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Improvement of the /Taguchi/ Design Optimization Using Artificial Intelligence in Three Acid Azo Dyes Removal by Electrocoagulation

机译:人工智能改进的/ Taguchi /设计优化技术在电凝去除三种酸性偶氮染料中的应用

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摘要

The aim of this research is improvement of the Taguchi design optimization using artificial neural network (ANN) and genetic algorithm (GA) in Acid Orange 7, Acid Brown 14, and Acid Red 18 azo dyes removal by electrocoagulation. For this purpose, 27 tests were undertaken for investigation of five parameters including current density, reaction time, initial dye concentration, dye type, and initial pH by using Taguchi's orthogonal array. Additionally, according to analysis of variance, dye type and reaction time were the most important parameters for responses of dye removal efficiency and operating costs in Taguchi design, respectively. Prediction and modeling of the dye removal efficiency response were also accomplished by ANN. High R~2 values (≥97%) indicated that the accuracy of the Taguchi and ANN models are acceptable. In addition, ANN was used in GA for finding the best elimination conditions for the selected dyes according to the Taguchi design. Dye removal efficiencies of 96.79%, 98.12%, and 76.47% were reported for Acid Orange 7, Acid Brown 14, and Acid Red 18, respectively, in the ANN model at the best elimination conditions.
机译:这项研究的目的是使用人工神经网络(ANN)和遗传算法(GA)改进Taguchi设计优化,以通过电凝去除酸性橙7,酸性棕14和酸性红18偶氮染料。为此,使用田口正交阵列进行了27个测试,以研究五个参数,包括电流密度,反应时间,初始染料浓度,染料类型和初始pH。此外,根据方差分析,在Taguchi设计中,染料类型和反应时间分别是响应染料去除效率和运行成本的最重要参数。 ANN还完成了染料去除效率响应的预测和建模。 R〜2值较高(≥97%)表明Taguchi和ANN模型的精度是可以接受的。此外,根据田口设计,在GA中使用了ANN来为所选染料找到最佳消除条件。在最佳消除条件下,在ANN模型中,酸性橙7,酸性棕14和酸性红18的染料去除效率分别为96.79%,98.12%和76.47%。

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