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Optimization of hydrogen enrichment via palladium membrane in vacuum environments using Taguchi method and normalized regression analysis
Affiliation:1. Department of Aeronautics and Astronautics, National Cheng Kung University, Tainan, 701, Taiwan;2. Research Center for Smart Sustainable Circular Economy, Tunghai University, Taichung, 407, Taiwan;3. Department of Mechanical Engineering, National Chin-Yi University of Technology, Taichung, 411, Taiwan;4. International Master Degree Program on Energy, National Cheng Kung University, Tainan, 701, Taiwan;5. Department of Mechanical Engineering, National Chung Hsing University, Taichung City, 40227, Taiwan;6. Future Technology Research Center, National Yunlin University of Science and Technology, 123 University Road, Section 3, Douliou, Yunlin 64002, Taiwan;7. Centre for Environmental Nuclear Research, Directorate of Research and Virtual Education, SRM Institute of Science and Technology, Kattankulathur, 603 203, Chengalpattu District, Tamil Nadu, India
Abstract:In this study, the separation of hydrogen from gas mixtures using a palladium membrane coupled with a vacuum environment on the permeate side was studied experimentally. The gas mixtures composed of H2, N2, and CO2 were used as the feed. Hydrogen permeation fluxes were measured with membrane operating temperature in the range of 320–380 °C, pressures on the retentate side in the range of 2–5 atm, and vacuum pressures on the permeate side in the range of 15–51 kPa. The Taguchi method was used to design the operating conditions for the experiments based on an orthogonal array. Using the measured H2 permeation fluxes from the Taguchi approach, the stepwise regression analysis was also employed for establishing the prediction models of H2 permeation flux, followed by the analysis of variance (ANOVA) to identify the significance and suitability of operating conditions. Based on both the Taguchi approach and ANOVA, the H2 permeation flux was mostly affected by the gas mixture composition, followed by the retentate side pressure, the vacuum degree, and the membrane temperature. The predicted optimal operating conditions were the gas mixture with 75% H2 and 25% N2, the membrane temperature of 320 °C, the retentate side pressure of 5 atm, and the vacuum degree of 51 kPa. Under these conditions, the H2 permeation flux was 0.185 mol s?1 m?2. A second-order normalized regression model with a relative error of less than 7% was obtained based on the measured H2 permeation flux.
Keywords:Palladium membrane  Hydrogen separation  Taguchi method  Vacuum degree  Analysis of variance (ANOVA)  Regression analysis
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