes. The feed-forward multi-layer perceptron ARTIFICIAL NEURAL NETWORK including an eight-neuron hidden layer has the least error in modeling this non-linear process. The overall agreement between the ARTIFICIAL NEURAL NETWORK results and experimental data is very good for both the VOLUME FLUX and REJECTIONs, because the maximum values of normalized bias and error are -0.01122 and 1.0737 respectively.

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  • Cite

    APA: Copy

    MOUSAVI, M., & AVAMI, A.. (2006). MODELING AND SIMULATION OF WATER SOFTENING BY NANOFILTRATION USING ARTIFICIAL NEURAL NETWORK. IRANIAN JOURNAL OF CHEMISTRY AND CHEMICAL ENGINEERING (IJCCE), 25(4), 37-45. SID. https://sid.ir/paper/534005/en

    Vancouver: Copy

    MOUSAVI M., AVAMI A.. MODELING AND SIMULATION OF WATER SOFTENING BY NANOFILTRATION USING ARTIFICIAL NEURAL NETWORK. IRANIAN JOURNAL OF CHEMISTRY AND CHEMICAL ENGINEERING (IJCCE)[Internet]. 2006;25(4):37-45. Available from: https://sid.ir/paper/534005/en

    IEEE: Copy

    M. MOUSAVI, and A. AVAMI, “MODELING AND SIMULATION OF WATER SOFTENING BY NANOFILTRATION USING ARTIFICIAL NEURAL NETWORK,” IRANIAN JOURNAL OF CHEMISTRY AND CHEMICAL ENGINEERING (IJCCE), vol. 25, no. 4, pp. 37–45, 2006, [Online]. Available: https://sid.ir/paper/534005/en

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