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9 References 85 9 [1] [2] [3] [4] [5] [6] [7] [8] [9] References A. Marcinek, J. Guderian, D. Bathen, Performance determination of high-purity N2- PSA-plants, Adsorption 26 (2020) 1215–1226. A. Marcinek, J. Guderian, D. Bathen, Process intensification of the high-purity nitrogen production in twin-bed Pressure Swing Adsorption plants: DOI: 10.1007/s10450- 020-00291-8, Adsorption (2021). A. Marcinek, A. Möller, J. Guderian, D. Bathen, Dynamic simulation of high-purity twin-bed N2-PSA plants: DOI: 10.1007/s10450-021-00320-0, Adsorption (2021). S. Chiti, A Pilot Study on Hypoxic Air Performance in Fire Prevention, Fire Technol 51 (2015) 393–407. M. Dong, Y. Wang, J. Cai, T. Feng, Y. Pu, Effects of nitrogen on wettability and reliability of lead-free solder in reflow soldering, in: 2009 International Conference on Electronic Packaging Technology & High Density Packaging, IEEE, 8/10/2009 - 8/13/2009, pp. 147–151. C. Pauzon, E. Hryha, P. Forêt, L. Nyborg, Effect of argon and nitrogen atmospheres on the properties of stainless steel 316 L parts produced by laser-powder bed fusion, Materials & Design 179 (2019) 1–10. H. M. Haynes (Ed.), CRC Handbook of Chemistry and Physics (97th ed.), CRC Press, 2016-2017. N. N. Greenwood, A. Earnshaw, Chemistry of the Elements (Second Edition): Nitrogen, Elsevier Ltd., 1997. Grand View Research Inc., Industrial Gases Market Size, Share & Trends Analysis Report By Product (Nitrogen, Oxygen), By Application (Healthcare, Manufacturing), By Distribution (Onsite, Bulk), By Region, And Segment Forecasts, 2020 - 2027, Online access: www.grandviewresearch.com (22/2/2021). [10] W.F. Castle, Air separation and liquefaction: recent developments and prospects for the beginning of the new millennium, International Journal of Refrigeration 25 (2002) 158–172. [11] A. S. Emrani, M. Saber, F. Farhadi, A Decision Tree for Technology Selection of Nitrogen Production Plants, Journal of Chemical and Petroleum Engineering, University of Tehran 45 (2011) 1–11. [12] T. Hu, H.P. H. Zhou, H. Jiang, Nitrogen Production by Efficiently Removing Oxygen From Air Using a Perovskite Hollow-Fiber Membrane With Porous Catalytic Layer, Front. Chem. 6 (2018) 329. [13] D. D. Nikolić, E. S. Kikkinides, Modelling and optimization of hybrid PSA/membrane separation processes, Adsorption 21 (2015) 283–305. [14] M. J. Campbell, R. Prasad, J. Smolarek, EP0595181 Membrane/PSA-deoxo process for nitrogen production, 1994.PDF Image | Modelling and Simulation of Twin-Bed Pressure Swing Adsorption Plants
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